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2023, 06, v.44 1-12
体重管理中的能量补偿:机制和意义
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发布时间: 2023-11-15
出版时间: 2023-11-15
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摘要:

能量摄入和消耗之间不平衡是体重过度增加的主要原因。通过增加身体活动和/或限制饮食摄入来实现能量负平衡是诱导减肥的常用方法。但这些干预行为对体重减轻的幅度小于预期。减肥失败的原因很大程度上是因为身体会通过一套协调补偿机制,来抵抗增加身体活动和限制饮食摄入导致的能量不足。本文对这些特定的代偿现象、潜在驱动机制及其对减肥的实际影响进行综述。确定了几种能量补偿的来源,包括静息代谢率的降低、非运动活动产热的减少以及饮食动力的增加。目前支持能量补偿的实证仍然有限,需要更多的研究来阐明各种能量补偿来源对减肥结果的影响作用。由于运动的潜在补偿性和个体差异,通用的“一刀切”减肥运动处方并不广泛适用。根据目前研究现状,运动处方与体重控制建议应具有个性化,同时应将生理、行为和环境等限制因素对能量平衡调节的贡献考虑在内。

Abstract:

An imbalance between energy intake and expenditure is the primary etiology for excess weight gain. Achieving a negative energy balance by increasing physical activity and/or by restricting dietary intake is a commonly used approach to induce weight loss. These behavioral interventions, however, have resulted in a smaller than expected weight loss. The lack of success often seen in weight loss has been largely attributed to a coordinated set of compensatory mechanisms the body uses to resist an energy deficit induced by exercise or dietary restriction. This review provides a contemporary overview of these specific compensatory phenomena, the underlying mechanisms that drive them, and their practical implications for weight loss. Several sources of energy compensation have been identified including a reduction in resting metabolic rate, a reduction in non-exercise activity thermogenesis, and an increase in eating drive. However, supporting evidence for energy compensation still remains limited, and more research is needed to clarify the role various sources of energy compensation play in affecting weight loss outcomes. Given the wide range of potential compensatory responses to exercise and the interindividual variability, generic and one-size-fits-all exercise prescriptions for weight loss may not be appropriate.Based on the current literature, it appears that exercise prescription and weight control advice should not only be tailored to suit the individual and but also be holistic that consider the contribution of physiological, behavioral, and environmental constrains to energy balance regulation.

参考文献

[1] World Health Organization. Obesity and overweight[EB/OL].[2023-01-24].https://www.who.int/news-room/fact-sheets/detail/obesity-and-overweight.

[2] HEYMSFIELD S B, PETERSON C M, THOMAS D M,et al. Establishing energy requirements for body weight maintenance:Validation of an intake-balance method[J].BMC Research Notes, 2017, 10(1):220.

[3] TREMMEL M, GERDTHAM UG, NILSSON PM, et al.Economic burden of obesity:A systematic literature re view[J]. International Journal of Environmental Research,2017, 14(4):435.

[4] WANG Y C, MCPHERSON K, MARSH T, et al.Health and economic burden of the projected obesity trends in the USA and the UK[J]. Lancet, 2011, 378(9793):815-825.

[5] ZYLKE J W, BAUCHNER H. The unrelenting challenge of obesity[J]. JAMA, 2016, 315(21):2277-2278.

[6] FLEGAL K M, KRUSZON-MORAN D, CARROLL M D,et al. Trends in obesity among adults in the United States, 2005 to 2014[J]. JAMA, 2016, 315(21):2284-2291.

[7] WRIGHT S M, ARONNE L J. Causes of obesity[J].Abdominal Imaging, 2012, 37(5):730-732.

[8] MAYER J. Correlation between metabolism and feeding behavior and multiple etiology obesity[J]. Bulletin of the New York Academy of Medicine, 1957, 33(11):744-761.

[9] DONAHOO W T, LEVINE J A, MELANSON E L.Variability in energy expenditure and its components[J].Current Opinion in Clinical Nutrition and Metabolic Care, 2004, 7:599-605.

[10] VERMOREL M, LAZZER S, BITAR A, et al. Contributing factors and variability of energy expenditure in nonobese, obese, and post-obese adolescents[J]. Reproduction Nutrition Development, 2005, 45:129-142.

[11] WESTERTERP K R. Alterations in energy balance with exercise[J]. The American Journal of Clinical Nutrition,1998, 68(4):970S-974S.

