INNERVATION OF THE RABBIT LUMBAR INTERVERTEBRAL DISC AND POSTERIOR LONGITUDINAL LIGAMENT

被引:44
作者
CAVANAUGH, JM
KALLAKURI, S
OZAKTAY, AC
机构
[1] Bioengineering Center, Wayne State University, Detroit, MI
关键词
A-DELTA AND C FIBERS; ANULUS; ENCAPSULATED NERVE ENDINGS; INNERVATION; INTERVERTEBRAL DISC; POSTERIOR LONGITUDINAL LIGAMENT;
D O I
10.1097/00007632-199510000-00002
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Study Design. The present study sought to determine to what extent the lumbar intervertebral disc and posterior longitudinal ligament are innervated in the New Zealand white rabbit. The intent is to use this disc model in future neurophysiology studies. Objective. To characterize the distribution of nerve fibers and endings in the lumbar intervertebral disc and posterior longitudinal ligament in an animal model. Summary of Background Data. The results of previous disc innervation reports are somewhat conflicting regarding the density and depth of innervation into the anulus. Methods. A silver impregnation technique was used to analyze sections from lumbar intervertebral disc and posterior longitudinal ligament of the New Zealand white rabbit, Results. Numerous fine profiles of nerve fibers were demonstrated in the lumbar disc anulus and posterior longitudinal ligament. In the disc, the nerves were limited to the superficial anulus and anular surface. The nerve axons typically were 1 to 3 mu m in diameter and were found around the entire periphery of the disc. No encapsulated endings were seen within the anulus, while occasional encapsulated endings were seen on the anular surface and posterior longitudinal ligament. Conclusion. This study demonstrates an extensive distribution of small nerve fibers in the size range of C and A-delta fibers throughout the peripheral anulus and provides an illustration of this distribution. These findings support a role for the disc as a source of low back pain.
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收藏
页码:2080 / 2085
页数:6
相关论文
共 29 条
[1]  
Ahmed M., Bjurholm A., Kreicbergs A., Schultzberg M., SP and CGRP immunoreactive nerve fibers in the rat lumbar spine, Neuro-Orthopedics, 12, pp. 19-28, (1991)
[2]  
Ashton I.K., Roberts S., Jaffray D.C., Polak J.M., Eisenstein S.M., Neuropeptides in the human intervertebral disc, J Orthop Res, 12, pp. 186-192, (1994)
[3]  
Bogduk N., Tynan W., Wilson A.S., The nerve supply to the human lumbar intervertebral discs, J Anat, 132, pp. 39-56, (1981)
[4]  
Bogduk N., The innervation of the lumbar spine, Spine, 8, pp. 286-293, (1983)
[5]  
Cavanaugh J.M., Avramov A., Ozakcay A.C., Blagoev D., King A.I., Initial electrophysiological studies of neurons of the lumbar spinal canal, Proceedings of the International Society for the Study of the Lumbar Spine, pp. 20-24, (1992)
[6]  
Forsythe W.B., Ghoshal N.G., Innervation of the canine thoracolumbar vertebral column, Anat Rec, 208, pp. 57-63, (1984)
[7]  
Groen G.J., Baljet B., Drukker J., Nerves and nerve plexuses of the human vertebral column, The American Journal of Anatomy, 188, pp. 282-296, (1990)
[8]  
Guyton A.C., Sensory receptors and their basic mechanisms of action, In: Guyton AC, Ed. Textbook of Medical Physiology, pp. 588-596, (1980)
[9]  
Hirsch C., Ingelmark B.E., Miller M., The anatomical basis for low back pain, Acta Orthop Scand, 33, pp. 1-17, (1963)
[10]  
Ikari C., A study of the mechanism of low back pain: The neurohistological examination of the disease (abstract), J Bone Joint Surg [Am], 36, (1954)