参考文献/References:
[1] Tremblay MSAubert S,Barnes JD,et al. Sedentary behavior research network (SBRN) - terminology consensus project process and outcome[J]. Int J Behav Nutr Phys Act,2017,14(1):75.
[2] Bull FC,Al-Ansari SS,Biddle S,et al. World health organization 2020 guidelines on physical activity and sedentary behaviour[J]. Br J Sports Med,2020,54(24):1451-1462.
[3] Pandey A,Salahuddin U,Garg S,et al. Continuous dose-response association between sedentary time and risk for cardiovascular disease:a meta-analysis[J]. JAMA Cardiol,2016,1(5):575-583.
[4] Bellettiere J,Lamonte MJ,Evenson KR,et al. Sedentary behavior and cardiovascular disease in older women:the objective physical activity and cardiovascular health (OPACH) study[J]. Circulation,2019,139(8):1036-1046.
[5] Lavie CJ,Ozemek C,Carbone S,et al. Sedentary behavior,exercise,and cardiovascular health[J]. Circ Res,2019,124(5):799-815.
[6] Jingjie W,Yang L,Jing Y,et al. Sedentary time and its association with risk of cardiovascular diseases in adults:an updated systematic review and meta-analysis of observational studies[J]. BMC Public Health,2022,22(1):286.
[7] Park S,Nam JY. The impact of sedentary behavior and self-rated health on cardiovascular disease and cancer among south korean elderly persons using the korea national health and nutrition examination survey (KNHANES) 2014-2018 data[J]. Int J Environ Res Public Health,2021,18(14):7426.
[8] Phillips CM,Dillon CB,Perry IJ. Replacement of sedentary time with physical activity:effect on lipoproteins[J]. Med Sci Sports Exerc,2018,50(5):967-976.
[9] Khera AV,Demler OV,Adelman SJ,et al. Cholesterol efflux capacity,high-density lipoprotein particle number,and incident cardiovascular events:An analysis from the jupiter trial (justification for the use of statins in prevention:An intervention trial evaluating rosuvastatin)[J]. Circulation,2017,135(25):2494-2504.
[10] Hu Q,Zhang H,Gutierrez CN,et al. Increased Drp1 acetylation by lipid overload induces cardiomyocyte death and heart dysfunction[J]. Circ Res,2020,126(4):456-470.
[11] Lee S,Gulseth HL,Langleite TM,et al. Branched-chain amino acid metabolism,insulin sensitivity and liver fat response to exercise training in sedentary dysglycaemic and normoglycaemic men[J]. Diabetologia,2021,64(2):410-423.
[12] Wu QR,Zheng DL,Liu PM,et al. High glucose induces Drp1-mediated mitochondrial fission via the orai1 calcium channel to participate in diabetic cardiomyocyte hypertrophy[J]. Cell Death Dis,2021,12(2):216.
[13] Vanderberg JD,Stehouwer CD,Bosma H,et al. Associations of total amount and patterns of sedentary behaviour with type 2 diabetes and the metabolic syndrome:the maastricht study[J]. Diabetologia,2016,59(4):709-718.
[14] Hong J,Park E,Lee J,et al. Exercise training mitigates er stress and Ucp2 deficiency-associated coronary vascular dysfunction in atherosclerosis[J]. Sci Rep,2021,11(1):15449.
[15] Morishima T,Tsuchiya Y,Ueda H,et al. Sitting-induced endothelial dysfunction is prevented in endurance-trained individuals[J]. Med Sci Sports Exerc,2020,52(8):1770-1775.
[16] Carmeli E,Bachar A,Rom O,et al. Oxidative stress and nitric oxide in sedentary older adults with intellectual and developmental disabilities[J]. Adv Exp Med Biol,2016,884(3):21-27.
[17] Mori S,Kosaki K,Matsui M,et al. Sedentary behavior is associated with reduced cardiovagal baroreflex sensitivity in healthy adults[J]. Hypertens Res,2022,45(7):1193-1202.
[18] Matus LN,Flessland OD,Mueller PJ. Sex-dependent development of enhanced sympathoexcitation in sedentary versus physically active rats[J]. J Physiol,2021,599(17):4101-4116.
[19] Germano-Soares AH,Andrade-Lima A,Menêses AL,et al. Association of time spent in physical activities and sedentary behaviors with carotid-femoral pulse wave velocity:a systematic review and meta-analysis[J]. Atherosclerosis,2018,269(2):211-218.
[20] Kulinski JP,Kozlitina J,Berry JD,et al. Association between sedentary time and coronary artery calcium[J]. JACC Cardiovasc Imaging,2016,9(12):1470-1472.
[21] Huston P. A sedentary and unhealthy lifestyle fuels chronic disease progression by changing interstitial cell behaviour:a network analysis[J]. Front Physiol,2022,13(6):904107.
[22] Vandercappellen EJ,Koster A,Savelberg HHCM,et al. Sedentary behaviour and physical activity are associated with biomarkers of endothelial dysfunction and low-grade inflammation-relevance for (pre)diabetes:the maastricht study[J]. Diabetologia,2022,65(5):777-789.
[23] Knudsen NH,Stanya KJ,Hyde AL,et al. Interleukin-13 drives metabolic conditioning of muscle to endurance exercise[J]. Science,2020,368(6490):3987.
[24] O’toole PW,Shiels PG. The role of the microbiota in sedentary lifestyle disorders and ageing:Lessons from the animal kingdom[J]. J Intern Med,2020,287(3):271-282.