[12] CASPERSEN C J, POWELL K E, CHRISTENSON G M. Physical activity, exercise, and physical fitness:Definitions and distinctions for health-related research[J].Public Health Reports, 1985, 100:126-131.

[13] LEVINE J A, EBERHARDT N L, JENSEN M D. Role of nonexercise activity thermogenesis in resistance to fat gain in humans[J]. Science, 1999, 283:212-214.

[14] MILLEN B E, WOLONGEVICZ D M, NONAS C A,et al. 2013 American Heart Association/American College of Cardiology/the Obesity Society guideline for the management of overweight and obesity in adults:Implications and new opportunities for registered dietitian nutritionists[J]. Journal of the Academy of Nutrition and Dietetics, 2014, 114(11):1730-1735.

[15] SWINBURN B A, CATERSON I, SEIDELL J C, et al.Diet, nutrition and the prevention of excess weight gain and obesity[J]. Public Health Nutrition, 2004, 7(1a):123-146.

[16] KOLIAKI C, SPINOS T, SPINOU M, et al. Defining the optimal dietary approach for safe, effective and sustainable weight loss in overweight and obese adults[J].Healthcare, 2018, 6(3):73.

[17] THYFAULT J P, KROGH-MADSEN R. Metabolic disruptions induced by reduced ambulatory activity in freeliving humans[J]. Journal of Applied Physiology, 2011,111(4):1218-1224.

[18] BERGOUIGNAN A, TRUDEL G, SIMON C, et al. Physical inactivity differentially alters dietary oleate and palmitate trafficking[J]. Diabetes, 2009, 58(2):367-376.

[19] DUBéJ J, AMATI F, STEFANOVIC-RACIC M, et al.Exercise-induced alterations in intramyocellular lipids and insulin resistance:The athlete’s paradox revisited[J]. American Journal of Physiology. Endocrinology and Metabolism, 2008, 294(5):E882-E888.

[20] HULTON A T, LAHART I, WILLIAMS K L, et al. Energy expenditure in the Race Across America(RAAM)[J]. International Journal of Sports Medicine, 2010, 31(7):463-467.

[21] WESTERTERP K R. Control of energy expenditure in humans[J]. European Journal of Clinical Nutrition, 2017,71(3):340-344.

[22] THOMAS D M, KYLE T K, STANFORD F C. The gap between expectations and reality of exercise-induced weight loss is associated with discouragement[J]. Preventive Medicine, 2015, 81:357-360.

[23] CHURCH T S, EARNEST C P, THOMPSON A M, et al.Exercise without weight loss does not reduce C-reactive protein:The INFLAME study[J]. Medicine&Science in Sports&Exercise, 2010, 42(4):708-716.

[24] KRAUS W E, HOUMARD J A, DUSCHA B D, et al.Effects of the amount and intensity of exercise on plasma lipoproteins[J]. The New England Journal of Medicine, 2002, 347(19):1483-1492.

[25] ROSENKILDE M, AUERBACH P, REICHKENDLER M H, et al. Body fat loss and compensatory mechanisms in response to different doses of aerobic exercise-a randomized controlled trial in overweight sedentary males[J]. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology, 2012, 303(6):R571-R579.

[26] PURCELL K, SUMITHRAN P, PRENDERGAST L A,et al. The effect of rate of weight loss on long-term weight management:A randomised controlled trial[J]. Lancet Diabetes&Endocrinology, 2014, 2(12):954-962.

[27] KRASCHNEWSKI J L, BOAN J, ESPOSITO J, et al.Long-term weight loss maintenance in the United States[J].International Journal of Obesity, 2010, 34(11):1644-1654.

[28] PONTZER H. The crown joules:Energetics, ecology,and evolution in humans and other primates[J]. Evolutionary Anthropology, 2017, 26:12-24.

[29] PONTZER H. Burn:New research blows the lid off how we really burn calories, lose weight, and stay healthy[M].New York:Penguin, 2021.

[30] SIBLY R M, CALOW P. Physiological ecology of animals[M]. Oxford:Blackwell, 1986.

[31] GLAZIER D S. Resource allocation patterns[M]//Rauw W. Resource allocation theory applied to farm animal production. Wallingford:CABI, 2009:22-43.

[32] ROSENBAUM M, LEIBEL R L. Adaptive thermogenesis in humans[J]. International Journal of Obesity(Lond),2010, 34(Suppl 1):S47-S55.

