Muscle Cell Imaging

Muscle cell imaging is the visualization and measurement of muscle cells, their internal structures, and their responses to stimulation, providing a way to study how muscle function is organized at the cellular level. Using light or fluorescence microscopy, researchers capture features such as cell shape, contractile organization, calcium dynamics, and interactions with neighboring cells; time-lapse imaging can relate these changes to neural signals. In neuroscience, this approach supports investigation of neuromuscular junctions, motor neuron control, muscle disease, and activity-dependent remodeling. Quantitative image analysis can reveal altered signaling or structure, linking cellular observations to movement, development, and repair.

Muscle Cell Imaging - Related Videos

Research

JoVE Journal - Medicine

Molecular Imaging to Target Transplanted Muscle Progenitor Cells

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Cited by 3 •

2013

A non-invasive means to evaluate the success of myoblast transplantation is described. The method takes advantage of a unified fusion reporter gene composed of genes whose expression can be imaged with different imaging modalities. Here, we make use of a fluc reporter gene sequence to target cells via bioluminescence imaging.

Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation

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Cited by 28 •

2016

Vascular calcification is an important predictor of and contributor to human cardiovascular disease. This protocol describes methods for inducing calcification of cultured primary vascular smooth muscle cells and for quantifying calcification and macrophage burden in animal aortas using near-infrared fluorescence imaging.

Research

JoVE Journal - Biology
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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.

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease

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Cited by 8 •

2016

Neuromuscular diseases often exhibit a temporally varying, spatially heterogeneous, and multi-faceted pathology. The goal of this protocol is to characterize this pathology using non-invasive magnetic resonance imaging methods.

In Vivo Imaging of Muscle-tendon Morphogenesis in Drosophila Pupae

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Cited by 17 •

2018

Here, we present an easy-to-use and versatile method to perform live imaging of developmental processes in general and muscle-tendon morphogenesis in particular in living Drosophila pupae.

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