Laminotomy Facetectomy

Laminotomy facetectomy is a spinal decompression procedure that removes part of a vertebral lamina and all or part of a facet joint to relieve pressure on the spinal cord or nerve roots. Through a posterior surgical approach, the surgeon enlarges the space within the spinal canal or neural foramen by excising bone and, when necessary, thickened ligament or other compressive tissue. The procedure is used to treat conditions such as spinal stenosis, foraminal narrowing, and nerve-root compression that can cause pain, numbness, or weakness. In selected cases, spinal fusion may be added to preserve stability after substantial joint removal.

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JoVE EoE - Neurotherapeutics

Laminotomy for Targeted Injection into the Lumbar Dorsal Root Ganglion in a Pig Model

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2025

Source: Unger, M. D., et al., Laminotomy for Lumbar Dorsal Root Ganglion Access and Injection in Swine. J. Vis. Exp. (2017)This video demonstrates a laminotomy procedure in an anesthetized pig to access the lumbar dorsal root ganglion for targeted neurotherapeutic delivery using convection-enhanced delivery.

Laminotomy for Lumbar Dorsal Root Ganglion Access and Injection in Swine

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Cited by 7 •

2017

We describe a method for laminotomy in swine that provides access to lumbar dorsal root ganglia (DRG) for intraganglionic injection. Injection progress is monitored intraoperatively and histologically confirmed up to 21 days after surgery. This protocol could be used for future preclinical studies involving DRG injection.

Surgical Technique for Spinal Cord Delivery of Therapies: Demonstration of Procedure in Gottingen Minipigs

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Cited by 24 •

2012

Short visual description of the surgical technique and device used for the delivery of (gene and cell) therapies into the spinal cord. The technique is demonstrated in the animal but is entirely translatable and currently being used for human application.

Lateral-PLIF for Lumbar Spinal Arthrodesis: A Detailed Step-By-Step Surgical Technique

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2026

Lateral-PLIF is an advanced posterior lumbar interbody fusion technique allowing safer cage insertion with minimal neural manipulation. This article outlines the step-by-step procedure, highlighting the benefits of the bilateral approach, optimal cage orientation, high fusion rates, and low complication risks, offering a promising alternative to traditional PLIF.

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