Ma S, Yang L, Zhao M, Magnussen CG, Xi B. Trends in hypertension prevalence, awareness, treatment and control rates among Chinese adults, 1991–2015. J Hypertens. 2021;39:740–8.
Article CAS PubMed Google Scholar
Cutler JA, Sorlie PD, Wolz M, Thom T, Fields LE, Roccella EJ. Trends in hypertension prevalence, awareness, treatment, and control rates in United States adults between 1988–1994 and 1999–2004. Hypertension. 2008;52:818–27.
Article CAS PubMed Google Scholar
Collaborators GBDRF: Global, regional, and national comparative risk assessment of 84 behavioural, environmental and occupational, and metabolic risks or clusters of risks for 195 countries and territories, 1990–2017: a systematic analysis for the Global Burden of Disease Study 2017. Lancet. 2018;392:1923–1994.
DALYs GBD, Collaborators H, Murray CJ, Barber RM, Foreman KJ, Abbasoglu Ozgoren A, Abd-Allah F, Abera SF, Aboyans V, Abraham JP, et al. Global, regional, and national disability-adjusted life years (DALYs) for 306 diseases and injuries and healthy life expectancy (HALE) for 188 countries, 1990–2013: quantifying the epidemiological transition. Lancet. 2015;386:2145–91.
Cerhan JR, Moore SC, Jacobs EJ, Kitahara CM, Rosenberg PS, Adami HO, Ebbert JO, English DR, Gapstur SM, Giles GG, et al. A pooled analysis of waist circumference and mortality in 650,000 adults. Mayo Clin Proc. 2014;89:335–45.
Emerging Risk Factors C, Wormser D, Kaptoge S, Di Angelantonio E, Wood AM, Pennells L, Thompson A, Sarwar N, Kizer JR, Lawlor DA, et al. Separate and combined associations of body-mass index and abdominal adiposity with cardiovascular disease: collaborative analysis of 58 prospective studies. Lancet. 2011;377:1085–1095.
Tchernof A, Despres JP. Pathophysiology of human visceral obesity: an update. Physiol Rev. 2013;93:359–404.
Article CAS PubMed Google Scholar
Snijder MB, van Dam RM, Visser M, Seidell JC. What aspects of body fat are particularly hazardous and how do we measure them? Int J Epidemiol. 2006;35:83–92.
Article CAS PubMed Google Scholar
Pischon T, Boeing H, Hoffmann K, Bergmann M, Schulze MB, Overvad K, van der Schouw YT, Spencer E, Moons KG, Tjonneland A, et al. General and abdominal adiposity and risk of death in Europe. N Engl J Med. 2008;359:2105–20.
Article CAS PubMed Google Scholar
Snijder MB, Dekker JM, Visser M, Bouter LM, Stehouwer CD, Kostense PJ, Yudkin JS, Heine RJ, Nijpels G, Seidell JC. Associations of hip and thigh circumferences independent of waist circumference with the incidence of type 2 diabetes: the Hoorn Study. Am J Clin Nutr. 2003;77:1192–7.
Article CAS PubMed Google Scholar
Jacobs EJ, Newton CC, Wang Y, Patel AV, McCullough ML, Campbell PT, Thun MJ, Gapstur SM. Waist circumference and all-cause mortality in a large US cohort. Arch Intern Med. 2010;170:1293–301.
Sun JY, Hua Y, Zou HY, Qu Q, Yuan Y, Sun GZ, Sun W, Kong XQ. Association Between Waist Circumference and the Prevalence of (Pre) Hypertension Among 27,894 US Adults. Front Cardiovasc Med. 2021;8:717257.
Article PubMed PubMed Central Google Scholar
Sun J, Qu Q, Yuan Y, Sun G, Kong X, Sun W. Normal-Weight Abdominal Obesity: A Risk Factor for Hypertension and Cardiometabolic Dysregulation. Cardiol Discov. 2021. https://doi.org/10.1097/CD9.0000000000000034.
Foulds HJ, Bredin SS, Warburton DE. The relationship between hypertension and obesity across different ethnicities. J Hypertens. 2012;30:359–67.
Article CAS PubMed Google Scholar
Ostchega Y, Hughes JP, Terry A, Fakhouri TH, Miller I. Abdominal obesity, body mass index, and hypertension in US adults: NHANES 2007–2010. Am J Hypertens. 2012;25:1271–8.
Nurdiantami Y, Watanabe K, Tanaka E, Pradono J, Anme T. Association of general and central obesity with hypertension. Clin Nutr. 2018;37:1259–63.
Popkin BM, Du S, Zhai F, Zhang B. Cohort Profile: The China Health and Nutrition Survey–monitoring and understanding socio-economic and health change in China, 1989–2011. Int J Epidemiol. 2010;39:1435–40.
