Journal of Shandong University (Health Sciences) ›› 2020, Vol. 58 ›› Issue (5): 107-114.doi: 10.6040/j.issn.1671-7554.0.2019.721
LI Yunxia1,2, LI Hongkai1,2, MA Yuntao3, YU Yuanyuan1,2, SUN Xiaoru1,2, LIU Xinhui1,2, SI Shucheng1,2, HOU Lei1,2, YUAN Tonghui1,2, LIU Lu1,2, LI Wenchao1,2, XUE Fuzhong1,2, LIU Yanxun1,2
CLC Number:
[1] 陈灏珠, 钟南山, 陆再英, 等. 动脉粥样硬化和冠状动脉粥样硬化性心脏病[M] //葛均波, 徐永健. 内科学(8 版). 北京: 人民卫生出版社, 2013: 220-256. [2] 吴舒窈, 刘艳, 宋倩. 冠心病发病及预后的影响因素研究[J]. 中国全科医学, 2018, 21(29): 3562-3570. WU Shuyao,LIU Yan,SONG Qian.Multivariate analysis of risk and prognostic factors in patients with coronary heart disease[J].Chinese General Practice,2018, 21(29): 3562-3570. [3] Benjamin EJ, Blaha MJ, Chiuve SE, et al. Heart disease and stroke statistics-2017 update: a report from the American heart association[J]. Circulation, 2017, 135(10): e146-e603. doi:10.1161/CIR.0000000000000485. [4] Schmidt M, Botker HE, Pedersen L, et al. Adult height and risk of ischemic heart disease, atrial fibrillation, stroke, venous thromboembolism, and premature death: a population based 36-year follow-up study[J]. Eur J Epidemiol, 2014, 29(2): 111-118. [5] Park CS, Choi EK, Han KD, et al. Association between adult height, myocardial infarction, heart failure, stroke and death: a Korean nationwide population-based study[J]. Int J Epidemiol, 2018, 47(1): 289-298. [6] Paajanen TA, Oksala NK, Kuukasjarvi P, et al. Short stature is associated with coronary heart disease: a systematic review of the literature and a meta-analysis[J]. Eur Heart J, 2010, 31(14): 1802-1809. [7] Asghari G, Hosseinpanah F, Nazeri P, et al. Adult height and risk of coronary heart disease: Tehran Lipid and Glucose Study[J]. J Epidemiol, 2012, 22(4): 348-352. [8] Silventoinen K, Zdravkovic S, Skytthe A, et al. Association between height and coronary heart disease mortality: a prospective study of 35,000 twin pairs[J]. Am J Epidemiol, 2006, 163(7): 615-621. [9] Lawlor DA, Taylor M, Davey SG, et al. Associations of components of adult height with coronary heart disease in postmenopausal women: the British womens heart and health study[J]. Heart, 2004, 90(7): 745-749. [10] Katan MB. Apolipoprotein E isoforms, seurm cholesterol,and cancer[J]. Lancet, 1986, 1(8479): 507-508. [11] Pierce BL, Burgess S. Efficient design for Mendelian randomization studies: subsample and 2-sample instrumental variable estimators[J]. Am J Epidemiol, 2013, 178(7): 1177-1184. [12] Smith GD, Ebrahim S. ‘Mendelian randomization’:call genetic epidemiology contribute to understanding environmental determinants of disease[J]. Int J Epidemiol, 2003, 32(1): 1-22. [13] Lawlor DA, Harbord RM, Sterne JAC, et al. Mendelian randomization:using genes as instruments for making causal inferences in epidemiology.[J]. Stat Med, 2008, 27(8): 1133-1163. [14] Yengo L, Sidorenko J, Kemper KE, et al. Meta-analysis of genome-wide association studies for height and body mass index in 700 000 individuals of European ancestry[J]. Hum Mol Genet, 2018, 27(20): 3641-3649. [15] Wood AR, Esko T, Yang J, et al. Defining the role of common variation in the genomic and biological architecture of adult human height[J]. Nat Genet, 2014, 46(11): 1173-1186. [16] Schunkert H, Konig IR, Kathiresan S, et al. Large-scale association analysis identifies 13 new susceptibility loci for coronary artery disease[J]. Nat Genet, 2011, 43(4): 333-338. [17] 刘新辉, 李洪凯, 李明卓, 等. 腰围和冠心病因果关系的孟德尔随机化研究[J]. 山东大学学报(医学版), 2019, 57(11): 103-109. LIU Xinhui, LI Hongkai, LI Mingzhuo, et al. A mendelian randomization study on the causal relationship between waist circumference and incidence of coronary heart disease[J]. Journal of Shandong University(Health Sciences), 2019, 57(11): 103-109. [18] Geng T, Smith CE, Li C, et al. Childhood BMI and adult type 2 diabetes, coronary artery diseases, chronic kidney disease, and cardiometabolic traits: a Mendelian randomization analysis[J]. Diabetes Care, 2018, 41(5): 1089-1096. [19] Emdin CA, Khera AV, Natarajan P, et al. Genetic association of waist-to-hip ratio with cardiometabolic traits, type 2 diabetes, and coronary heart disease[J]. JAMA, 2017, 317(6): 626-634. [20] Chiriacò M, Pateras K, Virdis A, et al. Association between blood pressure variability, cardiovascular disease and mortality in type 2 diabetes: a systematic review and meta-analysis[J]. Diabetes Obes Metab, 2019, 21(12): 2587-2598. [21] Holmes MV, Asselbergs FW, Palmer TM, et al. Mendelian randomization of blood lipids for coronary heart