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| WoS | SCOPUS | Document Type | Document Title | Abstract | Authors | Affiliation | ResearcherID (WoS) | AuthorsID (SCOPUS) | Author Email(s) | Journal Name | JCR Abbreviation | ISSN | eISSN | Volume | Issue | WoS Edition | WoS Category | JCR Year | IF | JCR (%) | FWCI | FWCI Update Date | WoS Citation | SCOPUS Citation | Keywords (WoS) | KeywordsPlus (WoS) | Keywords (SCOPUS) | KeywordsPlus (SCOPUS) | Language | Publication Stage | Publication Year | Publication Date | DOI | JCR Link | DOI Link | WOS Link | SCOPUS Link |
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| ○ | ○ | Article | Relationships among types of activity engagement and insomnia symptoms among older adults | BackgroundAn increasing awareness exists that lack of activity engagement is associated with insomnia symptoms. However, the majority of studies have focused on the association between a single type of activity engagement and insomnia symptoms.MethodsThis is a cross-sectional study using secondary data from the Health and Retirement Study examining the relationships among different types of activity engagement and insomnia symptoms among older adults. The sample for this study included 3321 older adults who responded to survey modules on activity engagement and insomnia symptoms in 2016. Activity engagement was measured using items for three types of activities (i.e., social, cognitive, and physical) validated in this study. Insomnia symptoms were measured using four items (i.e., difficulty of falling asleep, waking up during the night, waking up too early, and feeling rested). Independent t-tests were conducted to identify the differences in insomnia symptoms according to activity engagement level. Regressions were conducted to examine the associations among three types of activity engagement and insomnia symptoms after adjusting for covariates such as demographics, chronic disease, activities of daily living difficulty, cognitive function, sleep disorder, loneliness, and caregiving.ResultsThe respondents in the high-level social, cognitive, and physical activity engagement groups were found to show fewer insomnia symptoms. Furthermore, higher social (beta=-0.04, p=0.040) and cognitive (beta=-0.06, p=0.007) activity engagements were associated with fewer insomnia symptoms even after adjusting for other types of activity engagement and all covariates.ConclusionsThis study suggests that older adults with higher social and cognitive activity engagements may be likely to have fewer insomnia symptoms. Based on these results, future research is needed to develop multi-component intervention programs that can encourage older adults to engage in these activities. | Kim, Da Eun; Roberts, Tonya J.; Moon, Chooza | Kyungpook Natl Univ, Coll Nursing, Daegu, South Korea; Kyungpook Natl Univ, Res Inst Nursing Sci, Daegu, South Korea; Univ Wisconsin Madison, Sch Nursing, Madison, WI USA; Univ Iowa, Coll Nursing, Iowa City, IA 52242 USA | 57197746076; 36722502600; 55249721200 | daeunkim@knu.ac.kr; | BMC GERIATRICS | BMC GERIATR | 1471-2318 | 21 | 1 | SCIE;SSCI | GERIATRICS & GERONTOLOGY;GERONTOLOGY | 2021 | 4.07 | 25.7 | 1.39 | 2025-07-30 | 16 | 15 | Sleep; Leisure activities; Exercise; Aged | Aged; Exercise; Leisure activities; Sleep | Activities of Daily Living; Aged; Cross-Sectional Studies; Exercise; Humans; Sleep Initiation and Maintenance Disorders; Sleep Wake Disorders; aged; cross-sectional study; daily life activity; exercise; human; insomnia; sleep disorder | English | 2021 | 2021-01-30 | 10.1186/s12877-021-02042-y | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Review | A critical review on the evaluation of automated program repair systems | Automated Program Repair (APR) has attracted significant attention from software engineering re-search and practice communities in the last decade. Several teams have recorded promising performance in fixing real bugs and there is a race in the literature to fix as many bugs as possible from established benchmarks. Gradually, repair performance of APR tools in the literature has gone from being evaluated with a metric on the number of generated plausible patches to the number of correct patches. This evolution is necessary after a study highlighting the overfitting issue in test suite-based automatic patch generation. Simultaneously, some researchers are also insisting on providing time cost in the repair scenario as a metric for comparing state-of-the-art systems. In this paper, we discuss how the latest evaluation metrics of APR systems could be biased. Since design decisions (both in approach and evaluation setup) are not always fully disclosed, the impact on repair performance is unknown and computed metrics are often misleading. To reduce notable biases of design decisions in program repair approaches, we conduct a critical review on the evaluation of patch generation systems and propose eight evaluation metrics for fairly assessing the performance of APR tools. Eventually, we show with experimental data on 11 baseline program repair systems that the proposed metrics allow to highlight some caveats in the literature. We expect wide adoption of these metrics in the community to contribute to boosting the development of practical, and reliably performable program repair tools. (c) 2020 Elsevier Inc. All rights reserved. | Liu, Kui; Li, Li; Koyuncu, Anil; Kim, Dongsun; Liu, Zhe; Klein, Jacques; Bissyande, Tegawende F. | Nanjing Univ Aeronaut & Astronaut, Coll Comp Sci & Technol, Nanjing, Peoples R China; Monash Univ, Fac Informat Technol, Clayton, Vic, Australia; Univ Luxembourg, Interdisciplinary Ctr Secur Reliabil & Trust SnT, Luxembourg, Luxembourg; Kyungpook Natl Univ, Sch Comp Sci & Engn, Daegu, South Korea | Koyuncu, Anil/AAA-5382-2021; LIU, zhe/HGD-6875-2022; Kim, Dongsun/B-4856-2015 | 57203748234; 56438149900; 57195259860; 55742964600; 56844033500; 56282553000; 36080354200 | kui.liu@nuaa.edu.cn;li.li@monash.edu;anil.koyuncu@uni.lu;darkrsw@knu.ac.kr;zhe.liu@nuaa.edu.cn;jacques.klein@uni.lu;tegawende.bissyande@uni.lu; | JOURNAL OF SYSTEMS AND SOFTWARE | J SYST SOFTWARE | 0164-1212 | 1873-1228 | 171 | SCIE | COMPUTER SCIENCE, SOFTWARE ENGINEERING;COMPUTER SCIENCE, THEORY & METHODS | 2021 | 3.514 | 25.9 | 2.18 | 2025-07-30 | 57 | 45 | Automated program repair; Evaluation; Assessment; Metrics | Assessment; Automated program repair; Evaluation; Metrics | Design; Software engineering; Computed metrics; Critical review; Design decisions; Evaluation metrics; Generation systems; Repair system; Repair tools; State-of-the-art system; Benchmarking | English | 2021 | 2021-01 | 10.1016/j.jss.2020.110817 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
| ○ | ○ | Article | Adding complex fermions to the Grassmannian-like coset model | In the N = 2 supersymmetric coset model, SU (N+M)(k) x SO (2N M)(1)/SU (N)(k+M) x U(1) (N M (N +M) (k+N+M)), we construct the SU(M) nonsinglet N = 2 multiplet of spins (1, 3/2, 3/2, 2) in terms of coset fields. The next SU(M) singlet and nonsinglet N = 2 multiplets of spins (2, 5/2, 5/2, 3) are determined by applying the N = 2 supersymmetry currents of spin 3/2 to the bosonic singlet and nonsinglet currents of spin 3 in the bosonic coset model. We also obtain the operator product expansions (OPEs) between the currents of the N = 2 superconformal algebra and above three kinds of N = 2 multiplets. These currents in two dimensions play the role of the asymptotic symmetry, as the generators of N = 2 "rectangular W-algebra", of the M x M matrix generalization of N = 2 AdS(3) higher spin theory in the bulk. The structure constants in the right hand sides of these OPEs are dependent on the three parameters k, N and M explicitly. Moreover, the OPEs between SU(M) nonsinglet N = 2 multiplet of spins (1, 3/2, 3/2, 2) and itself are analyzed in detail. The complete OPE between the lowest component of the SU(M) singlet N = 2 multiplet of spins (2, 5/2, 5/2, 3) and itself is described. In particular, when M = 2, it is known that the above N = 2 supersymmetric coset model provides the realization of the extension of the large N = 4 nonlinear superconformal algebra. We determine the currents of the large N = 4 nonlinear superconformal algebra and the higher spin-3/2, 2 currents of the lowest N = 4 multiplet for generic k and N in terms of the coset fields. For the remaining higher spin-5/2, 3 currents of the lowest N = 4 multiplet, some of the results are given. | Ahn, Changhyun | Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea | 7201986707 | ahn@knu.ac.kr; | EUROPEAN PHYSICAL JOURNAL C | EUR PHYS J C | 1434-6044 | 1434-6052 | 81 | 12 | SCIE | PHYSICS, PARTICLES & FIELDS | 2021 | 4.994 | 25.9 | 0.19 | 2025-07-30 | 2 | 2 | SUPERCONFORMAL ALGEBRAS; UNITARY REPRESENTATIONS; SIGMA-MODELS; CONSTRUCTION; VIRASORO | English | 2021 | 2021-12 | 10.1140/epjc/s10052-021-09858-3 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Article | Background modeling for dark matter search with 1.7 years of COSINE-100 data | We present a background model for dark matter searches using an array of NaI(Tl) crystals in the COSINE-100 experiment that is located in the Yangyang underground laboratory. The model includes background contributions from both internal and external sources, including cosmogenic radionuclides and surface Pb-210 contamination. To build the model in the low energy region, with a threshold of 1 keV, we used a depth profile of Pb-210 contamination in the surface of the NaI(Tl) crystals determined in a comparison between measured and simulated spectra. We also considered the effect of the energy scale errors propagated from the statistical