本章参考文献

本章参考文献

[1] 钱建龙.体育运动与身心健康[M].武汉:武汉大学出版社,2006.

[2] 贾晓宏.运动不足是最大的“流行病”[N].北京晚报,2015-08-24(10).

[3] 李伟,张元峰,张雷,等.心率对应运动负荷等级指标的研究[J].哈尔滨师范大学自然科学学报,2008,24(5):99-102.

[4] 季宇彬,于洪伟,汲晨锋.细胞内代谢产物堆积对机体疲劳的影响[G].药学发展前沿论坛及药理学博士论坛论文集,2008.

[5] 黄叔怀.试论体育运动的分类体系[J].体育科学,1991(6):13-16.

[6] ROMIJN J A,COYLE E F,SIDOSSIS L S,et al.Relationship between fatty acid delivery and fatty acid oxidation during strenuous exercise[J].Journal of applied physiology,1995,79(6):1939-1945.

[7] 魏冰,白厚增,靳一哲,等.运动、EGCG和肉碱对肥胖大鼠体重、内脏脂肪及肝脏CPT1表达的影响[J].中国运动医学杂志,2012,31(4):331-335.

[8] AOI W,NAITO Y,HANG L P,et al.Regular exercise prevents high-sucrose diet-induced fatty liver via improvement of hepatic lipid metabolism[J].Biochemical and biophysical research communications,2011,413(2):330-335.

[9] DURANTE P E,MUSTARD K J,PARK S H,et al.Effects of endurance training on activity and expression of AM P-activated protein kinase isoforms in rat muscles[J].American journal of physiology-endocrinology and metabolism,2002,283(1):178-186.

[10] FROSIG C,JORGENSEN S B,HARDIE D G,et al.5′-AMP-activated protein kinase activity and protein expression are regulated by endurance training in human skeletal muscle[J].American journal of physiologyendocrinology and metabolism,2004,286:411-417.

[11] TIKKANEN H O,NFIVERI H K,HARKONEN M H.Alteration of regulatory enzyme activities in fast-twitch and slow-twitch muscles and muscle fibres in low-intensity endurance-trained rats[J].European journal of applied physiology,1995,70:281-287.

[12] TUNSTALL R J,MEHAN K A,WADLEY G D,et al.Exercise training increases lipid metabolism gene expression in human skeletal muscle[J].American journal of physiology-endocrinology and metabolism,2002,283:66-72.

[13] 陈吉棣.运动营养学[M].北京:北京医科大学出版社,2002:20-30.

[14] BRADLEY N S,SNOOK L A,JAIN S S,et al.Acute endurance exercise increases plasma membrane fatty acid transport proteins in rat and human skeletal muscle[J].American journal of physiology-endocrinology and metabolism,2012,302(2):183-189.

[15] SALVADOR A,FANARI P,DWORZAK F,et al.Respiratory and metabolic responses during exercise and skeletal muscle morphology in obesity[J].Sport science health,2004(1):47-54.

[16] PEDERSEN B K,STEENSBERG A,FISCHER C.Searching for the exercise factor:is IL-6 a candidate?[J].Journal of muscle research and cell motility,2003,24(3):113-119.

[17] STEENSBERG A,VAN HALL G,OSADA T,et al.Production of IL-6 in contracting human skeletal muscles can account for the exercise-induced increase in plasm a Il-6[J].Journal of physiology,2000,529(1):237-242.

[18] STEENSBERG A,KELLER C,STARKIE R L,et al.Il-6 and TNF-a expression in,and release from,contracting human skeletal muscle[J].American journal of physiology-endocrinology and metabolism,2002,283(6):1272-1278.

[19] KELLER C,STEENSBERG A,HANSEN A K,et al.Effect of exercise,training,and glycogen availability on Il-6 receptor expression in human skeletal muscle[J].Journal of applied physiology,2005,99(6):2075-2079.

[20] FEBBRAIO M A,PEDERSEN B K.Muscle-derived interleukin-6:mechanisms for activation and possible biological roles[J].FASEB journal,2002,16(11):1335-1347.

