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实验性神经根压迫。猪马尾急性分级压迫模型及神经与血管解剖分析。

Experimental nerve root compression. A model of acute, graded compression of the porcine cauda equina and an analysis of neural and vascular anatomy.

作者信息

Olmarker K, Holm S, Rosenqvist A L, Rydevik B

机构信息

Department of Anatomy, Sahlgren Hospital, University of Göteborg, Sweden.

出版信息

Spine (Phila Pa 1976). 1991 Jan;16(1):61-9.

PMID:2003239
Abstract

Nerve root compression has been suggested as one important pathogenetic factor in low-back pain syndromes and sciatica. The underlying pathophysiologic mechanisms are, however, incompletely known, partly because of the lack of experimental data on this topic. In the present study, a model for experimental compression of the porcine sacrococcygeal cauda equina is presented. The model consists of surgical exposure of the cauda equina and compression of the cauda equina toward the ventral aspect of the spinal canal by an inflatable balloon fixed to the spine. This compression system was shown to have a high accuracy in pressure transmission from the balloon to the cauda equina. The gross and microscopic neural anatomy and the vascular anatomy of the porcine cauda equina were analyzed with light microscopic and ink-perfusion techniques. The porcine cauda equina showed a close anatomic resemblance to the human lumbosacral cauda equina. The presented model offers unique possibilities for experimental studies on nerve root compression injury because of the easy surgical exposure and the sufficient length of the nerve roots. In separate studies, this model, along with investigations of solute transport to the nerve tissue and of impulse propagation, has been used to analyze the effects of acute, graded compression on blood flow and edema formation in the cauda equina. The porcine cauda equina would also be particularly suitable for chronic compression studies because any neurologic deficit acquired would be restricted to the tail.

摘要

神经根受压被认为是下腰痛综合征和坐骨神经痛的一个重要致病因素。然而,其潜在的病理生理机制尚不完全清楚,部分原因是缺乏关于该主题的实验数据。在本研究中,提出了一种猪骶尾马尾神经实验性受压模型。该模型包括手术暴露马尾神经,并通过固定在脊柱上的可充气气球将马尾神经向椎管腹侧挤压。结果表明,这种挤压系统在从气球到马尾神经的压力传递方面具有很高的准确性。采用光学显微镜和墨水灌注技术对猪马尾神经的大体和微观神经解剖结构以及血管解剖结构进行了分析。猪马尾神经在解剖结构上与人类腰骶部马尾神经非常相似。由于手术暴露容易且神经根长度足够,所提出的模型为神经根受压损伤的实验研究提供了独特的可能性。在单独的研究中,该模型连同对神经组织溶质转运和冲动传播的研究,已被用于分析急性、分级压迫对马尾神经血流和水肿形成的影响。猪马尾神经也特别适合进行慢性压迫研究,因为任何获得的神经功能缺损都将局限于尾部。

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