uncertainties and the nonlinear detector response at low energies. The 1.7 years COSINE-100 data taken between October 21, 2016 and July 18, 2018 were used for this analysis. Our Monte Carlo simulation provides a non-Gaussian peak around 50 keV originating from beta decays of bulk Pb-210 in a good agreement with the measured background. This model estimates that the activities of bulk Pb-210 and H-3 are dominating the background rate that amounts to an average level of 2.85 +/- 0.15 counts/day/keV/kg in the energy region of (1-6) keV, using COSINE-100 data with a total exposure of 97.7 kg.years. | Adhikari, G.; de Souza, E. Barbosa; Carlin, N.; Choi, J. J.; Choi, S.; Djamal, M.; Ezeribe, A. C.; Franca, L. E.; Ha, C.; Hahn, I. S.; Jeon, E. J.; Jo, J. H.; Joo, H. W.; Kang, W. G.; Kauer, M.; Kim, H.; Kim, H. J.; Kim, K. W.; Kim, S. H.; Kim, S. K.; Kim, W. K.; Kim, Y. D.; Kim, Y. H.; Ko, Y. J.; Lee, E. K.; Lee, H.; Lee, H. S.; Lee, H. Y.; Lee, I. S.; Lee, J.; Lee, J. Y.; Lee, M. H.; Lee, S. H.; Lee, S. M.; Leonard, D. S.; Lynch, W. A.; Manzato, B. B.; Maruyama, R. H.; Neal, R. J.; Olsen, S. L.; Park, B. J.; Park, H. K.; Park, H. S.; Park, K. S.; Pitta, R. L. C.; Prihtiadi, H.; Ra, S. J.; Rott, C.; Shin, K. A.; Scarff, A.; Spooner, N. J. C.; Thompson, W. G.; Yang, L.; Yu, G. H. | Inst Basic Sci IBS, Ctr Underground Phys, Daejeon 34126, South Korea; Univ Calif San Diego, Dept Phys, La Jolla, CA 92093 USA; Yale Univ, Dept Phys, New Haven, CT 06520 USA; Yale Univ, Wright Lab, New Haven, CT 06520 USA; Univ Sao Paulo, Phys Inst, BR-05508090 Sao Paulo, Brazil; Seoul Natl Univ, Dept Phys & Astron, Seoul 08826, South Korea; Bandung Inst Technol, Dept Phys, Bandung 40132, Indonesia; Univ Sheffield, Dept Phys & Astron, Sheffield S3 7RH, S Yorkshire, England; Chung Ang Univ, Dept Phys, Seoul 06973, South Korea; Ewha Womans Univ, Dept Sci Educ, Seoul 03760, South Korea; Inst Basic Sci IBS, Ctr Exot Nucl Studies, Daejeon 34126, South Korea; Univ Sci & Technol UST, IBS Sch, Daejeon 34113, South Korea; Univ Wisconsin, Dept Phys, 1150 Univ Ave, Madison, WI 53706 USA; Univ Wisconsin, Wisconsin IceCube Particle Astrophys Ctr, Madison, WI 53706 USA; Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Sejong Univ, Dept Phys & Astron, Seoul 05006, South Korea; Korea Res Inst Stand & Sci, Daejeon 34113, South Korea; Korea Univ, Grad Sch, Dept Accelerator Sci, Sejong City 30019, South Korea; Sungkyunkwan Univ, Dept Phys, Seoul 16419, South Korea | Kim, Seongjun/HMV-6287-2023; Lee, Jong/A-3198-2011; Maruyama, Reina/A-1064-2013; Kim, Hong Joo/AAE-1178-2022; França, Luis Eduardo/AET-2735-2022; KIM, Sun Kee/IQT-8178-2023; Kauer, Matt/AAY-7581-2020; Lee, Jooyoung/HTN-0335-2023; DJAMAL, MITRA/JFJ-1152-2023; Lee, Seunghyun/AAS-8066-2021; Lee, Moo/AAK-4266-2020; Lee, Hyun Woo/AAH-8473-2020; Ha, Chang Hyon/AAR-8120-2021; Laranjeira Couto Pitta, Ricardo/K-4152-2018; Rott, Carsten/ABB-1304-2021; Kim, Jeehoon/K-3763-2012; lee, junghee/D-6130-2017; Funo de Moura Franca, Luis Eduardo/AET-2735-2022; Lee, Seung Mok/JXM-0966-2024; Ko, Young/AEI-0838-2022; Schneider Hahn, Ivanete/H-9015-2016; Thompson, William/H-2407-2011 | 56811058500; 57200584326; 7006320391; 58263015500; 57199723894; 6506355194; 56300952200; 57219686017; 17342119700; 57192312712; 57204519171; 55575536700; 56375205700; 24401181300; 55196156000; 59615156600; 59051568100; 57209988432; 7601588326; 59102407800; 55492072500; 7410207253; 57196171764; 56030036300; 57226673940; 56113238600; 23477682800; 57199646872; 55816685400; 57226402706; 57204797944; 57198252980; 57257129200; 55902330700; 7201953933; 57196020359; 57211139944; 9334469000; 57211139925; 35227722100; 57204904910; 8455192000; 57216599536; 35225979300; 57208178150; 57188983477; 16480794500; 35227850400; 57203522213; 56300978900; 7005922145; 57200581630; 57192656960; 57208174900 | ejjeon@ibs.re.kr;yjko@ibs.re.kr; | EUROPEAN PHYSICAL JOURNAL C | EUR PHYS J C | 1434-6044 | 1434-6052 | 81 | 9 | SCIE | PHYSICS, PARTICLES & FIELDS | 2021 | 4.994 | 25.9 | 1.95 | 2025-07-30 | 23 | 24 | English | 2021 | 2021-09 | 10.1140/epjc/s10052-021-09564-0 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | ○ | Article | Combined searches for the production of supersymmetric top quark partners in proton-proton collisions at √s=13 TeV | A combination of searches for top squark pair production using proton-proton collision data at a center-of-mass energy of 13 TeV at the CERN LHC, corresponding to an integrated luminosity of 137 fb(-1) collected by the CMS experiment, is presented. Signatures with at least 2 jets and large missing transverse momentum are categorized into events with 0, 1, or 2 leptons. New results for regions of parameter space where the kinematical properties of top squark pair production and top quark pair production are very similar are presented. Depending on themodel, the combined result excludes a top squarkmass up to 1325 GeV for amassless neutralino, and a neutralinomass up to 700 GeV for a top squarkmass of 1150 GeV. Top squarks with masses from 145 to 295 GeV, for neutralino masses from 0 to 100 GeV, with a mass difference between the top squark and the neutralino in a window of 30 GeV around the mass of the top quark, are excluded for the first time with CMS data. The results of theses searches are also interpreted in an alternative signal model of dark matter production via a spin-0 mediator in association with a top quark pair. Upper limits are set on the cross section for mediator particle masses of up to 420 GeV. | Tumasyan, A.; Adam, W.; Andrejkovic, J. W.; Bergauer, T.; Chatterjee, S.; Dragicevic, M.; Del Valle, A. Escalante; Fruhwirth, R.; Jeitler, M.; Krammer, N.; Lechner, L.; Liko, D.; Mikulec, I; Paulitsch, P.; Pitters, F. M.; Schieck, J.; Schofbeck, R.; Spanring, M.; Templ, S.; Waltenberger, W.; Wulz, C-E; Chekhovsky, V; Litomin, A.; Makarenko, V; Darwish, M. R.; De Wolf, E. A.; Janssen, X.; Kello, T.; Lelek, A.; Sfar, H. Rejeb; Van Mechelen, P.; Van Putte, S.; Van Remortel, N.; Blekman, F.; Bols, E. S.; D'Hondt, J.; De Clercq, J.; Delcourt, M.; El Faham, H.; Lowette, S.; Moortgat, S.; Morton, A.; Muller, D.; Sahasransu, A. R.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Beghin, D.; Bilin, B.; Clerbaux, B.; De Lentdecker, G.; Favart, L.; Grebenyuk, A.; Kalsi, A. K.; Lee, K.; Mahdavikhorrami, M.; Makarenko, I; Moureaux, L.; Petre, L.; Popov, A.; Postiau, N.; Starling, E.; Thomas, L.; Vanden Bemden, M.; Vander Velde, C.; Vanlaer, P.; Vannerom, D.; Wezenbeek, L.; Cornelis, T.; Dobur, D.; Knolle, J.; Lambrecht, L.; Mestdach, G.; Niedziela, M.; Roskas, C.; Samalan, A.; Skovpen, K.; Tytgat, M.; Verbeke, W.; Vermassen, B.; Vit, M.; Bethani, A.; Bruno, G.; Bury, F.; Caputo, C.; David, P.; Delaere, C.; Donertas, I. S.; Giammanco, A.; Jaffel, K.; Jain, Sa; Lemaitre, V; Mondal, K.; Prisciandaro, J.; Taliercio, A.; Teklishyn, M.; Tran, T. T.; Vischia, P.; Wertz, S.; Alves, G. A.; Hensel, C.; Moraes, A.; Alda Junior, W. L.; Gallo Pereira, M. Alves; Ferreira Filho, M. Barroso; Malbouisson, H. Brandao; Carvalho, W.; Chinellato, J.; Da Costa, E. M.; Da Silveira, G. G.; Damiao, D. De Jesus; De Souza, S. Fonseca; Figueiredo, D. Matos; Herrera, C. Mora; Amarilo, K. Mota; Mundim, L.; Nogima, H.; Teles, P. Rebello; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.; Thiel, M.; Da Silva De Araujo, F. Torres; Pereira, A. Vilela; Bernardes, C. A.; Calligaris, L.; Fernandez Perez Tomei, T. R.; Gregores, E. M.; Lemos, D. S.; Mercadante, P. G.; Novaes, S. F.; Padula, Sandra S.; Aleksandrov, A.; Antchev, G.; Hadjiiska, R.; Iaydjiev, P.; Misheva, M.; Rodozov, M.; Shopova, M.; Sultanov, G.; Dimitrov, A.; Ivanov, T.; Litov, L.; Pavlov, B.; Petkov, P.; Petrov, A.; Cheng, T.; Guo, Q.; Javaid, T.; Mittal, M.; Wang, H.; Yuan, L.; Ahmad, M.; Bauer, G.; Dozen, C.; Hu, Z.; Martins, J.; Wang, Y.; Yi, K.; Chapon, E.; Chen, G. M.; Chen, H. S.; Chen, M.; Iemmi, F.; Kapoor, A.; Leggat, D.; Liao, H.; Liu, Z-A; Milosevic, V; Monti, F.; Sharma, R.; Tao, J.; Thomas-wilsker, J.; Wang, J.; Zhang, H.; Zhang, S.; Zhao, J.; Agapitos, A.; An, Y.; Ban, Y.; Chen, C.; Levin, A.; Li, Q.; Lyu, X.; Mao, Y.; Qian, S. J.; Wang, D.; Wang, Q.; Xiao, J.; Lu, M.; You, Z.; Gao, X.; Okawa, H.; Lin, Z.; Xiao, M.; Avila, C.; Cabrera, A.; Florez, C.; Fraga, J.; Sarkar, A.; Segura Delgado, M. A.; Mejia Guisao, J.; Ramirez, F.; Ruiz Alvarez, J. D.; Salazar Gonzalez, C. A.; Giljanovic, D.; Godinovic, N.; Lelas, D.; Puljak, I; Antunovic, Z.; Kovac, M.; Sculac, T.; Brigljevic, V; Ferencek, D.; Majumder, D.; Roguljic, M.; Starodumov, A.; Susa, T.; Attikis, A.; Christoforou, K.; Erodotou, E.; Ioannou, A.; Kole, G.; Kolosova, M.; Konstantinou, S.; Mousa, J.; Nicolaou, C.; Ptochos, F.; Razis, P. A.; Rykaczewski, H.; Saka, H.; Finger, M.; Finger Jr, M. Jr; Kveton, A.; Ayala, E.; Carrera Jarrin, E.; Abdalla, H.; Salama, E.; Lotfy, A.; Mahmoud, M. A.; Bhowmik, S.; Dewanjee, R. K.; Ehataht, K.; Kadastik, M.; Nandan, S.; Nielsen, C.; Pata, J.; Raidal, M.; Tani, L.; Veelken, C.; Eerola, P.; Forthomme, L.; Kirschenmann, H.; Osterberg, K.; Voutilainen, M.; Bharthuar, S.; Brucken, E.; Garcia, F.; Havukainen, J.; Kim, M. S.; Kinnunen, R.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Lotti, M.; Martikainen, L.; Myllymaki, M.; Ott, J.; Siikonen, H.; Tuominen, E.; Tuominiemi, J.; Luukka, P.; Petrow, H.; Tuuva, T.; Amendola, C.; Besancon, M.; Couderc, F.; Dejardin, M.; Denegri, D.; Faure, J. L.; Ferri, F.; Ganjour, S.