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Regulatory Mechanisms of Striated Muscle Contraction

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Table of Contents

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    Book Overview
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    Chapter 1 Biological Actions of Calcium
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    Chapter 2 Professor Ebashi’s Journey Toward the Discovery of Troponin: A Personal Recollection
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    Chapter 3 Highlights of the History of Calcium Regulation of Striated Muscle
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    Chapter 4 Troponin: Structure, Function and Dysfunction
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    Chapter 5 From the Crystal Structure of Troponin to the Mechanism of Calcium Regulation of Muscle Contraction
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    Chapter 6 Ca Ion and the Troponin Switch
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    Chapter 7 Disposition and Dynamics: Interdomain Orientations in Troponin
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    Chapter 8 Structural Basis for Calcium-Regulated Relaxation of Striated Muscles at Interaction Sites of Troponin with Actin and Tropomyosin
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    Chapter 9 Tropomyosin: Regulator of Actin Filaments
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    Chapter 10 Tropomyosin and Troponin Cooperativity on the Thin Filament
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    Chapter 11 Conformational Changes in Reconstituted Skeletal Muscle Thin Filaments Observed by Fluorescence Spectroscopy
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    Chapter 12 Calcium Structural Transition of Troponin in the Complexes, on the Thin Filament, and in Muscle Fibres, as Studied By Site-Directed Spin-Labelling EPR
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    Chapter 13 Crystal Structures of Tropomyosin: Flexible Coiled-Coil
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    Chapter 14 C. Elegans Model for Studying Tropomyosin and Troponin Regulations of Muscle Contraction and Animal Behavior
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    Chapter 15 Structural and Functional Analysis of Troponins from Scallop Striated and Human Cardiac Muscles
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    Chapter 16 Cooperativity in the Regulation of Force and the Kinetics of Force Development in Heart and Skeletal Muscles
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    Chapter 17 Heart Failure, Ischemia/Reperfusion Injury and Cardiac Troponin
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    Chapter 18 Troponin Mutations in Cardiomyopathies
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    Chapter 19 Molecular Pathogenic Mechanisms of Cardiomyopathies Caused by Mutations in Cardiac Troponin T
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    Chapter 20 Cardiac Troponin Levels as a Preferable Biomarker of Myocardial Cell Degradation
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    Chapter 21 Regulation by Myosin: How Calcium Regulates Some Myosins, Past and Present
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    Chapter 22 Calcium Inhibition of Physarum Myosin as Examined by the Recombinant Heavy Mero-Myosin
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    Chapter 23 Calcium-Induced Release of Calcium From the Sarcoplasmic Reticulum
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    Chapter 24 Dysregulation of the Gain of CICR Through Ryanodine Receptor1 (RyR1): The Putative Mechanism Underlying Malignant Hyperthermia
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    Chapter 25 Ion Pumping by Calcium ATPase of Sarcoplasmic Reticulum
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    Chapter 26 Regulation of Cell Functions by Ca 2+ Oscillation
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    Chapter 27 Evidence About the Structural Behaviour of Myosin Crossbridges During Muscle Contraction
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    Chapter 28 Structural Alterations of Thin Actin Filaments in Muscle Contraction by Synchrotron X-ray Fiber Diffraction
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    Chapter 29 Regulation of Muscle Contraction by Ca 2+ and ADP: Focusing on the0 Auto-Oscillation (SPOC)
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    Chapter 30 Muscle Contraction Mechanism Based on Actin Filament Rotation
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    Chapter 31 On the Walking Mechanism of Linear Molecular Motors
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    Chapter 32 Modeling of the F-Actin Structure
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Title
Regulatory Mechanisms of Striated Muscle Contraction
Published by
Springer Japan, May 2007
DOI 10.1007/978-4-431-38453-3
ISBNs
978-4-43-138451-9, 978-4-43-138453-3
Editors

Ebashi, Setsuro, Ohtsuki, Iwao

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 16 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Denmark 1 6%
Unknown 15 94%

Demographic breakdown

Readers by professional status Count As %
Researcher 6 38%
Student > Master 4 25%
Unspecified 2 13%
Student > Postgraduate 1 6%
Lecturer 1 6%
Other 2 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 4 25%
Unspecified 3 19%
Chemistry 2 13%
Sports and Recreations 2 13%
Biochemistry, Genetics and Molecular Biology 1 6%
Other 4 25%