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A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats

BACKGROUND: The nerve root avulsion injury causes decrease of motor neurons in the spinal ventral horn. To investigate the motoneuron death after avulsion injury in rats, the intradural root avulsion procedure is usually used, although it is technically demanding and associated with a risk of unexpe...

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Autores principales: Noguchi, Takashi, Ohta, Souichi, Kakinoki, Ryosuke, Kaizawa, Yukitoshi, Matsuda, Shuichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848685/
https://www.ncbi.nlm.nih.gov/pubmed/24020460
http://dx.doi.org/10.1186/1749-7221-8-8
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author Noguchi, Takashi
Ohta, Souichi
Kakinoki, Ryosuke
Kaizawa, Yukitoshi
Matsuda, Shuichi
author_facet Noguchi, Takashi
Ohta, Souichi
Kakinoki, Ryosuke
Kaizawa, Yukitoshi
Matsuda, Shuichi
author_sort Noguchi, Takashi
collection PubMed
description BACKGROUND: The nerve root avulsion injury causes decrease of motor neurons in the spinal ventral horn. To investigate the motoneuron death after avulsion injury in rats, the intradural root avulsion procedure is usually used, although it is technically demanding and associated with a risk of unexpected spinal cord damage. We have developed a new cervical nerve root avulsion procedure in rats and investigated the validity of our procedure. METHODS: Our procedure is using a posterior approach and pulling the C6 nerve root outside the vertebral foramen without intradural procedures. The lateral third of the lateral mass is needed to be resected before pulling the nerve root. The accomplishment of our procedure is judged by confirmation of the bifurcated stump of the avulsed nerve root and the leakage of the spinal fluid from vertebral foramen. At first, four Sprague–Dawley (SD) rats were used for the examination of C6 motor neuron distribution in the normal spinal cord. Then, 40 SD rats were divided into following four groups and the survival rate of motor neuron was examined. (A) an intradural avulsion group, (B) an intradural rhizotomy group, (C) our extravertebral avulsion group, and (D) an extravertebral rupture group. Another 26 SD rats were used for the examination of histomorphorogic changes in the spinal cord after our extra-vertebral avulsion procedure. RESULTS: At 28 days after injury, the percentage of surviving motor neurons in groups A (39.0 ± 2.1%) and C (47.5 ± 7.1%) were significantly lower than those in groups B (77.1 ± 12.3%) and D (98.9 ± 9.9%). Compared with other groups, our procedure was easier and associated with less unexpected spinal cord damage. Although the length of the distal stump of the extravertebrally avulsed ventral rootlets was varied between 1.5 and 3.2 mm, this difference did not affect motoneuron death. The extravertebral avulsion injury showed intraspinal bleeding along the motoneuron axons, glial reaction and macrophage infiltration in the lesioned side of the ventral horn. CONCLUSIONS: Our extravertebral avulsion procedure is simple and reproducible. It would become a useful tool for the study of cervical nerve root avulsion injury.
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spelling pubmed-38486852013-12-04 A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats Noguchi, Takashi Ohta, Souichi Kakinoki, Ryosuke Kaizawa, Yukitoshi Matsuda, Shuichi J Brachial Plex Peripher Nerve Inj Research Article BACKGROUND: The nerve root avulsion injury causes decrease of motor neurons in the spinal ventral horn. To investigate the motoneuron death after avulsion injury in rats, the intradural root avulsion procedure is usually used, although it is technically demanding and associated with a risk of unexpected spinal cord damage. We have developed a new cervical nerve root avulsion procedure in rats and investigated the validity of our procedure. METHODS: Our procedure is using a posterior approach and pulling the C6 nerve root outside the vertebral foramen without intradural procedures. The lateral third of the lateral mass is needed to be resected before pulling the nerve root. The accomplishment of our procedure is judged by confirmation of the bifurcated stump of the avulsed nerve root and the leakage of the spinal fluid from vertebral foramen. At first, four Sprague–Dawley (SD) rats were used for the examination of C6 motor neuron distribution in the normal spinal cord. Then, 40 SD rats were divided into following four groups and the survival rate of motor neuron was examined. (A) an intradural avulsion group, (B) an intradural rhizotomy group, (C) our extravertebral avulsion group, and (D) an extravertebral rupture group. Another 26 SD rats were used for the examination of histomorphorogic changes in the spinal cord after our extra-vertebral avulsion procedure. RESULTS: At 28 days after injury, the percentage of surviving motor neurons in groups A (39.0 ± 2.1%) and C (47.5 ± 7.1%) were significantly lower than those in groups B (77.1 ± 12.3%) and D (98.9 ± 9.9%). Compared with other groups, our procedure was easier and associated with less unexpected spinal cord damage. Although the length of the distal stump of the extravertebrally avulsed ventral rootlets was varied between 1.5 and 3.2 mm, this difference did not affect motoneuron death. The extravertebral avulsion injury showed intraspinal bleeding along the motoneuron axons, glial reaction and macrophage infiltration in the lesioned side of the ventral horn. CONCLUSIONS: Our extravertebral avulsion procedure is simple and reproducible. It would become a useful tool for the study of cervical nerve root avulsion injury. BioMed Central 2013-09-11 /pmc/articles/PMC3848685/ /pubmed/24020460 http://dx.doi.org/10.1186/1749-7221-8-8 Text en Copyright © 2013 Noguchi et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Noguchi, Takashi
Ohta, Souichi
Kakinoki, Ryosuke
Kaizawa, Yukitoshi
Matsuda, Shuichi
A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
title A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
title_full A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
title_fullStr A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
title_full_unstemmed A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
title_short A new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
title_sort new cervical nerve root avulsion model using a posterior extra-vertebral approach in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848685/
https://www.ncbi.nlm.nih.gov/pubmed/24020460
http://dx.doi.org/10.1186/1749-7221-8-8
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