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lenzi, B.; Locci, E.; Malcles, J.; Rander, J.; Rosowsky, A.; Sahin, M. O.; Savoy-Navarro, A.; Titov, M.; Yu, G. B.; Ahuja, S.; Beaudette, F.; Bonanomi, M.; Perraguin, A. Buchot; Busson, P.; Cappati, A.; Charlot, C.; Davignon, O.; Diab, B.; Falmagne, G.; Ghosh, S.; de Cassagnac, R. Granier; Hakimi, A.; Kucher, I; Motta, J.; Nguyen, M.; Ochando, C.; Paganini, P.; Rembser, J.; Salerno, R.; Sauvan, J. B.; Sirois, Y.; Tarabini, A.; Zabi, A.; Zghiche, A.; Agram, J-L; Andrea, J.; Apparu, D.; Bloch, D.; Bourgatte, G.; Brom, J-M; Chabert, E. C.; Collard, C.; Darej, D.; Fontaine, J-C; Goerlach, U.; Grimault, C.; Le Bihan, A-C; Nibigira, E.; Van Hove, P.; Asilar, E.; Beauceron, S.; Bernet, C.; Boudoul, G.; Camen, C.; Carle, A.; Chanon, N.; Contardo, D.; Depasse, P.; El Mamouni, H.; Fay, J.; Gascon, S.; Gouzevitch, M.; Ille, B.; Laktineh, I. B.; Lattaud, H.; Lesauvage, A.; Lethuillier, M.; Mirabito, L.; Perries, S.; Shchablo, K.; Sordini, V; Torterotot, L.; Touquet, G.; Vander Donckt, M.; Viret, S.; Adamov, G.; Lomidze, I; Tsamalaidze, Z.; Feld, L.; Klein, K.; Lipinski, M.; Meuser, D.; Pauls, A.; Rauch, M. P.; Roewert, N.; Schulz, J.; Teroerde, M.; Dodonova, A.; Eliseev, D.; Erdmann, M.; Fackeldey, P.; Fischer, B.; Hebbeker, T.; Hoepfner, K.; Ivone, F.; Keller, H.; Mastrolorenzo, L.; Merschmeyer, M.; Meyer, A.; Mocellin, G.; Mondal, S.; Mukherjee, S.; Noll, D.; Novak, A.; Pook, T.; Pozdnyakov, A.; Rath, Y.; Reithler, H.; Roemer, J.; Schmidt, A.; Schuler, S. C.; Sharma, A.; Vigilante, L.; Wiedenbeck, S.; Zaleski, S.; Dziwok, C.; Fluegge, G.; Ahmad, W. Haj; Hlushchenko, O.; Kress, T.; Nowack, A.; Pistone, C.; Pooth, O.; Roy, D.; Sert, H.; Stahl, A.; Ziemons, T.; Petersen, H. Aarup; Martin, M. Aldaya; Asmuss, P.; Babounikau, I; Baxter, S.; Behnke, O.; Martinez, A. Bermudez; Bhattacharya, S.; Bin Anuar, A. A.; Borras, K.; Botta, V; Brunner, D.; Campbell, A.; Cardini, A.; Cheng, C.; Colombina, F.; Rodriguez, S. Consuegra; Silva, G. Correia; Danilov, V; Didukh, L.; Eckerlin, G.; Eckstein, D.; Banos, L. I. Estevez; Filatov, O.; Gallo, E.; Geiser, A.; Giraldi, A.; Grohsjean, A.; Guthoff, M.; Jafari, A.; Jomhari, N. Z.; Jung, H.; Kasem, A.; Kasemann, M.; Kaveh, H.; Kleinwort, C.; Kruecker, D.; Lange, W.; Lidrych, J.; Lipka, K.; Lohmann, W.; Mankel, R.; Melzer-Pellmann, I-A; Metwally, J.; Meyer, A. B.; Meyer, M.; Mnich, J.; Mussgiller, A.; Otarid, Y.; Adan, D. Perez; Pitzl, D.; Raspereza, A.; Lopes, B. Ribeiro; Ruebenach, J.; Saggio, A.; Saibel, A.; Savitskyi, M.; Scham, M.; Scheurer, V; Schwanenberger, C.; Singh, A.; Ricardo, R. E. Sosa; Stafford, D.; Tonon, N.; Turkot, O.; Van De Klundert, M.; Walsh, R.; Walter, D.; Wen, Y.; Wichmann, K.; Wiens, L.; Wissing, C.; Wuchterl, S.; Aggleton, R.; Albrecht, S.; Bein, S.; Benato, L.; Benecke, A.; Connor, P.; De Leo, K.; Eich, M.; Feindt, F.; Froehlich, A.; Garbers, C.; Garutti, E.; Gunnellini, P.; Haller, J.; Hinzmann, A.; Kasieczka, G.; Klanner, R.; Kogler, R.; Kramer, T.; Kutzner, V; Lange, J.; Lange, T.; Lobanov, A.; Malara, A.; Nigamova, A.; Rodriguez, K. J. Pena; Rieger, O.; Schleper, P.; Schroder, M.; Schwandt, J.; Schwarz, D.; Sonneveld, J.; Stadie, H.; Steinbruck, G.; Tews, A.; Vormwald, B.; Zoi, I; Bechtel, J.; Berger, T.; Butz, E.; Caspart, R.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Droll, A.; El Morabit, K.; Faltermann, N.; Giffels, M.; Gosewisch, J. 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Assiut Univ, Fac Sci, Phys Dept, Assiut, Egypt; IIT Bhubaneswar, Bhubaneswar, India; Inst Phys, Bhubaneswar, India; GHG Khalsa Coll, Ludhiana, Punjab, India; Shoolini Univ, Solan, India; Univ Hyderabad, Hyderabad, India; Univ Visva Bharati, Santini Ketan, W Bengal, India; Indian Inst Technol IIT, Mumbai, Maharashtra, India; Sharif Univ Technol, Tehran, Iran; Univ Sci & Technol Mazandaran, Dept Phys, Behshahr, Iran; Univ Bari, Politecn Bari, Ist Nazl Fis Nucl, Sez Bari, Bari, Italy; Italian Natl Agcy New Technol Energy & Sustainabl, Bologna, Italy; Ctr Siciliano Fis Nucl & Struttura Mat, Catania, Italy; CNR, Ist Officina Mat, Perugia, Italy; Consejo Nacl Ciencia & Technol, Mexico City, DF, Mexico; Uzbek Acad Sci, Inst Nucl Phys, Tashkent, Uzbekistan; St Petersburg State Polytech Univ, St Petersburg, Russia; Budker Inst Nucl Phys, Novosibirsk, Russia; Eastern Univ, Trincomalee Campus, Nilaveli, Sri Lanka; Ecole Polytech Fed Lausanne, Lausanne, Switzerland; Stefan Meyer Inst Subatom Phys, Vienna, Austria; IN2P3 CNRS, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France; Sirnak Univ, Sirnak, Turkey; Near East Univ, Res Ctr Expt Hlth Sci, Nicosia, Turkey; Konya Tech Univ, Konya, Turkey; Istanbul Univ Cerrahpasa, Fac Engn, Istanbul, Turkey; Piri Reis Univ, Istanbul, Turkey; Adiyaman Univ, Adiyaman, Turkey; Ozyegin Univ, Istanbul, Turkey; Izmir Inst Technol, Izmir, Turkey; Necmettin Erbakan Univ, Konya, Turkey; Bozok Univ Rektorlugu, Yozgat, Turkey; Marmara Univ, Istanbul, Turkey; Milli Savunma Univ, Istanbul, Turkey; Kafkas Univ, Kars, Turkey; Istanbul Bilgi Univ, Istanbul, Turkey; Hacettepe Univ, Ankara, Turkey; Vrije Univ Brussel, Brussels, Belgium; Univ Southampton, Sch Phys & Astron, Southampton, Hants, England; Univ Durham, IPPP, Durham, England; Monash Univ, Fac Sci, Clayton, Vic, Australia; Bethel Univ, Minneapolis, MN USA; Karamanoglu Mehmetbey Univ, Karaman, Turkey; Bingol Univ, Bingol, Turkey; Sinop Univ, Sinop, Turkey; Erciyes Univ, Kayseri, Turkey; Texas A&M Univ Qatar, Doha, Qatar | ; 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Liu, Zhibo/A-4568-2018; Venditti, Rosamaria/I-1030-2014; Mora Herrera, Maria Clemencia/AAD-6466-2021; Kalsi, Amandeep Kaur/JNR-9607-2023; Moscatelli, Francesco/AEL-1878-2022; Kaur, Manjit/MBF-0295-2025; Tumasyan, Armen/P-3390-2015; Cakir, Altan/ABD-4450-2020; Canelli, Florencia/AAI-1616-2021; Lander, Roddy/KQU-7736-2024; Zolkapli, Zukhaimira/AAA-4039-2019; Markowitz, Pete/AAC-3382-2020; Kim, Tae Jeong/P-7848-2015; Mohammadi Najafabadi, Mohammad/GLR-0213-2022; Liu, Jianglai/P-2587-2015; Boimska, Bożena/Z-6088-2019; d'Enterria, David/W-7763-2019; Androsov, Konstantin/HJA-2332-2022; Cankocak, Kerem/A-1507-2018; TUVE', Cristina/P-3933-2015; KIM, Tae/P-7848-2015; Ozdemir, Kadri/P-8058-2014; Meijers, Femke/IUM-7952-2023; Hegeman, Jeroen/HJA-1005-2022; Kim, Jun/G-8861-2012; Vala, Martin/HZL-1003-2023; Fallavollita, Francesco/AAL-8850-2020; Rivero, Celso/V-6916-2017; Doroba, krzysztof/AAA-3419-2021; Puerta Pelayo, Jesus/L-1632-2014; Caspart, Rene/LNQ-1560-2024; Abdallah, Hassan/AEE-4715-2022; 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MantillaSuarez, Cristina/LWK-8416-2024; D'Alessandro, Raffaello/F-5897-2015; SIMSEK, Ali Eren/AFO-3050-2022; Liu, Teng/AAS-6484-2020; Wimpenny, Stephen/K-8848-2013; liu, yang/JMB-9083-2023; Elkafrawy, Tamer/HPF-5873-2023; Sunar Cerci, Deniz/AHE-1706-2022; Giommi, Luca/AGV-7154-2022; Maselli, Silvia/J-1599-2012; Cardini, Andrea/KUF-0984-2024; Govoni, Pietro/K-9619-2016; gomez, marina/I-7072-2012; Xie, Si/O-6830-2016; Roguljic, Matej/NMJ-5801-2025; Delgado Peris, Antonio/AAA-5165-2019; Pérez-Calero Yzquierdo, Antonio/F-2235-2013; Ogul, Hasan/S-7951-2016; Wang, Zhe/O-9154-2017; Lee, Seung Eun/ABG-1607-2021; Spagnolo, Paolo/G-3401-2017; Gonzalez, Arely/I-1034-2015; Marinelli, Nancy/MCJ-3716-2025; Mrenna, Stephen/KIL-6081-2024; Da Silveira, Gustavo Gil/N-7279-2014; Benussi, Luigi/O-9684-2014; Güler, Ali Murat/ABB-3382-2020; Faccioli, Pietro/AAF-1499-2019; Grynyov, Borys/D-1714-2010; Rabady, Dinyar/GSN-9210-2022; Cepeda, María/HNO-9314-2023; Zalewski, Piotr/H-7335-2013; Mousa, Jehad/I-8019-2019; Cipriani, Marco/MHU-3780-2025; Heller, Richard/I-6605-2012; Shukla, Prashant/MZS-4135-2025; Habibullah, Redwan/AAK-9617-2020; Bortignon, Pierluigi/AAF-6561-2020; Malik, Sudhir/D-6621-2018; Norjoharuddeen, Nurfikri/S-3109-2018; Lowette, Steven/HKV-3341-2023; Palla, Fabrizio/F-4727-2012; De Filippis, Nicola/AAD-6280-2019; Nandan, Saswati/JVY-9235-2024; Savina, Maria/HDO-6544-2022; Vischia, Pietro/AAB-7811-2021; Wu, Chun-Ying/AAX-5077-2021; Kaur, Amandeep/IYJ-2622-2023; Ferreira, Maria/G-6561-2012; Wittich, Peter/HOH-5761-2023; Demiragli, Zeynep/IZE-1919-2023; Kratochwil, Nicolaus/ACR-4384-2022; Shah, Aashaq/GYI-8983-2022; Gennai, Simone/P-2880-2015; Rodrigo, Teresa/F-6183-2018; Ma, Xiaodong/JAN-7473-2023; Simsek, Ali Eren/AFO-3050-2022; Skovpen, Kirill/HKM-3974-2023; Chadeeva, Marina/M-9644-2019; Gomez, Jaime/P-5242-2018; Lychkovskaya, Natalia/F-8341-2017; Piperov, Stefan/Q-1980-2017; Petkov, Peicho/M-2080-2016; Hong, Byungsik/O-8359-2018; Giammanco, Andrea/O-5017-2019; Kumar, Vijay/G-4290-2011; Reis, Tomas/JHS-4868-2023; Duarte-Campderrós, Jordi/F-5025-2018; Asavapibhop, Burin/X-1477-2019; Elkafrawy, Tamer/Q-8786-2016; Creanza, Donato/KIC-8791-2024; Aguilar-Benitez, Manuel/L-4277-2017; De La Cruz Burelo, Eduard/Q-6021-2019; Di Nardo, Roberto/J-4993-2012; Saoulidou, Niki/AAA-2891-2020; Teles, Patricia/ABF-9723-2021; Ferro, Fabrizio/HMP-5516-2023; LU, JUN-QIANG/B-9511-2008; Kim, Victor/L-1648-2013; Lista, Luca/M-2912-2019; Chen, Shiping/B-7492-2011; Sculac, Toni/AAE-4141-2019; wei, li/JWP-9848-2024; Theofilatos, Konstantinos/AAL-9162-2021; Missiroli, Marino/AAA-9072-2021; Negrini, Matteo/C-8906-2014; Tadel, Matevz/H-3204-2016; Bonacorsi, Daniele/F-1505-2014; SHARMA, RAM/MIO-2784-2025; Shopova, Mariana/HKW-0149-2023; Watson, Ian/IAM-9344-2023; Ahmad, Ashfaq/ABJ-8366-2022; Květoň, Antonín/AAA-9178-2020; De Iorio, Agostino/HJH-7155-2023; Wu, Yz/HDO-8387-2022; ciocci, maria agnese/I-2153-2015; Salama, Elsayed/K-8318-2019; Konecki, Marcin/G-4164-2015; boccali, tommaso/ACT-7600-2022; Battilana, Carlo/AAA-7345-2020; Sarica, Ulascan/JXY-2829-2024; Gonzalez Caballero, Isidro/E-7350-2010; Cadamuro, Luca/AAO-8637-2020; ABDULLAH, WAN/B-5439-2010; Boos, Eduard/D-9748-2012; Fernandez Perez Tomei, Thiago Rafael/E-7091-2012; Ciulli, Vitaliano/ABC-5440-2020; Castilla-Valdez, Heriberto/F-8906-2019; Gong, Caifeng/HOA-5533-2023; Varela, Joao/K-4829-2016; Cassese, Antonio/R-1713-2016; Leonardo, Nuno/M-6940-2016; Terkulov, Adel/M-8581-2015; Bartosik, Nazar/ABF-2326-2020; Perez-Calero