[33] THOMAS D M, BOUCHARD C, CHURCH T, et al.Why do individuals not lose more weight from an exercise intervention at a defined dose? An energy balance analysis[J]. Obesity Reviews, 2012, 13(10):835-847.

[34] STUBBS R J, HUGHES D A, JOHNSTONE A M, et al.Rate and extent of compensatory changes in energy intake and expenditure in response to altered exercise and diet composition in humans[J]. American Journal of Physiology. Regulatory, Integrative and Compara tive Physiology, 2004, 286(2):R350-R358.

[35] KING N A, CAUDWELL P, HOPKINS M, et al. Metabolic and behavioral compensatory responses to exercise inter ventions:Barriers to weight loss[J]. Obesity(Silver Spring), 2007, 15(6):1373-1383.

[36] ELIA M, STRATTON R, STUBBS J. Techniques for the study of energy balance in man[J]. Proceedings of the Nutrition Society, 2003, 62(2):529-537.

[37] FORBES G B. Do obese individuals gain weight more easily than nonobese individuals?[J]. American Journal of Clinical Nutrition, 1990, 52(2):224-227.

[38] BAHR R, INGNES I, VAAGE O, et al. Effect of duration of exercise on excess postexercise O2consumption[J]. Journal of Applied Physiology, 1987, 62(2):485-490.

[39] MCMURRAY R G, SOARES J, CASPERSEN C J, et al.Examining variations of resting metabolic rate of adults:A public health perspective[J]. Medicine&Science In Sports&Exercise, 2014, 46(7):1352-1358.

[40] JOHNSTONE A M, MURISON S D, DUNCAN J S, et al.Factors influencing variation in basal metabolic rate include fat-free mass, fat mass, age, and circulating thyroxine but not sex, circulating leptin, or triiodothyronine[J]. American Journal of Clinical Nutrition, 2005, 82(5):941-948.

[41] WIERSMA P, SALOMONS H M, VERHULST S. Metabolic adjustments to increasing foraging costs of starlings in a closed economy[J]. Journal of Experimental Biology, 2005, 208:4099-4108.

[42] PONTZER H. Energy constraint as a novel mecha nism linking exercise and health[J]. Physiology, 2018, 33:384-393.

[43] MELIN A, TORNBERG魡B, SKOUBY S, et al. Energy availability and the female athlete triad in elite endurance athletes[J]. Scandinavian Journal Of Medicine&Science In Sports, 2015, 25:610-622.

[44] ROSENBAUM M, HIRSCH J, MURPHY E, et al. Effects of changes in body weight on carbohydrate metabolism, catecholamine excretion, and thyroid function[J].American Journal of Clinical Nutrition, 2000, 71(6):1421-1432.

[45] SILVA A M, SANTOS D A, MATIAS C N, et al. Changes in regional body composition explain increases in energy expenditure in elite junior basketball players over the season[J]. European Journal of Applied Physiology,2012, 112:2727-2737.

[46] COLLEY R C, HILLS A P, KING N A, et al. Exercise-induced energy expenditure:Implications for exercise prescription and obesity[J]. Patient Education and Counseling, 2010, 79:327-332.

[47] WILLIS E A, HERRMANN S D, HONAS J J, et al.Nonexercise energy expenditure and physical activity in the Midwest exercise trial 2[J]. Medicine&Science in Sports&Exercise, 2014, 46:2286-2294.

[48] HERRMANN S D, WILLIS E A, HONAS J J, et al.Energy intake, nonexercise physical activity, and weight loss in responders and nonresponders:The Midwest exercise trial 2[J]. Obesity, 2015, 23:1539-1549.

[49] RIOU Mè, JOMPHE-TREMBLAY S, LAMOTHE G,et al. Energy compensation following a supervised exercise intervention in women living with overweight?obesity is accompanied by an early and sustained decrease in nonstructured physical activity[J]. Frontiers in Physiology, 2019, 10:1048.

[50] FLACK K D, HAYS H M, MORELAND J, et al. Exercise for weight loss:Further evaluating energy compensation with exercise[J]. Medicine&Science In Sports&Exercise, 2020, 52:2466-2475.

[51] HAND G A, SHOOK R P, O’CONNOR D P, et al.The effect of exercise training on total daily energy expenditure and body composition in weight-stable adults:A randomized, controlled trial[J]. Journal of Physical Activity&Health, 2020, 17:456-463.

