Category: Children

Optimized fat oxidizing potentials

Optimized fat oxidizing potentials

Anyone Optimmized share the following link Oxidizjng will be able to read this content:. PubMed Citation Scott A. Exercise fwt Sport Sciences Reviews, 32 4— However, the utility of PFO estimates for gaining insight into skeletal muscle characteristics, fuel utilisation responses during training and competition, and performance in long-duration events in which glycogen stores may become limiting are not well-established. Respiratory chain supercomplexes: structures, function and biogenesis.

Optimized fat oxidizing potentials -

Diabetes Metab. PubMed Abstract CrossRef Full Text Google Scholar. Brun, J. Sports 26, 57— Croci, I. Reproducibility of Fatmax and fat oxidation rates during exercise in recreationally trained males.

PLoS One 9:e Frayn, K. Calculation of substrate oxidation rates in vivo from gaseous exchange. Galgani, J. Metabolic flexibility and insulin resistance.

Goodpaster, B. Metabolic flexibility in health and disease. Cell Metab. Hultman, E. Skeletal muscle energy metabolism and fatigue during intense exercise in man.

PubMed Abstract Google Scholar. Jeukendrup, A. Measurement of substrate oxidation during exercise by means of gas exchange measurements. Sports Med. MacFarlane, D. Open-circuit respirometry: a historical review of portable gas analysis systems.

Maunder, E. Contextualising maximal fat oxidation during exercise: determinants and normative values. Sanchez-Delgado, G. Activating brown adipose tissue through exercise ACTIBATE in young adults: rationale, design and methodology.

Trials 45, — Shephard, R. Measurement of human energy expenditure, with particular reference to field studies: an historical perspective. Stisen, A. Maximal fat oxidation rates in endurance trained and untrained women. Citation: Amaro-Gahete FJ, Sanchez-Delgado G, Helge JW and Ruiz JR Optimizing Maximal Fat Oxidation Assessment by a Treadmill-Based Graded Exercise Protocol: When Should the Test End?

Received: 10 April ; Accepted: 02 July ; Published: 23 July Copyright © Amaro-Gahete, Sanchez-Delgado, Helge and Ruiz. This is an open-access article distributed under the terms of the Creative Commons Attribution License CC BY.

The use, distribution or reproduction in other forums is permitted, provided the original author s and the copyright owner s are credited and that the original publication in this journal is cited, in accordance with accepted academic practice.

No use, distribution or reproduction is permitted which does not comply with these terms. Amaro-Gahete, amarof ugr.

Disclaimer: All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers.

Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher. Top bar navigation. About us About us.

Who we are Mission Values History Leadership Awards Impact and progress Frontiers' impact Progress Report All progress reports Publishing model How we publish Open access Fee policy Peer review Research Topics Services Societies National consortia Institutional partnerships Collaborators More from Frontiers Frontiers Forum Press office Career opportunities Contact us.

Sections Sections. About journal About journal. Article types Author guidelines Editor guidelines Publishing fees Submission checklist Contact editorial office.

Optimizing Maximal Fat Oxidation Assessment by a Treadmill-Based Graded Exercise Protocol: When Should the Test End? Normal caffeine consumption: Influence on thermogenesis and daily energy expenditure in lean and postobese human volunteers.

The American Journal of Clinical Nutrition, 49, 44 — Duval , S. Journal of the American Statistical Association, 95, 89 — Gastin , P. Energy system interaction and relative contribution during maximal exercise.

Sports Medicine, 31 10 , — Glaister , M. Caffeine and physiological responses to submaximal exercise: A meta-analysis. International Journal of Sports Physiology and Performance, 13 4 , — Graham , T.

Caffine and exercise: Metabolism, endurance and performance. Sports Medicine, 31 11 , — Does caffeine alter muscle carbohydrate and fat metabolism during exercise? Applied Physiology, Nutrition and Metabolism, 33 6 , — Grgic , J.

Caffeine ingestion enhances Wingate performance: A meta-analysis. European Journal of Sport Science, 18 2 , — Wake up and smell the coffee: Caffeine supplementation and exercise performance-an umbrella review of 21 published meta-analyses. British Journal of Sports Medicine, 54 11 , — Guest , N.

International society of sports nutrition position stand: Caffeine and exercise performance. Journal of the International Society of Sports Nutrition, 18 1 , Article 1. Herrmann-Frank , A. Caffeine and excitation-contraction coupling in skeletal muscle: A stimulating story.

Journal of Muscle Research and Cell Motility, 20 2 , — Ivy , J. Influence of caffeine and carbohydrate feedings on endurance performance. Medicine and Science in Sports, 11 1 , 6 — Jeukendrup , A.

Fat burners: Nutrition supplements that increase fat metabolism. Obesity Reviews, 12 10 , — Fat metabolism during exercise: A review--part III: Effects of nutritional interventions. International Journal of Sports Medicine, 19 6 , — Dietary caffeine and polyphenol supplementation enhances overall metabolic rate and lipid oxidation at rest and after a bout of sprint interval exercise.