[25] Carter S,Hartman Y,Holder S,et al. Sedentary behavior and cardiovascular disease risk:mediating mechanisms[J]. Exerc Sport Sci Rev,2017,45(2):80-86.
[26] Akhtar S,Sharma A. Endothelial dysfunction sustains immune response in atherosclerosis:Potential cause for ineffectiveness of prevailing drugs[J]. Int Rev Immunol,2022,41(2):123-134.
[27] Hemmingsson E,V?is?nen D,Andersson G,et al. Combinations of BMI and cardiorespiratory fitness categories:trends between 1995 and 2020 and associations with CVD incidence and mortality and all-cause mortality in 471 216 adults[J]. Eur J Prev Cardiol,2022,29(6):959-967.
[28] Kulinski JP,Khera A,Ayers CR,et al. Association between cardiorespiratory fitness and accelerometer-derived physical activity and sedentary time in the general population[J]. Mayo Clin Proc,2014,89(8):1063-1071.
[29] Jae SY,Kim HJ,Lee KH,et al. Joint associations of obesity and cardiorespiratory fitness with coronary artery calcium composition:is there evidence for fat-but-fit?[J]. J Cardiopulm Rehabil Prev,2022,42(3):202-207.
[30] Prince SA,Blanchard CM,Grace SL,et al. Objectively-measured sedentary time and its association with markers of cardiometabolic health and fitness among cardiac rehabilitation graduates[J]. Eur J Prev Cardiol,2016,23(8):818-825.
[31] 袁丽霞丁荣晶. 中国心脏康复二级预防指南解读[J]. 中国循环杂志2019,34(S1):86-90.
[32] Thomas RJ,Beatty AL,Beckie TM,et al. Home-based cardiac rehabilitation:a scientific statement from the american association of cardiovascular and pulmonary rehabilitation,the american heart association,and the american college of cardiology[J]. Circulation,2019,140(1):e69-e89.
[33] Hansen D,Abreu A,Ambrosetti M,et al. Exercise intensity assessment and prescription in cardiovascular rehabilitation and beyond:Why and how:A position statement from the secondary prevention and rehabilitation section of the european association of preventive cardiology[J]. Eur J Prev Cardiol,2022,29(1):230-245.
[34] Patterson K,Davey R,Keegan R,et al. A smartphone app for sedentary behaviour change in cardiac rehabilitation and the effect on hospital admissions:the ToDo-CR randomised controlled trial study protocol[J]. BMJ Open,2020,10(12):e40479.
[35] Ten BP,Vanbakel B,Bakker EA,et al. Sitting patterns in cardiovascular disease patients compared with healthy controls and impact of cardiac rehabilitation[J]. Scand J Med Sci Sports,2022,32(11):1639-1649.
[36] Biswas A,Oh PI,Faulkner GE,et al. A prospective study examining the influence of cardiac rehabilitation on the sedentary time of highly sedentary,physically inactive patients[J]. Ann Phys Rehabil Med,2018,61(4):207-214.
[37] Ter Hoeve N,Sunamura M,van Geffen ME,et al. Changes in physical activity and sedentary behavior during cardiac rehabilitation[J]. Arch Phys Med Rehabil,2017,98(12):2378-2384.
[38] Freene N,Mcmanus M,Mair T,et al. High sedentary behaviour and low physical activity levels at 12 months after cardiac rehabilitation:a prospective cohort study[J]. Ann Phys Rehabil Med,2020,63(1):53-58.
[39] Ambrosetti M,Abreu A,Corrà U,et al. Secondary prevention through comprehensive cardiovascular rehabilitation:from knowledge to implementation. 2020 update. A position paper from the secondary prevention and rehabilitation section of the european association of preventive cardiology[J]. Eur J Prev Cardiol,2021,14,28(5):460-495.
[40] Farrahi V,Kangas M,Kiviniemi A,et al. Accumulation patterns of sedentary time and breaks and their association with cardiometabolic health markers in adults[J]. Scand J Med Sci Sports,2021,31(7):1489-1507.
[41] Gonzalez-Jaramillo N,Wilhelm M,Arango-Rivas AM,et al. Systematic review of physical activity trajectories and mortality in patients with coronary artery disease[J]. J Am Coll Cardiol,2022,79(17):1690-1700.
[42] Hartman YAW,Tillmans LCM,Benschop DL,et al. Long-term and acute benefits of reduced sitting on vascular flow and function[J]. Med Sci Sports Exerc,2021,53(2):341-350.
[43] Alkahtani S,Aljaloud K,Yakout S,et al. Interactions between sedentary and physical activity patterns,lean mass,and bone density in arab men[J]. Dis Markers,2019(5):5917573.
[44] Aggio DA,Sartini C,Papacosta O,et al. Cross-sectional associations of objectively measured physical activity and sedentary time with sarcopenia and sarcopenic obesity in older men[J]. Prev Med,2016,91(10):264-272.
[45] Kim Y,Canada JM,Kenyon J,et al. Effects of replacing sedentary time with physical activity on mortality among patients with heart failure:National health and nutrition examination survey follow-up study[J]. Mayo Clin Proc,2022,97(10):1897-1903.
[46] Swartz AM,Wamsley C,Crownover E,et al. Move more and sit less pilot intervention for individuals with heart failure[J]. Int J Cardiol,2022,366(4):57-62.
[47] Pratt M. What’s new in the 2020 world health organization guidelines on physical activity and sedentary behavior?[J]. J Sport Health Sci,2021,10(3):288-289.
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