[52] MORIO B, MONTAURIER C, PICKERING G, et al.Effects of 14 weeks of progressive endurance training on energy expenditure in elderly people[J]. British Journal of Nutrition, 1998, 80:511-519.

[53] WITHERS R, SMITH D, TUCKER R, et al. Energy metabolism in sedentary and active 49-to 70-yr-old women[J]. Journal of Applied Physiology, 1998, 84:1333-1340.

[54] HUNTER G R, WETZSTEIN C J, FIELDS D A, et al.Resistance training increases total energy expenditure and free-living physical activity in older adults[J]. Journal of Applied Physiology, 2000, 89:977-984.

[55] MALLAM K M, METCALF B S, KIRKBY J, et al.Contribution of timetabled physical education to total physical activity in primary school children:Cross sectional study[J]. BMJ, 2003, 327:592-593.

[56] MEIJER E P, WESTERTERP K R, VERSTAPPEN F T.Effect of exercise training on total daily physical activity in elderly humans[J]. European Journal of Applied Physiology and Occupational Physiology, 1999, 80:16-21.

[57] ROSENBAUM M, VANDENBORNE K, GOLDSMITH R,et al. Effects of experimental weight perturbation on skeletal muscle work efficiency in human subjects[J].American Journal of Physiology. Regulatory, Integrative and Comparative Physiology, 2003, 285(1):R183-R192.

[58] GOLDSMITH R, JOANISSE D R, GALLAGHER D, et al.Effects of experimental weight perturbation on skeletal muscle work efficiency, fuel utilization, and biochemistry in human subjects[J]. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology, 2010, 298(1):R79-R88.

[59] CAMPS S G, VERHOEF S P, ROUMANS N, et al.Weight loss-induced changes in adipose tissue pro teins associated with fatty acid and glucose metabolism correlate with adaptations in energy expenditure[J]. Nutrition&Metabolism(Lond), 2015, 12:37.

[60] RANGAN V V, WILLIS L H, SLENTZ C A, et al. Effects of an 8-month exercise training program on off-exercise physical activity[J]. Medicine&Science In Sports&Exercise, 2011, 43:1744-1751.

[61] WILLIS E A, CREASY S A, HONAS J J, et al. The effects of exercise session timing on weight loss and components of energy balance:Midwest exercise trial 2[J]. International Journal of Obesity, 2020, 44:114-124.

[62] WESTERTERP K R, MEIJER G A, JANSSEN E M, et al.Long-term effect of physical activity on energy balance and body composition[J]. British Journal of Nutrition,1992, 68:21-30.

[63] HOLLOWELL R P, WILLIS L H, SLENTZ C A, et al.Effects of exercise training amount on physical activity energy expenditure[J]. Medicine&Science in Sports&Exercise, 2009, 41:1640-1645.

[64] FEDEWA M V, HATHAWAY E D, WILLIAMS T D,et al. Effect of exercise training on non-exercise physical activity:A systematic review and meta-analysis of randomized controlled trials[J]. Sports Medicine, 2017,47:1171-1182.

[65] MELANSON E L, KEADLE S K, DONNELLY J E, et al.Resistance to exercise-induced weight loss:Compensatory behavioral adaptations[J]. Medicine&Science in Sports&Exercise, 2013, 45:1600-1609.

[66] WASHBURN R, LAMBOURNE K, SZABO A, et al.Does increased prescribed exercise alter non-exercise physical activity/energy expenditure in healthy adults? A systematic review[J]. Clinical Obesity, 2014, 4:1-20.

[67] GORAN M I, POEHLMAN E T. Endurance training does not enhance total energy expenditure in healthy elderly persons[J]. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology, 1992,263(5 Pt 1):E950-E957.

[68] SUMITHRAN P, PROIETTO J. The defence of body weight:a physiological basis for weight regain after weight loss[J]. Clinical Science(Lond), 2013, 124(4):231-241.

[69] LARSON D E, FERRARO R T, ROBERTSON D S, et al.Energy metabolism in weight-stable postobese individuals[J]. American Journal of Clinical Nutrition, 1995, 62(4):735-739.

[70] JOHANNSEN D L, KNUTH N D, HUIZENGA R, et al.Metabolic slowing with massive weight loss despite preservation of fat-free mass[J]. The Journal of Clinical Endocrinology&Metabolism, 2012, 97(7):2489-2496.