Yzquierdo, Antonio/F-2235-2013; Minafra, Nicola/AAZ-6781-2020; Fouz, Maria Cruz/AAF-1105-2019; Dudko, Lev/D-7127-2012; Anampa, Kenyi/GPX-8479-2022; Haddad, Yacine/GRX-5022-2022; Biino, Cristina/AAF-1585-2020; Fedi, Giacomo/IRZ-8694-2023; Della Ricca, Giuseppe/B-6826-2013; Ghezzi, Alessio/I-9494-2012; Voevodina, Elena/G-7314-2016; Maier, Benedikt/AAN-1929-2021; Navarro-Tobar, Álvaro/K-7864-2014; Navarria, Francesco Luigi/ACP-7823-2022; Lannon, Kevin/HGU-5755-2022; Hall-Wilton, Richard/U-6918-2019; Puljak, Ivica/D-8917-2017; Focardi, Ettore/E-7376-2012; Broz, Michal/AAE-7300-2022; Viliani, Lorenzo/AAU-3462-2021; Safronov, Grigory/F-8494-2017; Heredia De La Cruz, Ivan/L-2610-2018; Ahmad, Muhammad/LBH-2342-2024; Pastrone, Nadia/JRZ-0528-2023; Najafabadi, Mojtaba/AAF-7564-2019; Trocsanyi, Zoltan/A-5598-2009; Ovtin, Ivan/AAM-8892-2021; Verwilligen, Piet/AAA-8819-2019; Karancsi, János/A-9710-2013; Trocino, Daniele/AGI-2155-2022; Hernández Calama, José María/AAW-6394-2021; Giacomelli, Paolo/B-8076-2009; Voytishin, Nikolay/IYJ-7234-2023; Poudyal, Nabin/AAA-7981-2020; De La Cruz Burelo, Eduard/AAR-9103-2021; Mazza, Giovanni/ABI-2143-2020; Re, Virginia/F-6403-2013; Belyaev, Andrey/E-1540-2012; Rout, Prasanna/N-8012-2019; Demiroglu, Zuhal Seyma/A-5168-2016; Tytgat, Michael/F-3732-2018; Mora Herrera, Clemencia/AAD-6466-2021; Wadud, Dr. Mohammad A./AAR-2288-2020; Sola, Valentina/E-7726-2015; Khakzad, Mohsen/ABB-1945-2021; BARRILLON, Stephanie/ABA-6873-2021; Okhotnikov, Vitalii/O-4293-2017; Mohammadi Najafabadi, Mojtaba/HLH-5741-2023; Flore, Carlo/HZJ-6377-2023; Verdini, Piero/J-2839-2012; Bornheim, Adi/L-2750-2019; Aimè, Chiara/GXG-4131-2022; Ligabue, Franco/F-3432-2014; Tuo, Shengquan/ABA-9032-2021; KIM, SUNG/ADF-8559-2022; Kovac, Marko/D-5817-2017; My, Salvatore/I-5160-2015; Spiga, Daniele/ABB-8842-2021; chen, gang/JRX-1197-2023; Li, Qiang/AGK-6990-2022; Pedraza Morales, Maria Isabel/ABC-7289-2021; Zhou, Lihong/IAP-3933-2023; Jafari, Abideh/JVP-2320-2024; Aarrestad, Thea/GLV-3031-2022; Gerosa, Raffaele/AGL-6079-2022; Xu, Qiao/AAM-9242-2020; Reyes-Almanza, Rogelio/GQJ-8236-2022; yagil, avi/I-3278-2018; Eskut, Eda/B-8905-2018; Lange, Torben/HOH-4787-2023; YU, SHIN-SHAN/JPW-8635-2023; D'Hondt, Jorgen/ABD-7930-2020; Ozkorucuklu, Suat/AAE-7535-2020 | 35222495600; 56217303000; 57222730792; 56236454000; 55470759900; 58189557300; 56364416400; 8791909900; 16019870600; 57194835548; 24767624300; 35227509400; 15825660400; 57209005037; 57195059626; 55325317300; 16246113200; 57195405319; 57217018402; 23010348400; 6601931097; 16244067100; 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56681723400; 57204005081; 55203009000; 56352741400; 12758816400; 57217797874; 57190728397; 35227512400; 56681986300; 57192521178; 57205307086; 57199997802; 55095942200; 9276392600; 58383218300; 36171331300; 57220737619; 7101904491; 24376473600; 55134092500; 36170873500; 57219647487; 55603522400; 57216997315; 7102931559; 37051309800; 16240181000; 57220064533; 55538110700; 57219648360; 57216596346; 35227365100; 57220064314; 57217841082; 57221685212; 57220064375; 57220064223; 23480738300; 57220064351; 57199996011; 57207983072; 22996761700; 16226119300; 55951354400; 57201370087; 56681988200; 57147084600; 56401004600; 55868435500; 57210751238; 35308730700; 8984617000; 57189693933; 7006404363; 57210312265; 7003879901; 57212676903; 57215670509; 36639963700; 56501874000; 36123824900; 57217021019; 57215610762; 35227990900; 57193206437; 56648200300; 57216948352 | EUROPEAN PHYSICAL JOURNAL C | EUR PHYS J C | 1434-6044 | 1434-6052 | 81 | 11 | SCIE | PHYSICS, PARTICLES & FIELDS | 2021 | 4.994 | 25.9 | 3.6 | 2025-07-30 | 26 | 41 | DARK-MATTER; SQUARK; MODEL; CANDIDATES; EXTENSION; VIOLATION; INVARIANT | English | 2021 | 2021-11 | 10.1140/epjc/s10052-021-09721-5 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | Article | Comprehensive laboratory data analysis to predict the clinical severity of coronavirus disease 2019 in 1,952 patients in daegu, korea | Background: Laboratory parameter abnormalities are commonly observed in COVID-19 patients; however, their clinical significance remains controversial. We assessed the prevalence, characteristics, and clinical impact of laboratory parameters in COVID-19 patients hospitalized in Daegu, Korea. Methods: We investigated the clinical and laboratory parameters of 1,952 COVID-19 patients on admission in nine hospitals in Daegu, Korea. The average patient age was 58.1 years, and 700 (35.9%) patients were men. The patients were classified into mild (N=1,612), moderate (N=294), and severe (N=46) disease groups based on clinical severity scores. We used chi-square test, multiple comparison analysis, and multinomial logistic regression to evaluate the correlation between laboratory parameters and disease severity. Results: Laboratory parameters on admission in the three disease groups were significantly different in terms of hematologic (Hb, Hct, white blood cell count, lymphocyte%, and platelet count), coagulation (prothrombin time and activated partial thromboplastin time), biochemical (albumin, aspartate aminotransferase, alanine aminotransferase, lactate, blood urea nitrogen, creatinine, and electrolytes), inflammatory (C-reactive protein and procalcitonin), cardiac (creatinine kinase MB isoenzyme and troponin I), and molecular virologic (Ct value of SARS-CoV-2 RdRP gene) parameters. Relative lymphopenia, prothrombin time prolongation, and hypoalbuminemia were significant indicators of COVID-19 severity. Patients with both hypoalbuminemia and lymphopenia had a higher risk of severe COVID-19. Conclusions: Laboratory parameter abnormalities on admission are common, are significantly associated with clinical severity, and can serve as independent predictors of COVID-19 severity. Monitoring the laboratory parameters, including albumin and lymphocyte count, is crucial for timely treatment of COVID-19. © 2021 Seoul National University, Institute for Cognitive Science. All rights reserved. | Yoo, Eun-Hyung; Chang, Soon Hee; Song, Do-Young; Lee, Chae Hoon; Cheong, Gyu Young; Park, Sunggyun; Lee, Jae Hee; Lee, Sooin; Kwak, Sang-Gyu; Jeon, Chang-Ho; Song, Kyung Eun | Department of Laboratory Medicine, Daegu Catholic University, School of Medicine, Daegu, South Korea; Department of Clinical Pathology, Kyungpook National University, School of Medicine, Daegu, South Korea; Department of Laboratory Medicine, Daegu Fatima Hospital, Daegu, South Korea; Department of Laboratory Medicine, Yeungnam University College of Medicine, Daegu, South Korea; Department of Laboratory Medicine, Daegu Medical Center, Daegu, South Korea; Department of Laboratory Medicine, Keimyung University, School of Medicine, Daegu, South Korea; Department of Laboratory Medicine, Keimyung University Daegu-Dongsan Hospital, Daegu, South Korea; Department of Laboratory Medicine, Daegu Veterans Hospital, Daegu, South Korea; Department of Medical Statistics, Daegu Catholic University, School of Medicine, Daegu, South Korea; Department of Laboratory Medicine, Daegu Catholic University, School of Medicine, Daegu, South Korea; Department of Clinical Pathology, Kyungpook National University, School of Medicine, Daegu, South Korea | 7006609233; 57222602055; 55650920000; 38163061600; 57233359700; 57216947436; 57226163939; 57233359800; 56645812600; 35082040600; 57843936100 | kesong@knu.ac.kr; | Annals of Laboratory Medicine | ANN LAB MED | 2234-3806 | 2234-3814 | 42 | 1 | SCIE | MEDICAL LABORATORY TECHNOLOGY | 2021 | 4.941 | 25.9 | 1.52 | 2025-07-30 | 15 | Coronavirus disease 2019; Hypoalbuminemia; Laboratory parameters; Lymphopenia; Prothrombin time; Severity | COVID-19; Data Analysis; Humans; Laboratories; Male; Middle Aged; Republic of Korea; Retrospective Studies; SARS-CoV-2; data analysis; epidemiology; human; laboratory; male; middle aged; retrospective study; South Korea | English | Final | 2021 | 10.3343/alm.2022.42.1.24 | 바로가기 | 바로가기 | 바로가기 | |||||||
| ○ | ○ | Article | Development and validation of HERWIG 7 tunes from CMS underlying-event measurements | This paper presents new sets of parameters ("tunes") for the underlying-event model of the herwig 7 event generator. These parameters control the description of multiple-parton interactions (MPI) and colour reconnection in herwig 7, and are obtained from a fit to minimum-bias data collected by the CMS experiment at v s = 0.9, 7, and 13 TeV. The tunes are based on the NNPDF3.1 next-to-nextto-leading-order parton distribution function (PDF) set for the parton shower, and either a leading-order or next-to-nextto-leading-order PDF set for the simulation of MPI and the beam remnants. Predictions utilizing the tunes are produced for event shape observables in electron-positron collisions, and forminimum-bias, inclusive jet, top quark pair, and Zand Wboson events in proton-proton collisions, and are compared with data. Each of the new tunes describes the data at a reasonable level, and the tunes using a leading-order PDF for the simulation of MPI provide the best description of the data. | Sirunyan, A. M.; Tumasyan, A.; Adam, W.; Ambrogi, F.; Bergauer, T.; Dragicevic, M.; Ero, J.; Del Valle, A. Escalante; Fruhwirth, R.; Jeitler, M.; Krammer, N.; Lechner, L.; Liko, D.; Madlener, T.; Mikulec, I.; Pitters, F. M.; Rad, N.; Schieck, J.; Schofbeck, R.; Spanring, M.; Templ, S.; Waltenberger, W.; Wulz, C-E; Zarucki, M.; Chekhovsky, V.; Litomin, A.; Makarenko, V.; Gonzalez, J. Suarez; Darwish, M. R.; De Wolf, E. A.; Di Croce, D.; Janssen, X.; Kello, T.; Lelek, A.; Pieters, M.; Sfar, H. Rejeb; Van Haevermaet, H.; Van Mechelen, P.; Van Putte, S.; Van Remortel, N.; Blekman, F.; Bols, E. S.; Chhibra, S. S.; D'Hondt, J.; De Clercq, J.; Lontkovskyi, D.; Lowette, S.; Marchesini, I.; Moortgat, S.; Morton, A.; Python, Q.