Journal of Strength and Conditioning Research, 30 7 , — Kalmar , J. Caffeine: A valuable tool to study central fatigue in humans. Exercise and Sport Sciences Reviews, 32 4 , — LeBlanc , J.

Enhanced metabolic response to caffeine in exercise-trained human subjects. Journal of Applied Physiology, 59 3 , — Lee , C. Effect of creatine plus caffeine supplements on time to exhaustion during an incremental maximum exercise.

European Journal of Sport Science, 12 4 , — Moher , D. Preferred reporting items for systematic review and meta-analysis protocols PRISMA-P statement. Systematic Reviews, 4, Article 1. Pickering , C. Are low doses of caffeine as ergogenic as higher doses?

A critical review highlighting the need for comparison with current best practice in caffeine research. Nutrition, 67—68, Article Romijn , J. Regulation of endogenous fat and carbohydrate metabolism in relation to exercise intensity and duration. American Journal of Physiology, 3 , E — E Schweiger , M.

Measurement of lipolysis. Methods in Enzymology, , — Spriet , L. Exercise and sport performance with low doses of caffeine. Sports Medicine, 44 Suppl. Caffeine ingestion and muscle metabolism during prolonged exercise in humans. American Journal of Physiology—Endocrinology and Metabolism, , E — E Tabrizi , R.

The effects of caffeine intake on weight loss: A systematic review and dos-response meta-analysis of randomized controlled trials. Critical Reviews in Food Science and Nutrition, 59 16 , — Warren , G. Effect of caffeine ingestion on muscular strength and endurance: A meta-analysis.

Wells , C. Physiological responses to a mile run under three fluid replacement treatments. Wiles , J. Effect of caffeinated coffee on running speed, respiratory factors, blood lactate and perceived exertion during m treadmill running.

British Journal of Sports Medicine, 26 2 , — Yeo , S. Caffeine increases exogenous carbohydrate oxidation during exercise. Journal of Applied Physiology, 99, — Zuntz , N. Ueber die Bedeutung der verschiedenen Nâhrstoffe als Erzeuger der Muskelkraft.

European Journal of Physiology, 83, — User Account Sign in to save searches and organize your favorite content. Not registered? Sign up My Content 0 Recently viewed 0 Save Entry.

Recently viewed 0 Save Search. Human Kinetics. Previous Article Next Article. Does Caffeine Increase Fat Metabolism? A Systematic Review and Meta-Analysis. in International Journal of Sport Nutrition and Exercise Metabolism.

Scott A. Conger Scott A. Conger Department of Kinesiology, Boise State University , Boise, ID, USA Search for other papers by Scott A. Conger in Current site Google Scholar PubMed Close. Lara M. Tuthill Lara M.

Tuthill Department of Kinesiology, Boise State University , Boise, ID, USA Search for other papers by Lara M. Tuthill in Current site Google Scholar PubMed Close. Mindy L. Millard-Stafford Mindy L. Millard-Stafford School of Biological Sciences, Georgia Institute of Technology , Atlanta, GA, USA Search for other papers by Mindy L.

Millard-Stafford in Current site Google Scholar PubMed Close. In Print: Volume Issue 2. Page Range: — Free access.

Get Citation Alerts. Download PDF. Abstract Full Text PDF Author Notes Supplementary Materials. Methods Systematic Literature Review For this study, the preferred reporting items for systematic reviews and meta-analyses guidelines were followed Moher et al.

Figure 1 —Selection of articles for meta-analysis of fat metabolism when consuming CAF. Fox, C. Abdominal visceral and subcutaneous adipose tissue compartments: association with metabolic risk factors in the Framingham Heart Study.

Circulation , 39— Gonzalez-Gil, A. The role of exercise in the interplay between myokines, hepatokines, osteokines, adipokines, and modulation of inflammation for energy substrate redistribution and fat mass loss: a review. Nutrients Hargreaves, M.

Skeletal muscle energy metabolism during exercise. Haufe, S. Determinants of exercise-induced fat oxidation in obese women and men. Holloszy, J. Regulation of carbohydrate and fat metabolism during and after exercise. Horowitz, J. Whole body and abdominal lipolytic sensitivity to epinephrine is suppressed in upper body obese women.

Isacco, L. Hackney Chapel Hill, NC: Springer Nature , 35— Fat mass localization alters fuel oxidation during exercise in normal weight women. Gender-specific considerations in physical activity, thermogenesis and fat oxidation: implications for obesity management.

Effects of adipose tissue distribution on maximum lipid oxidation rate during exercise in normal-weight women. Diabetes Metab. Jensen, M. Lipolysis: contribution from regional fat. Influence of body fat distribution on free fatty acid metabolism in obesity. Jeukendrup, A. Regulation of fat metabolism in skeletal muscle.

Jocken, J. Catecholamine-induced lipolysis in adipose tissue and skeletal muscle in obesity. Johnson, L. Substrate utilization during exercise in postmenopausal women on hormone replacement therapy.

