Muscle Fiber Bundles

Muscle fiber bundles are organized groups of skeletal muscle fibers that work together to generate and transmit force, making them a fundamental level of muscle structure in biology. Individual fibers are arranged into fascicles and enclosed by connective tissue, which helps maintain alignment, supports blood vessels and nerves, and transfers contractile force toward tendons as the fibers shorten. Studying muscle fiber bundles helps explain how muscle architecture influences strength, movement, and susceptibility to injury, while providing a framework for interpreting tissue organization in anatomy, physiology, exercise science, and muscle disease research.

Muscle Fiber Bundles - Related Videos

Education

JoVE Core - Biology

Classification of Skeletal Muscle Fibers

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2019

Skeletal muscles continuously produce ATP to provide the energy that enables muscle contractions. Skeletal muscle fibers can be categorized into three types based on differences in their contraction speed and how they produce ATP, as well as physical differences related to these factors. Most human muscles contain all three muscle fiber types, albeit in varying proportions. Slow-Twitch Muscle Fibers Slow oxidative, muscle fibers appear red due to large numbers of capillaries and high levels of...

Research

JoVE Journal - Bioengineering
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Measurement of Maximum Isometric Force Generated by Permeabilized Skeletal Muscle Fibers

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Cited by 49 •

2015

Analysis of the contractile properties of chemically skinned, or permeabilized, skeletal muscle fibers offers a powerful means by which to assess muscle function at the level of the single muscle cell. In this article we outline a valid and reliable technique to prepare and test permeabilized skeletal muscle fibers in vitro.

Assessment of Calcium Sparks in Intact Skeletal Muscle Fibers

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Cited by 15 •

2014

Described here is a method to directly measure calcium sparks, the elementary units of Ca2+ release from sarcoplasmic reticulum in intact skeletal muscle fibers. This method utilizes osmotic-stress-mediated triggering of Ca2+ release from ryanodine receptor in isolated muscle fibers. The dynamics and homeostatic capacity of intracellular Ca2+ signaling can be employed to assess muscle function in health and disease.

Multiplexed Fluorescent Microarray for Human Salivary Protein Analysis Using Polymer Microspheres and Fiber-optic Bundles

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Cited by 4 •

2013

We describe a procedure for profiling salivary proteins using multiplexed microsphere-based antibody arrays. Monoclonal antibodies were covalently linked to fluorescent dye-encoded 4.5 μm polymer microspheres using carbodiimide chemistry. The modified microspheres were deposited in fiber-optic microwells to measure protein levels in saliva using fluorescence sandwich immunoassays.

Research

JoVE Journal - Biology
Free Sample

Fluorescence-based Measurement of Store-operated Calcium Entry in Live Cells: from Cultured Cancer Cell to Skeletal Muscle Fiber

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Cited by 19 •

2012

The extent of store-operated Ca2+ entry (SOCE) can be monitored using fluorescent Ca2+ indicators. Mn2+ quenching of such indicators assays SOCE in cultured cells and skeletal muscle fibers. A technique allowing spatial and temporal resolution of SOCE by confocal imaging of mechanically skinned muscle fibers is also described.

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