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Beghin, D.; Bilin, B.; Clerbaux, B.; De Lentdecker, G.; Delannoy, H.; Dorney, B.; Favart, L.; Grebenyuk, A.; Kalsi, A. K.; Makarenko, I.; Moureaux, L.; Petre, L.; Popov, A.; Postiau, N.; Starling, E.; Thomas, L.; Vander Velde, C.; Vanlaer, P.; Vannerom, D.; Wezenbeek, L.; Cornelis, T.; Dobur, D.; Gruchala, M.; Khvastunov, I.; Niedziela, M.; Roskas, C.; Skovpen, K.; Tytgat, M.; Verbeke, W.; Vermassen, B.; Vit, M.; Bruno, G.; Bury, F.; Caputo, C.; David, P.; Delaere, C.; Delcourt, M.; Donertas, I. S.; Giammanco, A.; Lemaitre, V.; Mondal, K.; Prisciandaro, J.; Taliercio, A.; Teklishyn, M.; Vischia, P.; Wuyckens, S.; Zobec, J.; Alves, G. A.; Silva, G. Correia; Hensel, C.; Moraes, A.; Alda, W. L., Jr.; Das Chagas, E. Belchior Batista; Malbouisson, H. Brandao; Carvalho, W.; Chinellato, J.; Coelho, E.; Da Costa, E. M.; Da Silveira, G. G.; Damiao, D. De Jesus; De Souza, S. Fonseca; Martins, J.; Figueiredo, D. Matos; Jaime, M. Medina; De Almeida, M. Melo; Herrera, C. Mora; Mundim, L.; Nogima, H.; Teles, P. Rebello; Rosas, L. J. Sanchez; Santoro, A.; Do Amaral, S. M. Silva; Sznajder, A.; Thiel, M.; Manganote, E. J. Tonelli; De Araujo, F. Torres Da Silva; Pereira, A. Vilela; Bernardes, C. A.; Calligaris, L.; Tomei, T. R. Fernandez Perez; Gregores, E. M.; Lemos, D. S.; Mercadante, P. G.; Novaes, S. F.; Padula, S. S.; Aleksandrov, A.; Antchev, G.; Atanasov, I.; Hadjiiska, R.; Iaydjiev, P.; Misheva, M.; Rodozov, M.; Shopova, M.; Sultanov, G.; Bonchev, M.; Dimitrov, A.; Ivanov, T.; Litov, L.; Pavlov, B.; Petkov, P.; Petrov, A.; Fang, W.; Guo, Q.; Wang, H.; Yuan, L.; Ahmad, M.; Hu, Z.; Wang, Y.; Chapon, E.; Chen, G. M.; Chen, H. S.; Chen, M.; Leggat, D.; Liao, H.; Liu, Z.; Sharma, R.; Spiezia, A.; Tao, J.; Thomas-wilsker, J.; Wang, J.; Zhang, H.; Zhang, S.; Zhao, J.; Agapitos, A.; Ban, Y.; Chen, C.; Levin, A.; Li, Q.; Lu, M.; Lyu, X.; Mao, Y.; Qian, S. J.; Wang, D.; Wang, Q.; Xiao, J.; You, Z.; Gao, X.; Xiao, M.; Avila, C.; Cabrera, A.; Florez, C.; Fraga, J.; Sarkar, A.; Delgado, M. A. Segura; Jaramillo, J.; Guisao, J. Mejia; Ramirez, F.; Alvarez, J. D. Ruiz; Gonzalez, C. A. Salazar; Arbelaez, N. Vanegas; Giljanovic, D.; Godinovic, N.; Lelas, D.; Puljak, I.; Sculac, T.; Antunovic, Z.; Kovac, M.; Brigljevic, V.; Ferencek, D.; Majumder, D.; Mesic, B.; Roguljic, M.; Starodumov, A.; Susa, T.; Ather, M. W.; Attikis, A.; Erodotou, E.; Ioannou, A.; Kole, G.; Kolosova, M.; Konstantinou, S.; Mavromanolakis, G.; Mousa, J.; Nicolaou, C.; Ptochos, F.; Razis, P. A.; Rykaczewski, H.; Saka, H.; Tsiakkouri, D.; Finger, M.; Finger, M., Jr.; Kveton, A.; Tomsa, J.; Ayala, E.; Jarrin, E. Carrera; Abdalla, H.; Assran, Y.; Mohamed, A.; Mahmoud, M. A.; Mohammed, Y.; Bhowmik, S.; De Oliveira, A. Carvalho Antunes; Dewanjee, R. K.; Ehataht, K.; Kadastik, M.; Raidal, M.; Veelken, C.; Eerola, P.; Forthomme, L.; Kirschenmann, H.; Osterberg, K.; Voutilainen, M.; Brucken, E.; Garcia, F.; Havukainen, J.; Karimaki, V.; Kim, M. S.; Kinnunen, R.; Lampen, T.; Lassila-Perini, K.; Laurila, S.; Lehti, S.; Linden, T.; Siikonen, H.; Tuominen, E.; Tuominiemi, J.; Luukka, P.; Tuuva, T.; Amendola, C.; Besancon, M.; Couderc, F.; Dejardin, M.; Denegri, D.; Faure, J. L.; Ferri, F.; Ganjour, S.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lenzi, B.; Locci, E.; Malcles, J.; Rander, J.; Rosowsky, A.; Sahin, M. O.; Savoy-Navarro, A.; Titov, M.; Yu, G. B.; Ahuja, S.; Beaudette, F.; Bonanomi, M.; Perraguin, A. Buchot; Busson, P.; Charlot, C.; Davignon, O.; Diab, B.; Falmagne, G.; de Cassagnac, R. Granier; Hakimi, A.; Kucher, I.; Lobanov, A.; Perez, C. Martin; Nguyen, M.; Ochando, C.; Paganini, P.; Rembser, J.; Salerno, R.; Sauvan, J. B.; Sirois, Y.; Zabi, A.; Zghiche, A.; Agram, J-L; Andrea, J.; Bloch, D.; Bourgatte, G.; Brom, J-M; Chabert, E. C.; Collard, C.; Fontaine, J-C; Gele, D.; Goerlach, U.; Grimault, C.; Le Bihan, A-C; Van Hove, P.; Asilar, E.; Beauceron, S.; Bernet, C.; Boudoul, G.; Camen, C.; Carle, A.; Chanon, N.; Contardo, D.; Depasse, P.; El Mamouni, H.; Fay, J.; Gascon, S.; Gouzevitch, M.; Ille, B.; Jain, Sa; Laktineh, I. B.; Lattaud, H.; Lesauvage, A.; Lethuillier, M.; Mirabito, L.; Torterotot, L.; Touquet, G.; Vander Donckt, M.; Viret, S.; Toriashvili, T.; Tsamalaidze, Z.; Feld, L.; Klein, K.; Lipinski, M.; Meuser, D.; Pauls, A.; Preuten, M.; Rauch, M. P.; Schulz, J.; Teroerde, M.; Eliseev, D.; Erdmann, M.; Fackeldey, P.; Fischer, B.; Ghosh, S.; Hebbeker, T.; Hoepfner, K.; Keller, H.; Mastrolorenzo, L.; Merschmeyer, M.; Meyer, A.; Millet, P.; Mocellin, G.; Mondal, S.; Mukherjee, S.; Noll, D.; Novak, A.; Pook, T.; Pozdnyakov, A.; Quast, T.; Radziej, M.; Rath, Y.; Reithler, H.; Roemer, J.; Schmidt, A.; Schuler, S. C.; Sharma, A.; Wiedenbeck, S.; Zaleski, S.; Dziwok, C.; Flugge, G.; Ahmad, W. Haj; Hlushchenko, O.; Kress, T.; Nowack, A.; Pistone, C.; Pooth, O.; Roy, D.; Sert, H.; Stahl, A.; Ziemons, T.; Petersen, H. Aarup; Martin, M. Aldaya; Asmuss, P.; Babounikau, I.; Baxter, S.; Behnke, O.; Martinez, A. Bermudez; Bin Anuar, A. A.; Borras, K.; Botta, V.; Brunner, D.; Campbell, A.; Cardini, A.; Connor, P.; Rodriguez, S. Consuegra; Danilov, V.; De Wit, A.; Defranchis, M. M.; Didukh, L.; Damiani, D. Dominguez; Eckerlin, G.; Eckstein, D.; Eichhorn, T.; Elwood, A.; Banos, L. I. Estevez; Gallo, E.; Geiser, A.; Giraldi, A.; Grohsjean, A.; Guthoff, M.; Harb, A.; Jafari, A.; Jomhari, N. Z.; Jung, H.; Kasem, A.; Kasemann, M.; Kaveh, H.; Kleinwort, C.; Knolle, J.; Krucker, D.; Lange, W.; Lenz, T.; Lidrych, J.; Lipka, K.; Lohmann, W.; Mankel, R.; Melzer-Pellmann, I-A; Metwally, J.; Meyer, A. B.; Meyer, M.; Missiroli, M.; Mnich, J.; Mussgiller, A.; Myronenko, V.; Otarid, Y.; Adan, D. Perez; Pflitsch, S. K.; Pitzl, D.; Raspereza, A.; Saggio, A.; Saibel, A.; Savitskyi, M.; Scheurer, V.; Schutze, P.; Schwanenberger, C.; Shevchenko, R.; Singh, A.; Ricardo, R. E. Sosa; Tholen, H.; Tonon, N.; Turkot, O.; Vagnerini, A.; Van de Klundert, M.; Walsh, R.; Walter, D.; Wen, Y.; Wichmann, K.; Wissing, C.; Wuchterl, S.; Zenaiev, O.; Zlebcik, R.; Aggleton, R.; Bein, S.; Benato, L.; Benecke, A.; De Leo, K.; Dreyer, T.; Ebrahimi, A.; Eich, M.; Feindt, F.; Frohlich, A.; Garbers, C.; Garutti, E.; Gunnellini, P.; Haller, J.; Hinzmann, A.; Karavdina, A.; Kasieczka, G.; Klanner, R.; Kogler, R.; Kutzner, V.; Lange, J.; Lange, T.; Malara, A.; Multhaup, J.; Niemeyer, C. E. N.; Nigamova, A.; Rodriguez, K. J. Pena; Rieger, O.; Schleper, P.; Schumann, S.; Schwandt, J.; Schwarz, D.; Sonneveld, J.; Stadie, H.; Steinbruck, G.; Vormwald, B.; Zoi, I.; Baselga, M.; Baur, S.; Bechtel, J.; Berger, T.; Butz, E.; Caspart, R.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Droll, A.; El Morabit, K.; Faltermann, N.; Floh, K.; Giffels, M.; Gottmann, A.; Hartmann, F.; Heidecker, C.; Husemann, U.; Iqbal, M. A.; Katkov, I.; Keicher, P.; Koppenhofer, R.; Maier, S.; Metzler, M.; Mitra, S.; Mozer, M. U.; Muller, D.; Muller, Th; Musich, M.; Quast, G.; Rabbertz, K.; Rauser, J.; Savoiu, D.; Schafer, D.; Schnepf, M.; Schroder, M.; Seith, D.; Shvetsov, I.; Simonis, H. J.; Ulrich, R.; Wassmer, M.; Weber, M.; Wohrmann, C.; Wolf, R.; Wozniewski, S.; Anagnostou, G.; Asenov, P.; Daskalakis, G.; Geralis, T.; Kyriakis, A.; Loukas, D.; Paspalaki, G.; Stakia, A.; Diamantopoulou, M.; Karasavvas, D.; Karathanasis, G.; Kontaxakis, P.; Koraka, C. K.; Manousakis-katsikakis, A.; Panagiotou, A.; Papavergou, I.; Saoulidou, N.; Theofilatos, K.; Vellidis, K.; Vourliotis, E.; Bakas, G.; Kousouris, K.; Papakrivopoulos, I.; Tsipolitis, G.; Zacharopoulou, A.; Evangelou, I.; Foudas, C.; Gianneios, P.; Katsoulis, P.; Kokkas, P.; Mallios, S.; Manitara, K.; Manthos, N.; Papadopoulos, I.; Strologas, J.; Bartok, M.; Chudasama, R.; Csanad, M.; Gadallah, M. M. A.; Lokos, S.; Major, P.; Mandal, K.; Mehta, A.; Pasztor, G.; Suranyi, O.; Veres, G. I.; Bencze, G.; Hajdu, C.; Horvath, D.; Sikler, F.; Veszpremi, V.; Vesztergombi, G.; Czellar, S.; Karancsi, J.; Molnar, J.; Szillasi, Z.; Teyssier, D.; Raics, P.; Trocsanyi, Z. L.; Ujvari, B.; Csorgo, T.; Nemes, F.; Novak, T.; Choudhury, S.; Komaragiri, J. R.; Kumar, D.; Panwar, L.; Tiwari, P. C.; Bahinipati, S.; Dash, D.; Kar, C.; Mal, P.; Mishra, T.; Bindhu, V. K. Muraleedharan Nair; Nayak, A.; Sahoo, D. K.; Sur, N.; Swain, S. K.; Bansal, S.; Beri, S. B.; Bhatnagar, V.; Chauhan, S.; Dhingra, N.; Gupta, R.; Kaur, A.; Kaur, S.; Kumari, P.; Lohan, M.; Meena, M.; Sandeep, K.; Sharma, S.; Singh, J. B.; Virdi, A. K.; Ahmed, A.; Bhardwaj, A.; Choudhary, B. C.; Garg, R. B.; Gola, M.; Keshri, S.; Kumar, A.; Naimuddin, M.; Priyanka, P.; Ranjan, K.; Shah, A.; Bharti, M.; Bhattacharya, R.; Bhattacharya, S.; Bhowmik, D.; Dutta, S.; Ghosh, S.; Gomber, B.; Maity, M.; Nandan, S.; Palit, P.; Purohit, A.; Rout, P. 