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Transcriptional regulatory network underlying connective tissue
Transcriptional regulatory network underlying connective tissue

... Transcriptional regulatory network underlying connective tissue differentiation during limb development The musculoskeletal system is composed of muscles, skeletal elements and connective tissues such as tendon and muscle connective tissue. Functional locomotion via this system relies on a precise c ...
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... S. Trajanovska, D.K. Chong and D.G. Allen, Discipline of Physiology, School of Medical Sciences, The University of Sydney, NSW, 2006, Australia. Fatigue is characterized by a decline in muscle performance that is reversible after a period of rest. It has long been known that a depletion of muscle gl ...
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localization of products of atp hydrolysis in mammalian smooth
localization of products of atp hydrolysis in mammalian smooth

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localization of products of atp hydrolysis in
localization of products of atp hydrolysis in

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Endocrine System: Overview
Endocrine System: Overview

... a. energizing ATP energy is used to move the myosin head from a low energy position to a high energy, ready position.released with myosin and actin interact. b. detaching ATP energy is used to detach the myosin head from its binding site on the actin filament during muscle contraction. ...
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Myocyte



A myocyte (also known as a muscle cell) is the type of cell found in muscle tissue. Myocytes are long, tubular cells that develop from myoblasts to form muscles in a process known as myogenesis. There are various specialized forms of myocytes: cardiac, skeletal, and smooth muscle cells, with various properties. The striated cells of cardiac and skeletal muscles are referred to as muscle fibers. Cardiomyocytes are the muscle fibres that form the chambers of the heart, and have a single central nucleus. Skeletal muscle fibers help support and move the body and tend to have peripheral nuclei. Smooth muscle cells control involuntary movements such as the peristalsis contractions in the stomach.
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