[71] NYMO S, COUTINHO S R, TORGERSEN L H, et al.Timeline of changes in adaptive physiological responses,at the level of energy expenditure, with progressive weight loss[J]. British Journal of Nutrition, 2018, 120(2):141-149.

[72] KREITZMAN S N, COXON A Y, JOHNSON P G, et al.Dependence of weight loss during very-low-calorie diets on total energy expenditure rather than on resting metabolic rate, which is associated with fat-free mass[J].American Journal of Clinical Nutrition, 1992, 56(Suppl 1):258S-261S.

[73] OLSSON E, SALTIN B. Variation in total body water with muscle glycogen changes in man[J]. Acta Physiologica Scandinavica, 1970, 80(1):11-18.

[74] SUMITHRAN P, PRENDERGAST L A, DELBRIDGE E,et al. Long-term persistence of hormonal adaptations to weight loss[J]. The New England Journal of Medicine,2011, 365:1597-1604.

[75] IEPSEN E W, LUNDGREN J, HOLST J J, et al. Successful weight loss maintenance includes long-term increased meal responses of GLP-1 and PYY3-36[J]. European Journal of Endocrinology, 2016, 174(6):775-784.

[76] NYMO S, COUTINHO S R, EKNES P H, et al. Investigation of the long-term sustainability of changes in appetite after weight loss[J]. International Journal of Obesity, 2018, 42(8):1489-1499.

[77] COUTINHO S R, REHFELD J F, HOLST J J, et al.Impact of weight loss achieved through a multidisciplinary intervention on appetite in patients with severe obesity[J]. American Journal of Physiology. Endocrinology and Metabolism, 2018, 315(1):e91-e98.

[78] MEYER-GERSPACH A C, WOLNERHANSSEN B,BEGLINGER B, et al. Gastric and intestinal satiation in obese and normal weight healthy people[J]. Physiology&Behavior, 2014, 129:265-271.

[79] KING N A, HORNER K, HILLS A P, et al. Exercise,appetite and weight management:Understanding the compensatory responses in eating behaviour and how they contribute to variability in exercise-induced weight loss[J]. British Journal of Sports Medicine, 2012, 46(5):315-322.

[80] LLUCH A, KING N A, BLUNDELL J E. No energy compensation at the meal following exercise in dietary restrained and unrestrained women[J]. British Journal of Nutrition, 2000, 84(2):219-225.

[81] MARTINS C, MORGAN L M, BLOOM S R, et al. Effects of exercise on gut peptides, energy intake and appetite[J]. European Journal of Endocrinology, 2007, 193(2):251-258.

[82] DONNELLY J E, HILL J O, JACOBSEN D J, et al.Effects of a 16-month randomized controlled exercise trial on body weight and composition in young, overweight men and women:the Midwest Exercise Trial[J].Archives of Internal Medicine, 2003, 163(11):1343-1350.

[83] DONNELLY J E, WASHBURN R A, SMITH B K, et al.A randomized, controlled, supervised, exercise trial in young overweight men and women:the Midwest Exercise Trial II(MET2)[J]. Contemporary Clinical Trials,2012, 33(4):804-810.

[84] MARTINS C, KULSENG B, KING N A, et al. The effects of exercise-induced weight loss on appetite-related peptides and motivation to eat[J]. The Journal of Clinical Endocrinology&Metabolism, 2010, 95(4):1609-1616.

[85] SILVA A M, JUDICE P B, CARRACA E V, et al.What is the effect of diet and/or exercise interventions on behavioural compensation in non-exercise physical activity and related energy expenditure of free-living adults? A systematic review[J]. British Journal of Nutrition, 2018, 119(12):1327-1345.

[86] ALAHMADI M A, HILLS A P, KING N A, et al. Exercise intensity influences nonexercise activity thermogenesis in overweight and obese adults[J]. Medicine&Science in Sports&Exercise, 2011, 43:624-631.

[87] CADIEUX S, MCNEIL J, LAPIERRE M P, et al. Resistance and aerobic exercises do not affect post-exercise energy compensation in normal weight men and women[J]. Physiology&Behavior, 2014, 130:113-119.

[88] SIM A Y, WALLMAN K E, FAIRCHILD T J, et al.High-intensity intermittent exercise attenuates ad-libitum energy intake[J]. International Journal of Obesity(Lond),2014, 38:417-422.

[89] SCHUTZ Y, NGUYEN D M, BYRNE N M, et al. Effectiveness of three different walking prescription durations on total physical activity in normal-and overweight women[J]. Obesity Facts, 2014, 7:264-273.