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Univ Belgrade, Fac Phys, Belgrade, Serbia; Univ Siena, Siena, Italy; Eastern Univ, Trincomalee Campus, Nilaveli, Sri Lanka; Univ Pavia, INFN Sez Pavia, Pavia, Italy; Stefan Meyer Inst Subat Phys, Vienna, Austria; Lab dAnnecy Le Vieux Phys Particules, CNRS, IN2P3, Annecy Le Vieux, France; Sirnak Univ, Sirnak, Turkey; Near East Univ, Res Ctr Expt Hlth Sci, Nicosia, Turkey; Beykent Univ, Istanbul, Turkey; Istanbul Aydin Univ, Applicat & Res Ctr Adv Studies, Istanbul, Turkey; Mersin Univ, Mersin, Turkey; Piri Reis Univ, Istanbul, Turkey; Adiyaman Univ, Adiyaman, Turkey; Ozyegin Univ, Istanbul, Turkey; Izmir Inst Technol, Izmir, Turkey; Necmettin Erbakan Univ, Konya, Turkey; Bozok Univ Rektorlugu, Yozgat, Turkey; Marmara Univ, Istanbul, Turkey; Milli Savunma Univ, Istanbul, Turkey; Kafkas Univ, Kars, Turkey; Istanbul Bilgi Univ, Istanbul, Turkey; Hacettepe Univ, Ankara, Turkey; Univ Southampton, Sch Phys & Astron, Southampton, Hants, England; Univ Durham, IPPP, Durham, England; Monash Univ, Fac Sci, Clayton, Vic, Australia; Bethel Univ, St Paul, MN USA; Karamanoglu Mehmetbey Univ, Karaman, Turkey; Ain Shams Univ, Cairo, Egypt; Bingol Univ, Bingol, Turkey; Sinop Univ, Sinop, Turkey; Mimar Sinan Univ, Istanbul, Turkey; Nanjing Normal Univ, Dept Phys, Nanjing, Peoples R China; Texas A&M Univ Qatar, Doha, Qatar | Traczyk, Piotr/ABA-8929-2020; Eskut, Eda/B-8905-2018; Jain, Shikha/ADG-6788-2022; Guler, Yalcin/AAG-7833-2019; Gülmez, Erhan/P-9518-2015; Faccioli, Pietro/AAF-1499-2019; Kim, Hyung Joon/ABD-3143-2020; Strologas, John/GWR-2036-2022; de la Cruz, Begona/K-7552-2014; Wozniak, Krzysztof/Q-7754-2019; Dubinin, Mikhail/I-3942-2016; Sen, Sercan/C-6473-2014; Belyaev, Andrey/E-1540-2012; Soares, Mara/GZM-6676-2022; Titov, Maxim/JAC-6742-2023; Marin, Jose/K-6412-2014; Kalsi, Amandeep Kaur/JNR-9607-2023; Mejia Guisao, Jhovanny/ABG-3627-2021; Cankocak, Kerem/A-1507-2018; Rolandi, Luigi (Gigi)/E-8563-2013; Swain, Subrat/IXW-8971-2023; Poudyal, Nabin/AAA-7981-2020; Karancsi, János/A-9710-2013; Fernandez Menendez, Javier/B-6550-2014; 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35226995500; 56004353500; 59585966400; 56168946100; 56997674700; 57190524072; 57204922503; 55193506300; 56447988400; 36171084600; 57211493536; 59314001300; 57210323478; 56924584700; 57218688748; 57407475600; 35227544500; 7103396805; 57456507300; 55580069400; 56681856800; 57407257100; 57407583500; 35226950000; 57204917351; 57199997940; 55508106200; 56682015600; 57207582489; 57214987417; 35222265400; 57216553236; 35308880200; 36555074500; 57196011376; 57199997897; 57216235649; 57199999253; 35228208900; 56282528200; 57203998794; 57217291316; 37087067700; 57204006424; 57667555700; 36640634800; 57087417300; 55134357100; 58070355000; 57207808102; 56681939400; 52063289300; 35227399700; 57189264440; 35227372600; 8596425800; 35227499900; 57248998700; 56681990200; 35285715700; 57208213093; 56681658600; 57218672477; 15835356100; 35227841000; 56655129600; 56923807800; 59029506600; 57199996144; 57220756034; 57218667413; 55146318300; 57218186364; 57215664124; 57218184921; 57218186752; 57218185439; 57218186930; 57218186227; 57218186461; 57218186899; 56448147800; 57218689593; 57203998855; 57195921702; 36170842400; 57204548956; 55439837900; 35221944800; 57580318500; 59115005200; 57219155525; 57190733978; 58072859300; 57326894500; 15075857400; 35227876700; 35227974000; 57326866900; 55286579600; 57219465629; 57219465461; 57220984699; 57213714205; 57202224055; 57219465723; 57219465489; 57219465005; 35314952200; 58273551600; 57219465605; 36087890100; 57219465823; 57219464972; 57203340367; 57219465598; 57075554700; 58846931600; 35221444900; 57203056538; 57194704252; 56681987000; 55225629800; 35227133000; 57199997522; 35227287600; 57194187146; 56136919900; 16245575400; 35227838400; 8135034700; 35216210700; 57199996532; 57193995091; 57199995207; 35226976800; 57201355284; 57201326914; 57202855809; 57202859632; 57204081939; 57202277169; 35227298700; 57207902314; 57203665352; 55210767800; 57202852316; 57204001272; 59140364000; 57219189942; 35313280300; 59140361600; 35227272400; 57188680295; 35227373700; 56437208100; 56473683600; 57204004071; 58632485800; 36170749800; 56446433400; 56437697200; 59395369400; 58632653700; 59395375000; 35356052000; 57218673910; 58632153800; 57219190462; 55286336800; 35227973900; 57220521234; 55350384900; 56973389300; 35227159700; 37048454000; 57043822800; 35227367700; 57202847289; 51663846700; 57425546200; 57204005081; 55795646500; 55203009000; 26426991900; 35222476000; 12758816400; 57217797874; 57190728397; 35227512400; 56681986300; 57192521178; 57205307086; 57199997802; 55095942200; 56682022400; 9276392600; 58383218300; 36171331300; 36170302600; 7101904491; 24376473600; 56682068800; 55134092500; 7005485775; 36170873500; 56924477700; 55603522400; 55496142400; 7102931559; 37051309800; 57220064097; 7004188390; 57215660458; 57220064533; 57202522344; 57219648360; 57216596346; 35227365100; 57220064314; 57217841082; 57220064375; 57220064223; 57220064351; 57220064259; 57203514331; 57199996011; 57206353679; 57207983072; 22996761700; 16226119300; 55951354400; 35227050000; 56681988200; 55868435500; 57210751238; 35308730700; 8984617000; 7006404363; 57210312265; 7003879901; 57210321748; 57215670509; 56501874000; 56681978600; 36123824900; 57217021019; 57215610762; 16403346300; 57193206437; 56648200300; 57216948352 | EUROPEAN PHYSICAL JOURNAL C | EUR PHYS J C | 1434-6044 | 1434-6052 | 81 | 4 | SCIE | PHYSICS, PARTICLES & FIELDS | 2021 | 4.994 | 25.9 | 1.65 | 2025-07-30 | 22 | 27 | MODEL; SOFT | English | 2021 | 2021-04 | 10.1140/epjc/s10052-021-08949-5 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
| ○ | Letter | Development of Crohn's Disease in a Child With SLC26A3-related Congenital Chloride Diarrhea: Report of the First Case in East Asia and a Novel Missense Variant | Kim, Eun Sil; Song, Ju Sun; Ki, Chang-Seok; Choe, Yon Ho; Kang, Ben | Sungkyunkwan Univ, Dept Pediat, Samsung Med Ctr, Sch Med, 81 Irwon Ro, Seoul 06351, South Korea; GC Genome, Yongin, South Korea; Green Cross Labs, Dept Lab Med, Yongin, South Korea; Kyungpook Natl Univ, Sch Med, Dept Pediat, 680 Gukchaebosang Ro, Daegu 41944, South Korea | Ki, Chang-Seok/G-7559-2014; 康, 奔/JMQ-0812-2023 | yonho.choe@samsung.com;benkang@knu.ac.kr; | ANNALS OF LABORATORY MEDICINE | ANN LAB MED | 2234-3806 | 2234-3814 | 41 | 2 | SCIE | MEDICAL LABORATORY TECHNOLOGY | 2021 | 4.941 | 25.9 | 2 | ASSOCIATION; EXPRESSION | English | 2021 | 2021-03 | 10.3343/alm.2021.41.2.255 | 바로가기 | 바로가기 | 바로가기 | |||||||||||
| ○ | ○ | Article | Diagnostic Efficacy of Serum Mac-2 Binding Protein Glycosylation Isomer and Other Markers for Liver Fibrosis in Non-Alcoholic Fatty Liver Diseases | Background: Mac-2 binding protein glycosylation isomer (M2BPGi) has been established as a non-invasive biomarker for liver fibrosis. We evaluated the diagnostic efficacy of M2BPGi compared with those of other liver fibrosis markers in liver fibrosis in non-alcoholic fatty liver disease (NAFLD). Methods: We analyzed serum M2BPGi levels in 113 NAFLD patients. A pathologist graded liver fibrosis histopathologically. The diagnostic efficacies of serum M2BPGi and other liver fibrosis markers (aspartate aminotransferase to platelet ratio index, fibrosis index based on four factors, and NAFLD fibrosis score [NFS]) were evaluated using correlation, area under the ROC curve (AUC), logistic regression, and C-statistics. Results: Serum M2BPGi level and other liver fibrosis markers showed a moderate correlation with fibrosis grade. The AUC values of M2BPGi were 0.761, 0.819, 0.866, and 0.900 for diagnosing fibrosis (F)>0, F> 1, F >2, and F>3, respectively. Logistic regression analysis showed M2BPGi as the only independent factor associated with F>2 and F>3. Although C-statistics showed that NFS was the best diagnostic factor for F>2 and F>3, M2BPGi with NFS had an increased C-statistics value, indicating that it is a better diagnostic model. Conclusions: The serum M2BPGi level increased with liver fibrosis severity and could be a good biomarker for diagnosing advanced fibrosis and cirrhosis in NAFLD patients. A well-controlled, prospective study with a larger sample size is needed to validate the diagnostic power of M2BPGi and other fibrosis markers in NAFLD. | Jang, Se Young; Tak, Won Young; Park, Soo Young; Kweon, Young-Oh; Lee, Yu Rim; Kim, Gyeonghwa; Hur, Keun; Han, Man-Hoon; Lee, Won Kee | Kyungpook Natl Univ, Kyungpook Natl Univ Hosp, Sch Med, Dept Internal Med, 130 Dongdeok Ro, Daegu 41944, South Korea; Kyungpook Natl Univ, Sch Med, Cell & Matrix Res Inst, Dept Biochem & Cell Biol, Daegu, South Korea; Kyungpook Natl Univ, Kyungpook Natl Univ Hosp, Sch Med, Dept Pathol, Daegu, South Korea; Kyungpook Natl Univ, Sch Med, Dept Med Informat, Daegu, South Korea | ; Hur, Keun/G-9513-2011; Se Young, Jang/MTD-4362-2025; Kim, Gyeonghwa/AAQ-6424-2021 | 57202881977; 7004074582; 57191674344; 7004694832; 57194094753; 57195957884; 8861888000; 57194067936; 22953484700 | wytak@knu.ac.kr; | ANNALS OF LABORATORY MEDICINE | ANN LAB MED | 2234-3806 | 2234-3814 | 41 | 3 | SCIE | MEDICAL LABORATORY TECHNOLOGY | 2021 | 4.941 | 25.9 | 1.95 | 2025-07-30 | 23 | 24 | Mac-2 binding protein glycosylation isomer; Non-alcoholic fatty liver disease; Liver fibrosis; Diagnosis; Biomarker | POSITIVE MAC-2-BINDING PROTEIN; SIMPLE NONINVASIVE INDEX; HEPATOCELLULAR-CARCINOMA; PREDICT; SYSTEM; LEVEL | Biomarker; Diagnosis; Liver fibrosis; Mac-2 binding protein glycosylation isomer; Non-alcoholic fatty liver disease | Biomarkers; Female; Glycosylation; Humans; Liver Cirrhosis; Male; Membrane Glycoproteins; Non-alcoholic Fatty Liver Disease; Prospective Studies; biological marker; membrane protein; female; glycosylation; human; liver cirrhosis; male; metabolism; nonalcoholic fatty liver; prospective study | English | 2021 | 2021-05 | 10.3343/alm.2021.41.3.302 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |
