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通过乙酰胆碱酯酶组织化学研究大鼠脊柱后纵韧带和椎间盘的神经供应。I. 腰椎区域的分布

Nerve supply to the posterior longitudinal ligament and the intervertebral disc of the rat vertebral column as studied by acetylcholinesterase histochemistry. I. Distribution in the lumbar region.

作者信息

Kojima Y, Maeda T, Arai R, Shichikawa K

机构信息

Department of Anatomy, Shiga University of Medical Science, Japan.

出版信息

J Anat. 1990 Apr;169:237-46.

Abstract

The nerve supply to the posterior longitudinal ligament (PLL) and the intervertebral disc (IVD) of the lumbar vertebra was investigated by acetylcholinesterase (AchE) enzyme histochemistry in the rat. The meningeal branch of the spinal nerve (the sinuvertebral nerve) enters the vertebral canal and divides into ascending and descending branches which fuse with those from adjacent vertebrae. They give off transverse branches, connecting with those from the opposite side to form the superficial nerve fibre network in the intervertebral segment, which spreads to the vertebral segment of the PLL. Apart from this superficial nervous network, many nerve fibres enter through the posterolateral portion of the annulus fibrosus (AF) and form a dense, fine nerve fibre network in the deep layer of the intervertebral portion of the PLL and the superficial layer of the AF. Nerve fibres and terminals cannot be found in the deep layer of the AF or the nucleus pulposus. In the central part of the deeper nerve network there are few nerve terminals whereas there are abundant free nerve endings in the peripheral zones. It is suggested that these abundant nerve fibres may be correlated with various functions characteristic of this region and that they may be important in the regulation of movement and posture in the vertebral column.

摘要

通过乙酰胆碱酯酶(AchE)酶组织化学方法,对大鼠腰椎后纵韧带(PLL)和椎间盘(IVD)的神经供应进行了研究。脊神经的脑脊膜支(窦椎神经)进入椎管并分为升支和降支,它们与相邻椎体的分支融合。它们发出横向分支,与对侧的分支相连,在椎间节段形成浅神经纤维网络,并延伸至PLL的椎体节段。除了这个浅神经网络外,许多神经纤维通过纤维环(AF)的后外侧部分进入,并在PLL椎间部分的深层和AF的浅层形成密集、精细的神经纤维网络。在AF深层或髓核中未发现神经纤维和终末。在较深神经网络的中央部分,神经终末较少,而在周边区域有丰富的游离神经末梢。提示这些丰富的神经纤维可能与该区域的各种功能特征相关,并且它们可能在脊柱运动和姿势的调节中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/000f/1256969/32937307b1dc/janat00041-0235-a.jpg

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