[21] PETERSEN E W,CAREY A L,SACCHETTI M,et al.A cute Il-6 treatment increases fatty acid turnover in elderly humans in vivo and in tissue culture in vitro[J].American journal of physiology-endocrinology and metabolism,2005,288(1):155-162.

[22] VAN HALL G,STEENSBERG A,SACCHETTI M,et al.Interleukin-6 stimulates lipolysis and fat oxidation in humans[J].Journal of clinical endocrinology and metabolism,2003,88(7):3005-3010.

[23] JI L L.Exercise and oxidative stress:role of the cellular antioxdant systems[J].Exercise sport science reviews,1995:135-166.

[24] 程时,丁海勤.谷胱甘肽及抗氧化作用今日谈[J].生理科学进展,2002,33(1):85-90.

[25] MEYDANI M,EVANS W J.Free radicals,exercise,and aging[J].Aging(Milano),1997,9(1-2):12-18.

[26] MUSHA H,NAGASHIMA J.Myocardial injury in a 100 km ultramarathon[J].Current Therapeutic Research,1997,58(9)587-593.

[27] PHANEUF S,LEEUWENBURGH C.Apoptosis and exercise[J].Medicine and science in sports and exercise,2001,3:393-396.

[28] KYTO V,LAPATTO R,LAKKISTO P.Glutathione depletion and cardiomyocyte apoptosis in viral myocarditis[J].European journal of clinical investigation,2004,34(3):167-175.

[29] LEEUWENBURGH C,HOLLANDER J,LEICHTWEIS S.Adaptations of glutathione antioxidant system to endurance training are tissue and muscle fiber specific[J].American journal of physiology,1997,272:363-369.

[30] MARIN E,KRETZSCHMAR M.Arokoski,J.Enzymes of glutathione synthesis in dog skeletal muscles and their response to training[J].Acta physiologica scandinavica,1993,147:369-373.

[31] SCHAFER F Q,Buettner.G.R.Redox environment of the cell as viewed through the redox state of the glutathione disulfide/glutathione couple[J].Free radical biology and medicine 2001(30):1191-1212.

[32] 程时,丁海勤.谷胱甘肽及其抗氧化作用今日谈[J].生理科学进展,2002,33(1):85-90.

[33] 宋玉果,王涤新.谷胱甘肽作为脂质过氧化损伤指标的研究[J].中华预防医学杂志,1999,23(5):317-319.

[34] 王平远,高丽,许豪文.运动及衰老过程中线粒体ROS机制的探讨[J].山东体育学院学报,2003,19(2):36-39.(https://www.daowen.com)

[35] 王今越,王小虹,冯维斗.IRS1、Akt、FOXO1在少肌症发生及其运动性缓解中的作用[J].成都体育学院学报,2012,38(7):86-91.

[36] 张红品,王维群.运动对骨代谢调节激素和生化指标的作用[J].中国组织工程研究与临床康复,2007,11(6):1106-1108.

[37] 顾晓明,颜军,童昭岗.中小运动量的身体锻炼对应激状态下大鼠NK和IL-2的影响[J].西安体育学院学报,2001,18(1):35-39.

[38] 钱伟.不同负荷运动训练对冷应激状态大鼠机体免疫功能的影响[J].中国组织工程研究与临床康复,2007,11(17):3370-3372.

[39] 姚鸿恩.体育保健学[M].北京:人民体育出版社,2001.

[40] 邓树勋,王健,乔德才.运动生理学[M].北京:高等教育版社,2005.

[41] 陈芳.初探音乐在体育运动中的功能与作用[J].科技信息,2008(28):476.

[42] FAN J G.Epidemiology of alcoholic and nonalcoholic fatty liver disease in China[J].Lancet gastroenterol hepatol,2013,28(1):11-17.

[43] 高峰.全天运动时间与健康的合理安排[J].老年周报,2013-04-05.

[44] 李洁,王玉侠.肥胖发生机制及减肥方法的研究现状[J].中国体育科技,2006,42(2):64-67.