| ○ | ○ | Article | Diversity and genotypic analysis of tick-borne pathogens carried by ticks infesting horses in Korea | Ticks account for an extensive range of health and welfare issues in horses. In addition, tick-borne pathogens (TBPs) limit global animal trading and equine sporting events. Here, we assess the prevalence, co-infectivity and risk factors of TBPs in horse ticks in Korea. A total of 245 hard ticks, including 103 male and 142 female adults, were obtained from horses on Jeju Island during the spring to autumn seasons of 2013-2019. All collected ticks were identified as adultHaemaphysalis longicornis. We screened and analyzed each tick for the presence of several TBPs by polymerase chain reaction (PCR) analysis. Among the 245 ticks, we detected genes for three TBPs,CandidatusRickettsia longicornii (22.9%),Ehrlichia canis(0.4%) andTheileria luwenshuni(0.4%), whileAnaplasmaspp. was not detected. TBPs were most prevalent in ticks harvested during the autumn season, and more abundant in the female than male adults. This is the first report of the generaEhrlichia,RickettsiaandTheileriain horse ticks in Korea. TBPs in horse ticks are likely a reservoir for zoonotic transmission to other animals, including humans. Our findings demonstrate the need for further understanding of the prevalence and epidemiology of TBPs in wild and domestic animals. | Seo, M. -G.; Kwon, O. -D.; Kwak, D. | Anim & Plant Quarantine Agcy, Vet Drugs & Biol Div, Gimcheon, South Korea; Kyungpook Natl Univ, Coll Vet Med, 80 Daehakro, Daegu 41566, South Korea; Kyungpook Natl Univ, Cardiovasc Res Inst, Daegu, South Korea | ; Seo, Min-Goo/NQF-4335-2025 | 53982155300; 7402195886; 7007148758 | dmkwak@knu.ac.kr; | MEDICAL AND VETERINARY ENTOMOLOGY | MED VET ENTOMOL | 0269-283X | 1365-2915 | 35 | 2 | SCIE | ENTOMOLOGY;VETERINARY SCIENCES | 2021 | 2.479 | 25.9 | 0.42 | 2025-07-30 | 4 | 4 | Ehrlichia; horse tick; phylogeny; Rickettsia; Theileria; tick-borne pathogens | Ehrlichia; horse tick; phylogeny; Rickettsia; Theileria; tick-borne pathogens | Animals; Arachnid Vectors; Bacteria; DNA, Bacterial; DNA, Protozoan; Ehrlichia; Horse Diseases; Horses; Ixodidae; Pathology, Molecular; Polymerase Chain Reaction; Prevalence; Republic of Korea; Rickettsia; Seasons; Theileria; Tick Infestations; Tick-Borne Diseases; Zoonoses; Cheju [Cheju (PRVISL)]; Anaplasma; Ehrlichia; Ehrlichia canis; Equidae; Haemaphysalis longicornis; Ixodidae; Rickettsia; Theileria; bacterial DNA; protozoal DNA; animal welfare; genotype; horse; host-pathogen interaction; parasite infestation; parasite prevalence; risk factor; tick; adult; Anaplasma; animal experiment; animal model; article; autumn; domestic animal; Ehrlichia canis; female; Haemaphysalis longicornis; horse; human; infectious agent; Korea; male; nonhuman; phylogeny; polymerase chain reaction; prevalence; reaction analysis; Rickettsia; risk assessment; risk factor; spring; Theileria; animal; arachnid vector; bacterium; Ehrlichia; epidemiology; genetics; horse disease; isolation and purification; Ixodidae; microbiology; molecular pathology; parasitology; Rickettsia; season; South Korea; tick borne disease; tick infestation; veterinary medicine; zoonosis | English | 2021 | 2021-06 | 10.1111/mve.12483 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
| ○ | ○ | Article | Down type iso-singlet quarks at the HL-LHC and FCC-hh | We study the discovery potential of down type iso-singlet quarks, D, predicted by the E6 GUT model in the pp -> D (D) over bar -> ZZd (d) over bar -> l(+)l(-)l(+)l(-) d (d) over bar channel, at the HL-LHC and FCC-hh colliders. The analysis is performed using a high level analysis description language and its runtime interpreter. The study shows that, using solely this channel, HL-LHC can discover D quarks up to a mass of 730 GeV whereas FCC-hh up to 2980 GeV with data collected in their complete run periods. | Paul, Arpon; Sekmen, Sezen; Unel, Gokhan | Abdus Salam Int Ctr Theoret Phys, Str Costiera 11, I-34151 Trieste, Italy; Kyungpook Natl Univ, Ctr High Energy Phys, Daegu, South Korea; Univ Calif Irvine, Dept Phys, Irvine, CA 92697 USA | ; unel, gokhan/KFB-1065-2024 | 59836568000; 24172042700; 6603681553 | apaul@ictp.it;ssekmen@cern.ch;gokhan.unel@cern.ch; | EUROPEAN PHYSICAL JOURNAL C | EUR PHYS J C | 1434-6044 | 1434-6052 | 81 | 3 | SCIE | PHYSICS, PARTICLES & FIELDS | 2021 | 4.994 | 25.9 | 0.49 | 2025-07-30 | 4 | 5 | ISOSINGLET QUARKS; SEARCH | English | 2021 | 2021-03-03 | 10.1140/epjc/s10052-021-08982-4 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Foot-and-Mouth Disease Virus Evades Innate Immune Response by 3C-Targeting of MDA5 | Foot-and-mouth disease (FMD) is a highly contagious disease caused by FMD virus (FMDV) in cloven-hoofed animals. Retinoic acid-inducible gene I (RIG-I) and melanoma differentiation-associated gene 5 (MDA5) are representative receptors in the cytoplasm for the detection of viral RNA and trigger antiviral responses, leading to the production of type I interferon. Although MDA5 is a crucial receptor for sensing picornavirus RNA, the interplay between MDA5 and FMDV is relatively unknown compared to the interplay between RIG-I and FMDV. Here, we observed that the FMDV infection inhibits MDA5 protein expression. Of the non-structural proteins, the Lb and 3C proteinases (Lb(pro) and 3C(pro)) were identified to be primarily responsible for this inhibition. However, the inhibition by 3C(pro) was independent of proteasome, lysosome and caspase-dependent pathway and was by 3C protease activity. A direct interaction between 3C(pro) and MDA5 protein was observed. In conclusion, this is the first report that 3C(pro) inhibits MDA5 protein expression as a mechanism to evade the innate immune response during FMDV infection. These results elucidate the pathogenesis of FMDV and provide fundamental insights for the development of a novel vaccine or therapeutic agent. | Kim, Hyejin; Kim, Ah-Young; Choi, Jieun; Park, Sun Young; Park, Sang Hyun; Kim, Jae-Seok; Lee, Sim-In; Park, Jong-Hyeon; Park, Choi-Kyu; Ko, Young-Joon | Anim & Plant Quarantine Agcy, Gimcheon Si 39660, South Korea; Kyungpook Natl Univ, Coll Vet Med, Anim Dis Intervent Ctr, Daegu 41566, South Korea | ; Park, Sun-Young/B-4634-2014 | 58369688700; 7402063210; 57212584448; 55616559900; 57219557904; 56106886000; 57215039741; 55717103700; 24768064900; 35068343300 | kiss86j@naver.com;mochsha@korea.kr;dr98cju@naver.com;sun3730@korea.kr;shpark0205@korea.kr;kimjs0728@korea.kr;lunark2@korea.kr;parkjhvet@korea.kr;parkck@knu.ac.kr;koyoungjoon@korea.kr; | CELLS | CELLS-BASEL | 2073-4409 | 10 | 2 | SCIE | CELL BIOLOGY | 2021 | 7.666 | 25.9 | 0.62 | 2025-07-30 | 18 | 14 | foot-and-mouth disease virus; MDA5; non-structural protein; 3C; innate immune response | RIG-I; GENE-EXPRESSION; KAPPA-B; RNA; INTERFERON; PROTEIN; IDENTIFICATION; RECOGNITION; CLEAVAGE; PATHWAY | 3C; Foot‐and‐mouth disease virus; Innate immune response; MDA5; Non‐structural protein | 3C Viral Proteases; Animals; Caspases; Catalysis; DEAD Box Protein 58; Down-Regulation; Foot-and-Mouth Disease Virus; HEK293 Cells; Humans; Immune Evasion; Immunity, Innate; Interferon-Induced Helicase, IFIH1; Interferons; Lysosomes; Proteasome Endopeptidase Complex; Protein Binding; Signal Transduction; Swine; Transcription, Genetic; benzyloxycarbonylleucylleucylleucinal; beta interferon; caspase inhibitor; chloroquine; interferon induced helicase C domain containing protein 1; interferon regulatory factor 3; nonstructural protein 3C; nonstructural protein LB; retinoic acid inducible protein I; unclassified drug; viral nonstructural protein; 3C proteases; caspase; interferon; interferon induced helicase C domain containing protein 1; proteasome; protein binding; retinoic acid inducible protein I; animal cell; Article; BHK-21 cell line; controlled study; drug mechanism; drug targeting; enzyme active site; enzyme activity; Foot and mouth disease virus; genetic transfection; HEK293T cell line; human; human cell; immunoprecipitation; innate immunity; nonhuman; PK-15 cell line; protein protein interaction; real time reverse transcription polymerase chain reaction; RNA extraction; RNA transcription; virus load; Western blotting; animal; catalysis; down regulation; Foot and mouth disease virus; genetic transcription; genetics; HEK293 cell line; immune evasion; immunology; lysosome; metabolism; pig; signal transduction | English | 2021 | 2021-02 | 10.3390/cells10020271 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
| ○ | ○ | Article | Identification of Genetic Modifiers of TDP-43: Inflammatory Activation of Astrocytes for Neuroinflammation | Transactive response DNA-binding protein 43 (TDP-43) is a ubiquitously expressed DNA/RNA-binding protein linked to amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). TDP-43 has been implicated in numerous aspects of the mRNA life cycle, as well as in cell toxicity and neuroinflammation. In this study, we used the toxicity of the TDP-43 expression in Saccharomyces cerevisiae as an assay to identify TDP-43 genetic interactions. Specifically, we transformed human TDP-43 cDNAs of wild-type or disease-associated mutants (M337V and Q331K) en masse into 4653 homozygous diploid yeast deletion mutants and then used next-generation sequencing readouts of growth to identify yeast toxicity modifiers. Genetic interaction analysis provided a global view of TDP-43 pathways, some of which are known to be involved in cellular metabolic processes. Selected putative loci with the potential of genetic interactions with TDP-43 were assessed for associations with neurotoxicity and inflammatory activation of astrocytes. The pharmacological inhibition of succinate dehydrogenase flavoprotein subunit A (SDHA) and voltage-dependent anion-selective channel 3 (VDAC3) suppressed TDP-43-induced expression of proinflammatory cytokines in astrocytes, indicating the critical roles played by SDHA and VDAC3 in TDP-43 pathways during inflammatory activation of astrocytes and neuroinflammation. Thus, the findings of our TDP-43 genetic interaction screen provide a global landscape of TDP-43 pathways and may help improve our understanding of the roles of glia and neuroinflammation in ALS and FTD pathogenesis. | Kim, Jae-Hong; Rahman, Md