Paraspinal Muscle Removal

Paraspinal muscle removal is a surgical or experimental procedure in which muscles alongside the vertebral column are separated or excised to expose spinal structures or model loss of posterior muscular support. The procedure typically involves dissecting through surrounding soft tissue and detaching muscle from its vertebral or fascial attachments, while controlling bleeding and protecting neural and vascular tissues. In medicine, it can provide access during spinal operations and help researchers examine how muscle loss affects posture, spinal stability, biomechanics, pain, and recovery. Careful technique is essential because removing these muscles can alter mechanical loading and contribute to weakness or impaired function.

Paraspinal Muscle Removal - Related Videos

Research

JoVE Journal - Neuroscience

Removal of Drosophila Muscle Tissue from Larval Fillets for Immunofluorescence Analysis of Sensory Neurons and Epidermal Cells

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Cited by 13 •

2016

Studies of neuronal morphogenesis using Drosophila larval dendritic arborization (da) neurons benefit from in situ visualization of neuronal and epidermal proteins by immunofluorescence. We describe a procedure that improves immunofluorescence analysis of da neurons and surrounding epidermal cells by removing muscle tissue from the larval body wall.

Superior Lacrimal Gland Removal: A Surgical Technique to Remove the Palpebral and Orbital Parts of Superior Lacrimal Gland from Rabbit Model

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2025

This video describes the surgical procedure to remove the two parts: palpebral and orbital of the superior lacrimal gland from a rabbit to create a dry eye disease model. This rabbit model is suitable for studies of ocular surface homeostasis, pathophysiology and ocular therapeutics.

A Decentralized (Ex Vivo) Murine Bladder Model with the Detrusor Muscle Removed for Direct Access to the Suburothelium during Bladder Filling

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Cited by 6 •

2019

The detrusor-free bladder model enables direct access to the suburothelium to study local mechanisms for regulation of biologically active mediator availability in suburothelium/lamina propria during storage and voiding of urine. The preparation closely resembles filling of an intact bladder and allows pressure-volume studies to be performed without systemic influences.

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.

Evaluation of Respiratory Muscle Activation Using Respiratory Motor Control Assessment (RMCA) in Individuals with Chronic Spinal Cord Injury

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Cited by 18 •

2013

The purpose of this publication is to present our original work on a multi-muscle surface electromyographic approach to quantitatively characterize respiratory muscle activation patterns in individuals with chronic spinal cord injury using vector-based analysis.

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