[90] MEIJER E P, WESTERTERP K R, VERSTAPPEN F T.Effect of exercise training on physical activity and substrate utilization in the elderly[J]. International Journal of Sports Medicine, 2000, 21(7):499-504.

[91] WESTERTERP K R. Pattern and intensity of physical activity[J]. Nature, 2001, 410:539.

[92] TURNER J E, MARKOVITCH D, BETTS J A, et al.Nonprescribed physical activity energy expenditure is maintained with structured exercise and implicates a compensatory increase in energy intake[J]. American Journal of Clinical Nutrition, 2010, 92:1009-1016.

[93] DONNELLY J E, SMITH B K. Is exercise effective for weight loss with ad libitum diet? Energy balance, compensation, and gender differences[J]. Exercise and Sport Sciences Reviews, 2005, 33:169-174.

[94] DONNELLY J E, BLAIR S N, JAKICIC J M, et al.Appropriate physical activity intervention strategies for weight loss and prevention of weight regain for adults[J]. Medicine&Science in Sports&Exercise, 2009, 41(2):459-471.

[95] WESTON M, TAYLOR KL, BATTERHAM A M, et al.Effects of low-volume high-intensity interval training(HIT)on fitness in adults:A meta-analysis of controlled and non-controlled trials[J]. Sports Med, 2014, 44(7):1005-1017.

[96] MCNEIL J, BRENNER D R, COURNEYA K S, et al.Dose-response effects of aerobic exercise on energy compensation in postmenopausal women:Combined results from two randomized controlled trials[J]. Interna tional Journal of Obesity(Lond), 2017, 41(8):1196-2202.

[97] SCHUBERT M M, CLARKE H E, SEAY R F, et al.Impact of 4 weeks of interval training on resting metabolic rate, fitness, and health-related outcomes[J].Applied Physiology Nutrition and Metabolism, 2017, 42(10):1073-1081.

[98] BOUTCHER S H. High-intensity intermittent exercise and fat loss[J]. Journal of Obesity, 2011, 2011:868305.

[99] RIVEST S, RICHARD D. Involvement of corticotropinreleasing factor in the anorexia induced by exercise[J].Brain Research Bulletin, 1990, 25(1):169-172.

[100]ALKAHTANI S A, BYRNE N M, HILLS A P, et al.Interval training intensity affects energy intake compensation in obese men[J]. International Journal of Sport Nutrition and Exercise Metabolism, 2014, 24(6):595-604.

[101]KELLY B, KING J A, GOERLACH J, et al. The impact of high-intensity intermittent exercise on resting metabolic rate in healthy males[J]. European Journal of Applied Physiology, 2013, 113(12):3039-3047.

[102]KIENS B, RICHTER E A. Utilization of skeletal muscle triacylglycerol during postexercise recovery in humans[J]. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology, 1998, 275(2):E332-E337.

[103]TRESIERRAS M A, BALADY G J. Resistance training in the treatment of diabetes and obesity:Mechanisms and outcomes[J]. Journal of Cardiopulmonary Rehabilitation Prevention, 2009, 29(2):67-75.

[104]PHILLIPS S M, WINETT R A. Uncomplicated resistance training and health-related outcomes:Evidence for a public health mandate[J]. Current Sports Medicine Reports, 2010, 9(4):208-213.

[105]DOLEZAL B A, POTTEIGER J A. Concurrent resistance and endurance training influence basal metabolic rate in nondieting individuals[J]. Journal of Applied Physiology, 1998, 85(2):695-700.

[106]DRENOWATZ C, GRIEVE G L, DEMELLO M M.Change in energy expenditure and physical activity in response to aerobic and resistance exercise programs[J].Springerplus, 2015, 4(1):798.

[107]VILLAREAL D T, AGUIRRE L, GURNEY A B, et al.Aerobic or resistance exercise, or both, in dieting obese older adults[J]. The New England Journal of Medicine,2017, 376(20):1943-1955.

[108]ANTONIO J, ELLERBROEK A, SILVER T, et al. A high protein diet(3.4 g/kg/d)combined with a heavy resistance training program improves body composition in healthy trained men and women-a follow-up investigation[J]. Journal of the International Society of Sports Nutrition, 2015, 12:39.

[109]VALENZUELA P L, MATA F, MORALES J S, et al.Does beef protein supplementation improve body composition and exercise performance? A systematic review and meta-analysis of randomized controlled trials[J].Nutrients, 2019, 11(6):1429.

