Muscle Morphology

Muscle morphology is the study of muscle form, structure, and organization, providing a framework for understanding how muscles generate movement and adapt to physiological demands. It examines features such as muscle size, fiber shape, fascicle arrangement, connective tissue, and the microscopic organization of sarcomeres, where actin and myosin interact to produce contraction. In biology, morphological analysis helps relate structure to function across skeletal, cardiac, and smooth muscle, while techniques such as microscopy, dissection, and imaging reveal changes associated with development, exercise, injury, disease, and aging. These findings support research in anatomy, physiology, biomechanics, rehabilitation, and comparative biology.

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Research

JoVE EoE - Caenorhabditis elegans (worm)

C. elegans Muscle Area Measurements: A Standardized Method to Quantify Striated Muscle Morphology

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2023

C. elegans have two types of muscles, single sarcomere and multiple sarcomere, or striated muscles. This video describes the arrangement of the striated body wall muscles, which are responsible for a worm’s locomotion and includes a sample protocol to measure muscle morphology using image analysis software.

Semi-automated Analysis of Mouse Skeletal Muscle Morphology and Fiber-type Composition

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Cited by 26 •

2017

Immunohistochemical staining of myosin heavy chain isoforms has emerged as the state-of-the-art discriminator of skeletal muscle fiber-type (i.e., type I, type IIA, type IIX, type IIB). Here, we present a staining protocol along with a novel semi-automated algorithm that facilitates rapid assessment of fiber-type and fiber morphology.

Visualizing the Morphological Characteristics of Neuromuscular Junction in Rat Medial Gastrocnemius Muscle

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Cited by 2 •

2022

The protocol shows a method to examine spatial correlation among the pre-synaptic terminals, post-synaptic receptors, and peri-synaptic Schwann cells in the rat medial gastrocnemius muscle using fluorescent immunohistochemistry with different biomarkers, namely, neurofilament 200, vesicular acetylcholine transporter, alpha-bungarotoxin, and S100.

Ex Vivo Assessment of Contractility, Fatigability and Alternans in Isolated Skeletal Muscles

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Cited by 53 •

2012

We describe a method to directly measure muscle force, muscle power, contractile kinetics and fatigability of isolated skeletal muscles in an in vitro system using field stimulation. Valuable information on Ca2+ handling properties and contractile machinery of the muscle can be obtained using different stimulating protocols.

Functional and Morphological Assessment of Diaphragm Innervation by Phrenic Motor Neurons

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Cited by 16 •

2015

Compound muscle action potential recording quantitatively assesses functional diaphragm innervation by phrenic motor neurons. Whole-mount diaphragm immunohistochemistry assesses morphological innervation at individual neuromuscular junctions. The goal of this protocol is to demonstrate how these two powerful methodologies can be used in various rodent models of spinal cord disease.

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