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題名:基因與運動與臺灣民眾痛風得病風險的關聯性
書刊名:臺灣公共衛生雜誌
作者:陳延安謝璦如陳培君周子傑
作者(外文):Chen, Yen-anHsieh, Ai-ruChen, Pei-chunChou, Tzu-chieh
出版日期:2022
卷期:41:5
頁次:頁538-550
主題關鍵詞:痛風基因風險分數運動臺灣人體生物資料庫GoutGenetic risk scoreExerciseTaiwan Biobank
原始連結:連回原系統網址new window
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  • 點閱點閱:2
期刊論文
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2.Chuang, S. Y.、Lee, S. C.、Hsieh, Y. T.、Pan, W. H.(2011)。Trends in hyperuricemia and gout prevalence: Nutrition and Health Survey in Taiwan from 1993-1996 to 2005-2008。Asia Pacific Journal of Clinical Nutrition,20,301-308。  new window
3.Singh, J. A.、Gaffo, A.(2020)。Gout epidemiology and comorbidities。Semin Arthritis Rheum,50,S11-S16。  new window
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5.Chen, J. H.、Wen, C. P.、Wu, S. B.(2015)。Attenuating the mortality risk of high serum uric acid: the role of physical activity underused。Ann Rheum Dis,74,2034-2042。  new window
6.Kakutani-Hatayama, M.、Kadoya, M.、Okazaki, H.(2017)。Nonpharmacological management of gout and hyperuricemia: hints for better lifestyle。Am J Lifestyle Med,11,321-329。  new window
7.Tam, V.、Patel, N.、Turcotte, M.、Bossé, Y.、Paré, G.、Meyre, D.(2019)。Benefits and limitations of genome-wide association studies。Nat Rev Genet,20,467-484。  new window
8.Igo, R. P. Jr.、Kinzy, T. G.、Cooke Bailey, J. N.(2019)。Genetic risk scores。Curr Protoc Hum Genet,104。  new window
9.Zhang, C.、Hu, R.、Zhang, G.(2019)。A weighted genetic risk score based on four APOE-independent Alzheimer's disease risk loci may supplement APOE E4 for better disease prediction。J Mol Neurosci,69,433-443。  new window
10.Li, C.、Li, Z.、Liu, S.(2015)。Genome-wide association analysis identifies three new risk loci for gout arthritis in Han Chinese。Nat Commun,6。  new window
11.Nakatochi, M.、Kanai, M.、Nakayama, A.(2019)。Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals。Commun Biol,2。  new window
12.Major, T. J.、Dalbeth, N.、Stahl, E. A.、Merriman, T. R.(2018)。An update on the genetics of hyperuricaemia and gout。Nat Rev Rheumatol,14,341-353。  new window
13.Cheng, C. F.、Lin, Y. J.、Lin, M. C.(2021)。Genetic risk score constructed from common genetic variants is associated with cardiovascular disease risk in type 2 diabetes mellitus。J Gene Med,23。  new window
14.Gao, X.、Becker, L. C.、Becker, D. M.、Starmer, J. D.、Province, M. A.(2010)。Avoiding the high Bonferroni penalty in genome-wide association studies。Genet Epidemiol,34,100-105。  new window
15.Manor, O.、Segal, E.(2013)。Predicting disease risk using bootstrap ranking and classification algorithms。PLoS Comput Biol,9。  new window
16.Hsieh, A. R.、Huang, Y. C.、Yang, Y. F.(2020)。Lack of association of genetic variants for diabetic retinopathy in Taiwanese patients with diabetic nephropathy。BMJ Open Diabetes Res Care,8。  new window
17.Potts, J.、Nagaraja, V.、Al Suwaidi, J.(2019)。The influence of Elixhauser comorbidity index on percutaneous coronary intervention outcomes。Catheter Cardiovasc Interv,94,195-203。  new window
18.Yamamoto, T.、Moriwaki, Y.、Ka, T.(2004)。Effect of sauna bathing and beer ingestion on plasma concentrations of purine bases。Metabolism,53,772-776。  new window
19.Huang, Li-ling、Huang, Chien-tsai、Chen, Mei-lien、Mao, I-fang(20100800)。Effects of Profuse Sweating Induced by Exercise on Urinary Uric Acid Excretion in a Hot Environment。中國生理學雜誌,53(4),254-261。  new window
20.Mehmood, A.、Zhao, L.、Ishaq, M.(2020)。Uricostatic and uricosuric effect of grapefruit juice in potassium oxonate-induced hyperuricemic mice。J Food Biochem,44。  new window
21.Jeroncić, I.、Mulić, R.、Klismanić, Z.、Rudan, D.、Boban, M.、Zgaga, L.(2010)。Interactions between genetic variants in glucose transporter type 9 (SLC2A9) and dietary habits in serum uric acid regulation。Croat Med J,51,40-47。  new window
22.Chen, C. J.、Tseng, C. C.、Yen, J. H.(2018)。ABCG2 contributes to the development of gout and hyperuricemia in a genome-wide association study。Sci Rep,8。  new window
23.Lee, M. G.、Hsu, T. C.、Chen, S. C.(2019)。Integrative genome-wide association studies of eQTL and GWAS data for gout disease susceptibility。Sci Rep,9。  new window
24.Bray, M. S.(2000)。Genomics, genes, and environmental interaction: the role of exercise。J Appl Physiol,88,788-792。  new window
25.Sarzynski, M. A.、Loos, R. J.、Lucia, A.(2016)。Advances in exercise, fitness, and performance genomics in 2015。Med Sci Sports Exerc,48,1906-1916。  new window
26.Janipalli, C. S.、Kumar, M. V. K.、Vinay, D. G.(2012)。Analysis of 32 common susceptibility genetic variants and their combined effect in predicting risk of type 2 diabetes and related traits in Indians。Diabet Med,29,121-127。  new window
27.Wu, J.、Pfeiffer, R. M.、Gail, M. H.(2013)。Strategies for developing prediction models from genome-wide association studies。Genet Epidemiol,37,768-777。  new window
28.Xin, J.、Chu, H.、Ben, S.(2018)。Evaluating the effect of multiple genetic risk score models on colorectal cancer risk prediction。Gene,673,174-180。  new window
29.王鋮、戴俊程、孫義民(2015)。遺傳風險評分的原理與方法。中華流行病學雜誌,36(10),1062-1064。  延伸查詢new window
其他
1.WHO(2022)。Physical activity,https://www.who.int/news-room/fact-sheets/detail/physical-activity。  new window
 
 
 
 
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