Li R, Li Q, Zhang S, Zhang Y, He P, Zhang Z, Liu M, Zhou C, Ye Z, Wu Q, et al. Domestic Physical Activity and New-Onset Hypertension: A Nationwide Cohort Study in China. Am J Med. 2022;135(1362–1370):e1366.
Zhao Y, Hu Y, Smith JP, Strauss J, Yang G. Cohort profile: the China Health and Retirement Longitudinal Study (CHARLS). Int J Epidemiol. 2014;43:61–8.
Liao S, Lu X, Cheang I, Zhu X, Yin T, Yao W, Zhang H, Li X. Prognostic value of the modified model for end-stage liver disease (MELD) score including albumin in acute heart failure. BMC Cardiovasc Disord. 2021;21:128.
Article CAS PubMed PubMed Central Google Scholar
Grundy SM, Cleeman JI, Daniels SR, Donato KA, Eckel RH, Franklin BA, Gordon DJ, Krauss RM, Savage PJ, Smith SC Jr, et al. Diagnosis and management of the metabolic syndrome: an American Heart Association/National Heart, Lung, and Blood Institute Scientific Statement. Circulation. 2005;112:2735–52.
Seo DC, Choe S, Torabi MR. Is waist circumference >/=102/88cm better than body mass index >/=30 to predict hypertension and diabetes development regardless of gender, age group, and race/ethnicity? Meta-analysis Prev Med. 2017;97:100–8.
Alberti KG, Zimmet P, Shaw J. Metabolic syndrome–a new world-wide definition A Consensus Statement from the International Diabetes Federation. Diabet Med. 2006;23:469–80.
Article CAS PubMed Google Scholar
Waist circumference and waist-hip ratio: report of a WHO expert consultation. Geneva: World Health Organization; 2008. https://www.who.int/publications/i/item/9789241501491.
Unger T, Borghi C, Charchar F, Khan NA, Poulter NR, Prabhakaran D, Ramirez A, Schlaich M, Stergiou GS, Tomaszewski M, et al. 2020 International Society of Hypertension Global Hypertension Practice Guidelines. Hypertension. 2020;75:1334–57.
Article CAS PubMed Google Scholar
Sun JY, Ma YX, Liu HL, Qu Q, Cheng C, Kong XQ, Huang WJ, Sun W. High waist circumference is a risk factor of new-onset hypertension: Evidence from the China Health and Retirement Longitudinal Study. J Clin Hypertens (Greenwich). 2022;24:320–8.
Wang C, Yuan Y, Zheng M, Pan A, Wang M, Zhao M, Li Y, Yao S, Chen S, Wu S, Xue H. Association of Age of Onset of Hypertension With Cardiovascular Diseases and Mortality. J Am Coll Cardiol. 2020;75:2921–30.
Salton CJ, Chuang ML, O’Donnell CJ, Kupka MJ, Larson MG, Kissinger KV, Edelman RR, Levy D, Manning WJ. Gender differences and normal left ventricular anatomy in an adult population free of hypertension A cardiovascular magnetic resonance study of the Framingham Heart Study Offspring cohort. Journal of the American College of Cardiology. 2002;39:1055–60.
Wang Y, Ye C, Kong L, Zheng J, Xu M, Xu Y, Li M, Zhao Z, Lu J, Chen Y, et al. Independent Associations of Education, Intelligence, and Cognition With Hypertension and the Mediating Effects of Cardiometabolic Risk Factors: A Mendelian Randomization Study. Hypertension. 2023;80:192–203.
Article CAS PubMed Google Scholar
Bowman TS, Gaziano JM, Buring JE, Sesso HD. A prospective study of cigarette smoking and risk of incident hypertension in women. J Am Coll Cardiol. 2007;50:2085–92.
Article CAS PubMed Google Scholar
Friedman GD, Klatsky AL, Siegelaub AB. Alcohol intake and hypertension. Ann Intern Med. 1983;98:846–9.
Article CAS PubMed Google Scholar
Nilsson PM. Blood glucose and hypertension development: the hen and egg controversy. J Hypertens. 2019;37:11–2.
Article CAS PubMed Google Scholar
Ferrannini E, Cushman WC. Diabetes and hypertension: the bad companions. Lancet. 2012;380:601–10.
Chrusciel P, Stemplewska P, Stemplewski A, Wattad M, Bielecka-Dabrowa A, Maciejewski M, Penson P, Bartlomiejczyk MA, Banach M. Associations between the lipid profile and the development of hypertension in young individuals - the preliminary study. Arch Med Sci. 2022;18:25–35.
Okumura N, Kondo T, Matsushita K, Osugi S, Shimokata K, Matsudaira K, Yamashita K, Maeda K, Murohara T. Associations of proteinuria and the estimated glomerular filtration rate with incident hypertension in young to middle-aged Japanese males. Prev Med. 2014;60:48–54.
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