Results 261 to 270 of about 53,903 (284)
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Models of Thin-Filament Regulation
2018While the strength of contraction in our muscles is activated by the frequency of action potentials in its efferent nerves, this chapter is concerned with the way in which calcium ions released by the transverse-tubule system regulate contraction via the thin filament.
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Thin Filament Structure and the Steric Blocking Model
Comprehensive Physiology, 2016ABSTRACT By interacting with the troponin‐tropomyosin complex on myofibrillar thin filaments, Ca 2+ and myosin govern the regulatory switching processes influencing contractile activity of mammalian cardiac and skeletal muscles.
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The structure of the native cardiac thin filament at systolic Ca 2+ levels
Proceedings of the National Academy of Sciences of the United States of America, 2021Cristina M Risi +2 more
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Thin Filament Regulation in Development
2002The basic function of the heart is to eject blood. This function is supported throughout development by the sarcomere and the interaction of its thick and thin filaments. In the face of this constancy, the ability of the heart to work, modulate its output, and respond to pathophysiologic states undergoes marked changes with development.
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N-Terminal Domains of Cardiac Myosin Binding Protein C Cooperatively Activate the Thin Filament
Structure, 2018Cristina Risi +2 more
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A two-segment model for thin filament architecture in skeletal muscle
Nature Reviews Molecular Cell Biology, 2013David S Gokhin +2 more
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Atomic resolution probe for allostery in the regulatory thin filament
Proceedings of the National Academy of Sciences of the United States of America, 2016Michael R Williams +2 more
exaly
Intensity-ratio and color-ratio thin-filament pyrometry: Uncertainties and accuracy
Combustion and Flame, 2014Bin Ma +2 more
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