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不仅仅是一个“锚点”:人类终丝含有对拉伸敏感和感受伤害的神经末梢,并且可以通过电刺激引起脊柱旁肌肉激活。

Not Just an Anchor: The Human Filum Terminale Contains Stretch Sensitive and Nociceptive Nerve Endings and Responds to Electrical Stimulation With Paraspinal Muscle Activation.

机构信息

Department of Neurosurgery, Rhode Island Hospital, The Warren Alpert Medical School of Brown University, Providence, Rhode Island, USA.

Department of Pathology, Rhode Island Hospital, The Warren Alpert Medical School of Brown University, Providence, Rhode Island, USA.

出版信息

Neurosurgery. 2022 Oct 1;91(4):618-624. doi: 10.1227/neu.0000000000002081. Epub 2022 Jul 21.

Abstract

BACKGROUND

Neural components of the fibrous filum terminale (FT) are well known but are considered as embryonic remnants without functionality.

OBJECTIVE

To investigate the ultrastructure of human FT specimens for sensory nerve endings and record paraspinal muscle activity on electrostimulation of the FT.

METHODS

We prospectively investigated a cohort of 53 patients who underwent excision of the FT for the treatment of tethered cord syndrome. Surgical FT specimens were investigated by light and transmission electron microscopy. Intraoperative electrophysiological routine monitoring was extended by recording paraspinal muscles above and below the laminotomy level.

RESULTS

Light microscopy revealed tiny peripheral nerves piercing the pia mater of the FT and entering its fibrous core. Transmission electron microscopy unveiled within the fibrous core of the FT myelinated nerve structures in 8 of the 53 patients and unmyelinated ones in 10 of the 53 patients. Both nerve endings encapsulated in fibrous tissue or unencapsulated nonmyelinated Schwann cell nerve bundles, that is, Remak cells, were found. Those nerve endings resembled mechanoreceptor and nociceptive receptor structures found in human skin, muscle tendons, and skeletal ligaments. Specifically, we found Ruffini mechanoreceptors and in addition nerve endings which resembled nociceptive glioneural structures of the skin. Bipolar electrostimulation of the FT was associated with paraspinal muscle activity above and below the spinal segment at which the FT was stimulated.

CONCLUSION

Morphological and electrophysiological results indicate the presence of functional sensory nerve endings in the FT. Like other spine ligaments, the FT may serve as a proprioceptive element but may also contribute to back pain in spine disorders.

摘要

背景

纤维终丝(FT)的神经成分众所周知,但被认为是没有功能的胚胎残余物。

目的

研究人 FT 标本的感觉神经末梢的超微结构,并记录 FT 电刺激时的脊柱旁肌肉活动。

方法

我们前瞻性地研究了 53 例因脊髓栓系综合征而行 FT 切除的患者队列。对手术 FT 标本进行光镜和透射电镜检查。通过记录脊突切开水平上下的脊柱旁肌肉,扩展术中电生理常规监测。

结果

光镜显示细小的周围神经穿透 FT 的软脑膜并进入其纤维核心。在 53 例患者中的 8 例和 53 例患者中的 10 例中,透射电镜揭示了 FT 纤维核心中的有髓神经结构和无髓神经结构。这些神经末梢被包裹在纤维组织中的或未包裹的无髓 Schwann 细胞神经束中,即 Remak 细胞。这些神经末梢类似于在人体皮肤、肌肉肌腱和骨骼韧带中发现的机械感受器和伤害感受器结构。具体而言,我们发现了 Ruffini 机械感受器,此外还有类似于皮肤伤害感受器神经结构的神经末梢。FT 的双极电刺激与在刺激 FT 的脊髓节段上方和下方的脊柱旁肌肉活动有关。

结论

形态学和电生理学结果表明 FT 中存在功能性感觉神经末梢。像其他脊柱韧带一样,FT 可能作为本体感受元件,但也可能导致脊柱疾病中的背痛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/702b/9703839/509e3ac93b4a/neu-91-618-g001.jpg

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