نتایج جستجو برای: muscle skeletal energy cost

تعداد نتایج: 1367759  

Journal: :The American journal of physiology 1985
S L Lindstedt H Hoppeler K M Bard H A Thronson

All skeletal muscle can produce roughly the same maximal cross-sectional force; however, the power (energy X time-1) required to develop and maintain that force increases with increasing contraction velocity. Thus the rate of muscle tension development may be of primary importance in setting the energy demand of contracting muscle. We have estimated the rate of muscle shortening during terrestr...

Journal: :Japanese Journal of Physical Fitness and Sports Medicine 2012

Journal: :Proceedings of the National Academy of Sciences 2019

Journal: :American journal of physiology. Endocrinology and metabolism 2012
M H Vendelbo B F F Clasen J T Treebak L Møller T Krusenstjerna-Hafstrøm M Madsen T S Nielsen H Stødkilde-Jørgensen S B Pedersen J O L Jørgensen L J Goodyear J F P Wojtaszewski N Møller N Jessen

During fasting, human skeletal muscle depends on lipid oxidation for its energy substrate metabolism. This is associated with the development of insulin resistance and a subsequent reduction of insulin-stimulated glucose uptake. The underlying mechanisms controlling insulin action on skeletal muscle under these conditions are unresolved. In a randomized design, we investigated eight healthy sub...

Journal: :American journal of physiology. Endocrinology and metabolism 2013
Cyril Nii-Klu Adjeitey Ryan J Mailloux Robert A Dekemp Mary-Ellen Harper

Enhancement of proton leaks in muscle tissue represents a potential target for obesity treatment. In this study, we examined the bioenergetic and physiological implications of increased proton leak in skeletal muscle. To induce muscle-specific increases in proton leak, we used mice that selectively express uncoupling protein-1 (UCP1) in skeletal muscle tissue. UCP1 expression in muscle mitochon...

Journal: :Physiological genomics 2005
Susanne Klaus Bettina Rudolph Cord Dohrmann Roland Wehr

Skeletal muscle uncoupling by ectopic expression of mitochondrial uncoupling protein 1 (UCP1) has been shown to result in a lean phenotype in mice characterized by increased energy expenditure (EE), resistance to diet-induced obesity, and improved glucose tolerance. Here, we investigated in detail the effect of ectopic UCP1 expression in skeletal muscle on thermoregulation and energy homeostasi...

2014
René Koopman C. Hai Ly James G. Ryall

Due to its essential role in movement, insulating the internal organs, generating heat to maintain core body temperature, and acting as a major energy storage depot, any impairment to skeletal muscle structure and function may lead to an increase in both morbidity and mortality. In the context of skeletal muscle, altered metabolism is directly associated with numerous pathologies and disorders,...

Journal: :American journal of physiology. Endocrinology and metabolism 2014
Bonggi Lee Liping Qiao Min Lu Hyung Sun Yoo Wai Cheung Robert Mak Jerome Schaack Gen-Sheng Feng Nai-Wen Chi Jerrold M Olefsky Jianhua Shao

Macrophage infiltration plays an important role in obesity-induced insulin resistance. CCAAT enhancer-binding protein-α (C/EBPα) is a transcription factor that is highly expressed in macrophages. To examine the roles of C/EBPα in regulating macrophage functions and energy homeostasis, macrophage-specific C/EBPα knockout (MαKO) mice were created. Chow-fed MαKO mice exhibited higher body fat mass...

Journal: :American journal of physiology. Heart and circulatory physiology 2012
Naoki Inoue Shintaro Kinugawa Tadashi Suga Takashi Yokota Kagami Hirabayashi Satoshi Kuroda Koichi Okita Hiroyuki Tsutsui

Angiotensin II (ANG II)-induced oxidative stress has been known to be involved in the pathogenesis of cardiovascular diseases. We have reported that the oxidative stress in skeletal muscle can limit exercise capacity in mice (16). We thus hypothesized that ANG II could impair the skeletal muscle energy metabolism and limit exercise capacity via enhancing oxidative stress. ANG II (50 ng·kg(-1)·m...

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