Habibur; Park, Donghwi; Jo, Myungjin; Kim, Hyung-Jun; Suk, Kyoungho | Kyungpook Natl Univ, Dept Pharmacol, Sch Med, Daegu 41944, South Korea; Kyungpook Natl Univ, Plus KNU Biomed Convergence Program BK21, Dept Biomed Sci, Sch Med, Daegu 412944, South Korea; Kyungpook Natl Univ, Brain Sci & Engn Inst, Daegu 41566, South Korea; Korea Brain Res Inst KBRI, Dementia Res Grp, Daegu 41062, South Korea; Univ Ulsan, Ulsan Univ Hosp, Dept Phys Med & Rehabil, Coll Med, Ulsan 44033, South Korea; Korea Brain Res Inst, Daegu 41062, South Korea | Park, Donghwi/GYQ-6185-2022; Rahman, Md Habibur/HMD-4572-2023 | 55926599800; 59607139800; 56606561400; 57189727853; 57191717907; 7005114595 | kim86217@nate.com;habib.edu.bd@gmail.com;bdome@hanmail.net;jinyhoi11@naver.com;kijang1@kbri.re.kr;ksuk@knu.ac.kr; | CELLS | CELLS-BASEL | 2073-4409 | 10 | 3 | SCIE | CELL BIOLOGY | 2021 | 7.666 | 25.9 | 0.67 | 2025-07-30 | 16 | 17 | TDP-43; astrocyte; glia; neuroinflammation; genetic interaction; amyotrophic lateral sclerosis | AMYOTROPHIC-LATERAL-SCLEROSIS; MITOCHONDRIAL DYNAMICS; DISEASE PROGRESSION; ALS; EXPRESSION; PATHOLOGY; PROTEIN; MUTANT; RNA; MICROGLIA | Amyotrophic lateral sclerosis; Astrocyte; Genetic interaction; Glia; Neuroinflammation; TDP‐43 | Amyotrophic Lateral Sclerosis; Astrocytes; DNA-Binding Proteins; Frontotemporal Dementia; Humans; Inflammation; Mutation; Neuroglia; geldanamycin; heat shock protein 90; heat shock protein 90 AB1; interleukin 1beta; malonic acid; olesoxime; reactive oxygen metabolite; succinate dehydrogenase; TAR DNA binding protein; unclassified drug; voltage dependent anion channel 3; DNA binding protein; TARDBP protein, human; amyotrophic lateral sclerosis; animal cell; Article; astrocyte; computer model; controlled study; enzyme linked immunosorbent assay; fluorescence activated cell sorting; gene deletion; gene interaction; gene ontology; gene overexpression; immunity; inflammatory activation; mitochondrial membrane potential; mouse; MTT assay; nervous system inflammation; Neuro-2a cell line; neurotoxicity; nonhuman; real time polymerase chain reaction; Saccharomyces cerevisiae; Sanger sequencing; transient transfection; tumor suppressor gene; Western blotting; astrocyte; frontotemporal dementia; genetics; glia; human; immunology; inflammation; metabolism; mutation | English | 2021 | 2021-03 | 10.3390/cells10030676 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
| ○ | ○ | Article | Identification of new isomers in ²²⁸Ac: impact on dark matter searches | We report the identification of metastable isomeric states of Ac-228 at 6.28 keV, 6.67 keV and 20.19 keV, with lifetimes of an order of 100 ns. These states are produced by the beta-decay of Ra-228, a component of the Th-232 decay chain, with beta Q-values of 39.52 keV, 39.13 keV and 25.61 keV, respectively. Due to the low Q-value of Ra-228 as well as the relative abundance of Th-232 and their progeny in low background experiments, these observations potentially impact the low-energy background modeling of dark matter search experiments. | Kim, K. W.; Adhikari, G.; de Souza, E. Barbosa; Carlin, N.; Choi, J. J.; Choi, S.; Djamal, M.; Ezeribe, A. C.; Franca, L. E.; Ha, C.; Hahn, I. S.; Jeon, E. J.; Jo, J. H.; Kang, W. G.; Kauer, M.; Kim, H.; Kim, H. J.; Kim, S. H.; Kim, S. K.; Kim, W. K.; Kim, Y. D.; Kim, Y. H.; Ko, Y. J.; Lee, E. K.; Lee, H.; Lee, H. S.; Lee, H. Y.; Lee, I. S.; Lee, J.; Lee, J. Y.; Lee, M. H.; Lee, S. H.; Lee, S. M.; Leonard, D. S.; Manzato, B. B.; Maruyama, R. H.; Neal, R. J.; Olsen, S. L.; Park, B. J.; Park, H. K.; Park, H. S.; Park, K. S.; Pitta, R. L. C.; Prihtiadi, H.; Ra, S. J.; Rott, C.; Shin, K. A.; Scarff, A.; Spooner, N. J. C.; Thompson, W. G.; Yang, L.; Yu, G. H. | Inst Basic Sci IBS, Ctr Underground Phys, Daejeon 34126, South Korea; Univ Calif San Diego, Dept Phys, La Jolla, CA 92093 USA; Yale Univ, Dept Phys, New Haven, CT 06520 USA; Yale Univ, Wright Lab, New Haven, CT 06520 USA; Univ Sao Paulo, Phys Inst, BR-05508090 Sao Paulo, Brazil; Seoul Natl Univ, Dept Phys & Astron, Seoul 08826, South Korea; Bandung Inst Technol, Dept Phys, Bandung 40132, Indonesia; Univ Sheffield, Dept Phys & Astron, Sheffield S3 7RH, S Yorkshire, England; Chung Ang Univ, Dept Phys, Seoul 06973, South Korea; Ewha Womans Univ, Dept Sci Educ, Seoul 03760, South Korea; Inst Basic Sci IBS, Ctr Exot Nucl Studies, Daejeon 34126, South Korea; Univ Sci & Technol UST, IBS Sch, Daejeon 34113, South Korea; Univ Wisconsin, Dept Phys, Madison, WI 53706 USA; Univ Wisconsin, Wisconsin IceCube Particle Astrophys Ctr, Madison, WI 53706 USA; Kyungpook Natl Univ, Dept Phys, Daegu 41566, South Korea; Sejong Univ, Dept Phys & Astron, Seoul 05006, South Korea; Korea Res Inst Stand & Sci, Daejeon 34113, South Korea; Korea Univ, Dept Accelerator Sci, Sejong 30019, South Korea; Sungkyunkwan Univ, Dept Phys, Seoul 16419, South Korea | Kauer, Matt/AAY-7581-2020; Thompson, William/H-2407-2011; Ko, Young/AEI-0838-2022; França, Luis Eduardo/AET-2735-2022; Funo de Moura Franca, Luis Eduardo/AET-2735-2022; Kim, Hong Joo/AAE-1178-2022; DJAMAL, MITRA/JFJ-1152-2023; Ha, Chang Hyon/AAR-8120-2021; Maruyama, Reina/A-1064-2013; KIM, Sun Kee/IQT-8178-2023; Kim, Seongjun/HMV-6287-2023; Lee, Seunghyun/AAS-8066-2021; Lee, Moo/AAK-4266-2020; Laranjeira Couto Pitta, Ricardo/K-4152-2018; Schneider Hahn, Ivanete/H-9015-2016; Lee, Seung Mok/JXM-0966-2024; Rott, Carsten/ABB-1304-2021; Lee, Hyun Su/G-3392-2014 | 57209988432; 56811058500; 57200584326; 7006320391; 58263015500; 57199723894; 6506355194; 56300952200; 57219686017; 17342119700; 57192312712; 57204519171; 55575536700; 24401181300; 55196156000; 59615156600; 59051568100; 7601588326; 59102407800; 55492072500; 7410207253; 57196171764; 56030036300; 57226673940; 23477682800; 56113238600; 57199646872; 55816685400; 57226402706; 55870761600; 57198252980; 57257129200; 55902330700; 7201953933; 57211139944; 9334469000; 57211139925; 35227722100; 57204904910; 8455192000; 57216599536; 35225979300; 57208178150; 57188983477; 16480794500; 35227850400; 57203522213; 56300978900; 7005922145; 57200581630; 57192656960; 57208174900 | yjko@ibs.re.kr;hyunsulee@ibs.re.kr; | EUROPEAN PHYSICAL JOURNAL C | EUR PHYS J C | 1434-6044 | 1434-6052 | 81 | 8 | SCIE | PHYSICS, PARTICLES & FIELDS | 2021 | 4.994 | 25.9 | 0 | 2025-07-30 | 0 | 0 | CRYSTALS; DECAY | English | 2021 | 2021-08 | 10.1140/epjc/s10052-021-09473-2 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||||
| ○ | ○ | Article | Improved accuracy of an FDM 3D printer using a face-diagonal length test using an artifact and a Vernier caliper | Purpose The purpose of this study is to improve the accuracy of a fused deposition modeling three-dimensional (3D) printer by identifying and compensating for position-independent geometric errors using a face-diagonal length test featuring a designed artifact and a Vernier caliper. Design/methodology/approach An artifact that does not require support when printing was designed and printed to allow performance of the face-diagonal length test. A Vernier caliper was used to measure the lengths of diagonals in the XY, YZ and ZX planes of the printed artifact specimen; this completed the face-diagonal length test. The relationships between position-independent geometric errors of the linear axes X, Y and Z and the measured diagonal lengths of the three planes were determined to identify geometric errors. Findings The approach was applied to a commercial fused deposition modeling 3D printer, and three position-independent geometric errors were rapidly identified. The artifact was re-printed after model-based compensation for these errors and the diagonal lengths were re-measured. The results were verified via coordinate measuring machine measurement of a simple test piece without and with model-based compensation for identified geometric errors. Furthermore, the proposed approach was applied to a commercial 3D printer. Research limitations/implications The measured diagonal lengths of the printed artifacts varied greatly. Thus, further studies should investigate the effects of printing materials and parameters on the length discrepancies of 3D printed artifacts. Practical implications A software-based compensation of identified position-independent geometric errors has to be used at commercial 3D printers for accuracy improvements of printed parts. Originality/value Thus, the approach is of practical utility; it can be periodically used to identify position-independent geometric errors and ensure that the 3D printer is consistently accurate. | Yang, Seung-Han; Lee, Kwang-Il | Kyungpook Natl Univ, Sch Mech Engn, Daegu, South Korea; Kyungil Univ, Sch Mech & Automot Engn, Gyongsan, South Korea | 8407949900; 57196250383 | kilee@kiu.kr; | RAPID PROTOTYPING JOURNAL | RAPID PROTOTYPING J | 1355-2546 | 1758-7670 | 27 | 7 | SCIE | ENGINEERING, MECHANICAL;MATERIALS SCIENCE, MULTIDISCIPLINARY | 2021 | 4.043 | 25.9 | 0 | 2025-07-30 | 1 | 1 | Accuracy; Face-diagonal length test; Fused deposition modeling 3D printer; Position-independent geometric error; Vernier caliper | ERROR COMPENSATION; MACHINE-TOOLS; GEOMETRIC ERRORS | Accuracy; Face-diagonal length test; Fused deposition modeling 3D printer; Position-independent geometric error; Vernier caliper | Deposition; Errors; Fused Deposition Modeling; Geometry; Layered manufacturing; Printing presses; Testing; Accuracy Improvement; Design/methodology/approach; Geometric errors; Model-based compensation; Printing materials; Software-based compensation; Threedimensional (3-d); Vernier caliper; 3D modeling | English | 2021 | 2021-08-03 | 10.1108/rpj-04-2019-0101 | 바로가기 | 바로가기 | 바로가기 | 바로가기 |
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