[45] FOGELHOLM M,STALLKNECHT B,VAN BAAK M.ECSS position statement:exercise and obesity[J].European journal of sport science,2006,1(6):15-24.

[46] 沈通彦,李军汉,黄雷,等.运动减肥的生物学机制[J].中国组织工程研究与临床康复,2007,11(17):3415-3418.

[47] 刘英辉.各种运动强度分类的比较研究[J].山东体育科技,2001,23(4):20-22.

[48] 冯炜权.某些运动项目的生物化学分类和训练方法[J].体育科学,1989(4):53-56.

[49] BOSTRÖM P,WU J,JEDRYCHOWSK M P,et al.A PGC1α-dependent myokine that drives browning of white fat and thermogenesis[J].Nature,481(7382):463-468.

[50] Kristóf E,Doan-Xuan QM,Bai P,et al.Laser-scanning cytometry can quantify human adipocyte browning and proves effectiveness of irisin[J].Scientific reports,2015(5):12540.

[51] RASCHKE S,ELSEN M,GASSENHUBER H,et al.Evidence against a beneficial effect of irisin in humans[J].Plos one,2013,8(9):73680.

[52] LEE P,LINDERMAN J D,SMITH S,et al.Irisin and FGF21 are cold-induced endocrine activators of brown fat function in humans[J].Cell metabolism,2014,19(2):302-309.

[53] BOSTRÖM P,MANN N,WU J,et al.C/EBPβcontrols exercise-induced cardiac growth and protects against pathological cardiac remodeling[J].Cell,2010,143(7):1072-1083.

[54] LIU X,XIAO J,ZHU H,et al.miR-222 is necessary for exercise-induced cardiac growth and protects against pathological cardiac remodeling[J].Cell metabolism,2015,21(4):584-595.

[55] UCHIDA S,Dimmeler S.Exercise controls non-coding RNAs[J].Cell metabolism,2015,21(4):511-512.

[56] XIAO J J.Exercise for cardiovascular disease prevention and treatment:from molecular to clinical,Part 1[M].Springer nature,2017.

[57] XIAO J J.Exercise for cardiovascular disease prevention and treatment:from molecular to clinical,Part 2[M].Springer nature,2017.

[58] XIAO J J.Physical exercise for human health[M].Springer nature,2020.

[59] VUJIC A,LERCHENMüLLER C,WU T D,et al.Exercise induces new cardiomyocyte generation in the adult mammalian heart[J].Nature communications,2018,9(1):1659.

[60] ROH J,RHEE J,CHAUDHARI V,et al.The role of exercise in cardiac aging:from physiology to molecular mechanisms[J].Circulation research,2016,118(2):279-295.

[61] WEI X,LIU X,ROSENZWEIG A.What do we know about the cardiac benefits of exercise?[J].Trends in cardiovascular medicine,2015,25(6):529-536.

[62] PLATT C,HOUSTIS N,ROSENZWEIG A.Using exercise to measure and modify cardiac function[J].Cell metabolism,2015,21(2):227-236.

[63] LERCHENMÜLLER C,ROSENZWEIG A.Mechanisms of exercise-induced cardiac growth[J].Drug discovery today,2014,19(7):1003-1009.

[64] WANG L,L YU Y,LI G,et al.MicroRNAs in heart and circulation during physical exercise[J].Journal of sport and health science,2018,7(4):433-441.

[65] BERNARDO B C,MCMULLEN J R.Molecular aspects of exercise-induced cardiac remodeling[J].Cardiology clinics,2016,34(4):515-530.

[66] LA GERCHE A,MCMULLEN J R.Let's keep running...exercise,basic science and the knowledge gaps[J].British journal of sports medicine,2016,50(2):74-76.

[67] OOI J Y,BERNARDO B C,MCMULLEN J R.The therapeutic potential of miRNAs regulated in settings of physiological cardiac hypertrophy[J].Future medicinal chemistry,2014,6(2):205-222.