disease[J]. Eur. Heart J, 2015, 36(9): 539-550. [22] Hartwig FP, Davies NM, Hemani G, et al. Two-sample Mendelian randomization: avoiding the downsides of a powerful, widely applicable but potentially fallible technique[J]. Int J Epidemiol, 2016, 45(6): 1717-1726. [23] Bowden J, Davey SG, Burgess S. Mendelian randomization with invalid instruments: effect estimation and bias detection through Egger regression[J]. Int J Epidemiol, 2015, 44(2): 512-525. [24] Greenland S. An introduction to instrumental variables for epidemiologists[J]. Int J Epidemiol, 2018, 47(1): 358. doi: 10.1093/ije/dyx275. [25] Lanfer A, Mehlig K, Heitmann BL, et al. Does change in hip circumference predict cardiovascular disease and overall mortality in Danish and Swedish women?[J]. Obesity(Silver Spring), 2014, 22(3): 957-963. [26] Stock JH, Wright JH, Yogo M. A survey of weak instruments and weak identification in generalized method of moments[J]. J Bus Econ Stat, 2002, 20(4): 518-529. [27] Bowden J, Davey SG, Burgess S. Mendelian randomization with invalid instruments: effect estimation and bias detection through Egger regression[J]. Int J Epidemiol, 2015, 44(2): 512-525. [28] Bowden J, Del Greco MF, Minelli C, et al. Assessing the suitability of summary data for two-sample Mendelian randomization analyses using MR-Egger regression: the role of the I2 statistic[J]. Int J Epidemiol, 2016, 45(6): 1961-1974. [29] 王莉娜, Zhang Zuofeng. 孟德尔随机化法在因果推断中的应用[J]. 中华流行病学杂志, 2017, 28(4): 547-552. WANG Lina, ZHANG Zuofeng. Mendelian randomization approach, used for causal inferences[J]. Chin J Epidemiol,2017, 28(4): 547-552. [30] Burgess S, Butterworth A, Thompson SG. Mendelian randomization analysis with multiple genetic variants using summarized data[J]. Genet Epidemiol, 2013, 37(7): 658-665. [31] Bowden J, Davey SG, Haycock PC, et al. Consistent estimation in Mendelian randomization with some invalid instruments using a weighted median estimator[J]. Genet Epidemiol, 2016, 40(4): 304-314. [32] Smulyan H, Marchais SJ, Pannier B, et al. Influence of body height on pulsatile arterial hemodynamic data[J]. J Am Coll Cardiol, 1998, 31(5): 1103-1109. [33] Lemos PA, Ribeiro EE, Perin MA, et al. Angiographic segment size in patients referred for coronary intervention is influenced by constitutional, anatomical, and clinical features[J]. Int J Cardiovasc Imaging, 2007, 23(1): 1-7. [34] West NE, Ruygrok PN, Disco CM, et al. Clinical and angiographic predictors of restenosis after stent deployment in diabetic patients[J]. Circulation, 2004, 109(7): 867-873. [35] Kortelainen ML, Sarkioja T. Coronary atherosclerosis associated with body structure and obesity in 599 women aged between 15 and 50 years[J]. Int J Obes Relat Metab Disord, 1999, 23(8): 838-844. [36] Lai FY, Nath M, Hamby SE, et al. Adult height and risk of 50 diseases: a combined epidemiological and genetic analysis[J]. BMC Medicine, 2018, 16(1): 187-204. [37] Nüesch E, Dale C, Palmer TM, et al. Adult height, coronary heart disease and stroke: a multi-locus Mendelian randomization meta-analysis[J]. Int J Epidemiol, 2016, 45(6): 1927-1937. |
[1] | ZHANG Kai, SI Shucheng, LI Jiqing, LIU Xiaowen, ZHAO Yingqi, XUE Fuzhong. Mendelian randomization study of sleep phenotypes and irritable bowel syndrome [J]. Journal of Shandong University (Health Sciences), 2022, 60(8): 109-114. |
[2] | YANG Xuan, LI Yanzhi, MA Wei, JIA Chongqi. Causal influence of lung function on risk of fatality of COVID-19: a two-sample Mendelian randomization study [J]. Journal of Shandong University (Health Sciences), 2021, 59(7): 104-111. |
[3] | CHEN Chen, ZHANG Kai, ZHANG Feng, ZHAO Jie. Anatomical classification and clinical significance of lumbar intervertebral space height in healthy adults [J]. Journal of Shandong University (Health Sciences), 2019, 57(5): 43-47. |
[4] | LIU Xinhui, LI Hongkai, LI Mingzhuo, YU Yuanyuan, SI Shucheng, HOU Lei, LIU Lu, LI Wenchao, YUAN Tonghui, LI Yunxia, ZHOU Yuchang, XUE Fuzhong. A Mendelian randomization study on the causal relationship between waist circumference and incidence of coronary heart disease [J]. Journal of Shandong University (Health Sciences), 2019, 57(11): 103-109. |
[5] |
LIANG Kai1, HOU Xin-guo1, WANG Xin-hua2, SONG Yun-sheng2, JING Qing-ping3, QU Yong4, SUN Yu1, SONG Jun1, DONG Xiao-lin1, XU Yu-xin1, LI Zhen.
Predictive values of anthropometric parameters on glucose metabolism disorders [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2012, 50(9): 59-62. |
|