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论人体颈椎节段纵向韧带神经支配的重要性。

On the importance of the innervation of the human cervical longitudinal ligaments at vertebral level.

作者信息

Stegmann Tina, Steinke Hanno, Pieroh Philipp, Dehghani Faramarz, Völker Anna, Groll Mathias Jakob, Wolfskämpf Thomas, Werner Michael, Kollan Julia, Hinz Andreas, Leimert Mario

机构信息

Institute of Anatomy, University of Leipzig, Liebigstrasse 13, 04103, Leipzig, Germany.

Department of Orthopedics, Trauma and Plastic Surgery, University of Leipzig Medical Center, Liebigstrasse 20, 04103, Leipzig, Germany.

出版信息

Surg Radiol Anat. 2020 Feb;42(2):127-136. doi: 10.1007/s00276-019-02316-6. Epub 2019 Sep 6.

Abstract

PURPOSE

In our aging society, the prevalence of degenerative spinal diseases rose drastically within the last years. However, up till now, the origin of cervical pain is incompletely understood. While animal and small cadaver studies indicate that a complex system of sensory and nociceptive nerve fibers in the anterior (ALL) and posterior longitudinal ligament (PLL) at the level of the intervertebral disc might be involved, there is a lack of data exploring whether such a network exists and is equally distributed within the cervical vertebrae (VB). We, therefore, aimed to investigate the spatial distribution of the mentioned nerve networks in human tissue.

METHODS

We performed macroscopic (Sihler staining, Spalteholz technique, and Plastination) and microscopic (immunohistochemistry for PGP 9.5 and CGRP) studies to characterize spatial differences in sensory and nociceptive innervation patterns. Therefore, 23 human body donors were dissected from level C3-C6.

RESULTS

We could show that there is a focal increase in sensory and nociceptive nerve fibers at the level of C4 and C5 for both ALL and PLL, while we observed less nerve fiber density at the level of C3 and C6. An anatomical vicinity between nerve and vessels was observed.

CONCLUSION

To our knowledge, these findings for the first time report spatial differences in sensory and nociceptive nerve fibers in the human cervical spine at VB level. The interconnection between nerves and vessels supports the importance of the perivascular plexus. These findings might be of special interest for clinical practice as many patients suffer from pain after cervical spine surgery.

摘要

目的

在我们这个老龄化社会中,过去几年退行性脊柱疾病的患病率急剧上升。然而,迄今为止,颈部疼痛的起源尚未完全明确。虽然动物和小型尸体研究表明,椎间盘水平的前纵韧带(ALL)和后纵韧带(PLL)中存在一个复杂的感觉和伤害性神经纤维系统,但缺乏数据探讨这样的网络是否存在以及是否在颈椎(VB)内均匀分布。因此,我们旨在研究上述神经网络在人体组织中的空间分布。

方法

我们进行了宏观(西勒染色、斯帕尔托霍尔茨技术和塑化)和微观(PGP 9.5和降钙素基因相关肽的免疫组织化学)研究,以表征感觉和伤害性神经支配模式的空间差异。为此,从C3 - C6水平解剖了23具人体供体。

结果

我们可以表明,ALL和PLL在C4和C5水平的感觉和伤害性神经纤维均有局灶性增加,而在C3和C6水平观察到的神经纤维密度较低。观察到神经与血管之间存在解剖学上的邻近关系。

结论

据我们所知,这些发现首次报道了人体颈椎VB水平感觉和伤害性神经纤维的空间差异。神经与血管之间的相互联系支持了血管周围神经丛的重要性。这些发现可能对临床实践具有特殊意义,因为许多患者在颈椎手术后会遭受疼痛。

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