[110]KING N A, HOPKINS M, CAUDWELL P, et al. Individual variability following 12 weeks of supervised exercise:Identification and characterization of compensation for exercise-induced weight loss[J]. International Journal of Obesity, 2008, 32(1):177-184.

[111]SCHUBERT M M, DESBROW B, SABAPATHY S, et al.Acute exercise and subsequent energy intake. A metaanalysis[J]. Appetite, 2013, 63:92-104.

[112]BLUNDELL J E, GIBBONS C, CAUDWELL P, et al.Appetite control and energy balance:Impact of exercise[J]. Obesity Reviews, 2015, 16(Suppl 1):67-76.

[113]BLUNDELL J E, KING N A. Effects of exercise on appetite control:Loose coupling between energy expenditure and energy intake[J]. International Journal of Obesity and Related Metabolic Disorders, 1998, 22(Suppl 2):S22-S29.

[114]STENSEL D. Exercise, appetite and appetite-regulating hormones:Implications for food intake and weight control[J]. Annals of Nutrition and Metabolism, 2010, 57(Suppl 2):36-42.

[115]HOPKINS M, JEUKENDRUP A, KING N A, et al.The relationship between substrate metabolism, exercise and appetite control:Does glycogen availability influence the motivation to eat, energy intake or food choice?[J]. Sports Medicine, 2011, 41(6):507-521.

[116]FLACK K D, UFHOLZ K, JOHNSON L, et al. Energy compensation in response to aerobic exercise training in overweight adults[J]. American Journal of Physiology.Regulatory, Integrative and Comparative Physiology,2018, 315(4):R619-R626.

[117]MARTIN C K, JOHNSON W D, MYERS C A, et al.Effect of different doses of supervised exercise on food intake, metabolism, and nonexercised physical activity:The E-MECHANIC randomized controlled trial[J]. American Journal of Clinical Nutrition, 2019, 110(3):583-592.

[118]HALSEY L G, GREEN J A, TWISS S D, et al. Flexibility, variability and constraint in energy management Invited Perspective 389 patterns across vertebrate taxa revealed by long-term heart rate measurements[J]. Functional Ecology, 2019, 33:260-272.

[119]PONTZER H. Constrained total energy expendi ture and the evolutionary biology of energy balance[J]. Exercise and Sport Sciences Reviews, 2015, 43:110-116.

[120]THURBER C, DUGAS L R, OCOBOCK C, et al. Extreme events reveal an alimentary limit on sustained maximal human energy expenditure[J]. Science Advances,2019, 5:eaaw0341.

[121]MELANSON E. The effect of exercise on non-exercise physical activity and sedentary behavior in adults[J].Obesity Reviews, 2017, 18:40-49.

[122]RIOU Mè, JOMPHE-TREMBLAY S, LAMOTHE G,et al. Predictors of energy compensation during exercise interventions:A systematic review[J]. Nutrients, 2015, 7:3677-3704.

[123]WILLIS E A, CREASY S A, SAINT-MAURICE P F, et al.Physical activity and total daily energy expenditure in older US adults:Constrained versus additive models[J].Medicine&Science in Sports&Exercise, 2022, 54(1):98-105.

[124]CAREAU V, GARLAND T JR. Performance, personality, and energetics:Correlation, causation, and mechanism[J]. Physiological and Biochemical Zoology, 2012,85:543-571.

[125]KING J A, DEIGHTON K, BROOM D R, et al. Individual variation in hunger, energy intake and ghrelin responses to acute exercise[J]. Medicine&Science In Sports&Exercise, 2017, 49:1219-1228.

[126]CRUJEIRAS A B, GOYENECHEA E, ABETE I, et al.Weight regain after a diet-induced loss is predicted by higher baseline leptin and lower ghrelin plasma levels[J]. The Journal of Clinical Endocrinology&Metabolism, 2010, 95(11):5037-5044.

[127]NYMO S, COUTINHO S R, REHFELD J F, et al.Physiological predictors of weight regain at 1-year follow-up in weight-reduced adults with obesity[J]. Obesity,2019, 27:925-931.

基本信息:

中图分类号:G804

引用信息:

[1]康杰,刘畅.体重管理中的能量补偿:机制和意义[J].体育科研,2023,44(06):1-12.

发布时间:

2023-11-15

出版时间:

2023-11-15

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