Kanaley, J. Abdominal fat distribution in pre- and postmenopausal women: the impact of physical activity, age, and menopausal status. Metabolism 50, — Substrate oxidation during acute exercise and with exercise training in lean and obese women.

Kelley, D. Skeletal muscle fat oxidation: timing and flexibility are everything. Lange, K. Subcutaneous abdominal adipose tissue lipolysis during exercise determined by arteriovenous measurements in older women.

Lovejoy, J. Increased visceral fat and decreased energy expenditure during the menopausal transition. Maillard, F. Effect of high-intensity interval training on total, abdominal and visceral fat mass: a meta-analysis. Sport Med.

Manolopoulos, K. Gluteofemoral body fat as a determinant of metabolic health. Martin, M. Effects of body fat distribution on regional lipolysis in obesity.

Mauriège, P. Regional differences in adipose tissue metabolism between sedentary and endurance-trained women. Melanson, E. When energy balance is maintained, exercise does not induce negative fat balance in lean sedentary, obese sedentary, or lean endurance-trained individuals.

Exercise improves fat metabolism in muscle but does not increase h fat oxidation. Sport Sci. Nicklas, B. Visceral adiposity is associated with increased lipid oxidation in obese, postmenopausal women.

Visceral adiposity, increased adipocyte lipolysis, and metabolic dysfunction in obese postmenopausal women. Exercise blunts declines in lipolysis and fat oxidation after dietary-induced weight loss in obese older women.

Numao, S. Sex differences in substrate oxidation during aerobic exercise in obese men and postmenopausal obese women. Metabolism 58, — Effects of obesity phenotype on fat metabolism in obese men during endurance exercise. Ormsbee, M. Regulation of fat metabolism during resistance exercise in sedentary lean and obese men.

Petridou, A. Exercise in the management of obesity. Metabolism 92, — Power, M. Sex differences in fat storage, fat metabolism, and the health risks from obesity: possible evolutionary origins.

Ravussin, E. Metabolic predictors of obesity: cross-sectional versus longitudinal data. Reynisdottir, S. Effects of weight reduction on the regulation of lipolysis in adipocytes of women with upper-body obesity. Romijn, J. Regulation of endogenous fat and carbohydrate metabolism in relation to exercise intensity and duration.

Rynders, C. Sedentary behaviour is a key determinant of metabolic inflexibility. Santosa, S. Sex and sex steroids: impact on the kinetics of fatty acids underlying body shape. Schutz, Y. Role of fat oxidation in the long-term stabilization of body weight in obese women.

Sengenes, C. Natriuretic peptides: a new lipolytic pathway in human adipocytes. FASEB J. Smith, U. Abdominal obesity: a marker of ectopic fat accumulation. Stefan, N. Causes, consequences, and treatment of metabolically unhealthy fat distribution. Lancet Diabetes Endocrinol.

Stinkens, R. Targeting fatty acid metabolism to improve glucose metabolism. Swan, P. Substrate utilization during prolonged exercise in obese women differing in body fat distribution. Talanian, J. Exercise training increases sarcolemmal and mitochondrial fatty acid transport proteins in human skeletal muscle.

Thompson, D.

Whole-body fat oxidation during exercise can be Shortness of breath non-invasively Optimizec athlete profiling. Gaps in understanding exist in the relationships potenitals fat oxidation oxdiizing incremental fasted exercise and skeletal muscle parameters, endurance Lxidizing, and fat oxidation potentizls prolonged fed-state exercise. Optimizrd endurance-trained oxldizing underwent Android vs gynoid body fat distribution patterns i fasted, incremental cycling test to assess peak whole-body fat oxidation PFOii resting vastus lateralis microbiopsy, and iii min maximal-effort cycling time-trial preceded by 2-h of fed-state moderate-intensity cycling to assess endurance performance and fed-state metabolism on separate occasions within one week. PFO 0. Addition of PFO to a traditional model of endurance peak oxygen uptake, power at 4 mmol. These associations suggest non-invasive measures of whole-body fat oxidation during exercise may be useful in the physiological profiling of endurance athletes. Ed Maunder, Jeffrey A. Maximal fat oxidation during exercise MFO and the exercise Android vs gynoid body fat distribution patterns eliciting Oxixizing Fatmax are considered important Optjmized related to metabolic health and performance. Eye health formulas MFO Harmonizing dietary restrictions and performance benchmarks Fatmax data collection and analysis approaches Optiized been applied, which may have influenced their estimation during an Optimzied graded exercise protocol. Despite the heterogeneity of protocols used, all studies consistently stopped the MFO and Fatmax test when the respiratory exchange ratio RER was 1. It remains unknown however whether reaching a RER of 1. We aimed to investigate the RER at which MFO and Fatmax occurred in sedentary and trained healthy adults. A total of sedentary adults aged between 18 and 65 years participated in the study. MFO and Fatmax were calculated by an incremental graded exercise protocol before and after two exercise-based interventions. Optimized fat oxidizing potentials

Author: Gagis

0 thoughts on “Optimized fat oxidizing potentials

Leave a comment

Yours email will be published. Important fields a marked *

Design by ThemesDNA.com