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马三叉神经节周围蛛网膜下腔的解剖学研究——为马属动物可控性甘油神经根切断术做准备

An anatomical study of the subarachnoid space surrounding the trigeminal ganglion in horses-in preparation for a controlled glycerol rhizotomy in equids.

作者信息

Becker Richard, Haenssgen Kati, Precht Christina, Khoma Oleksiy-Zakhar, Hlushchuk Ruslan, Koch Christoph, Kaessmeyer Sabine, de Preux Mathieu

机构信息

Department of Clinical Veterinary Medicine, Vetsuisse-Faculty, Swiss Institute of Equine Medicine (ISME), University of Bern, Bern, Switzerland.

Division of Veterinary Anatomy, Department of Clinical Research and Veterinary Public Health, Vetsuisse-Faculty, University of Bern, Bern, Switzerland.

出版信息

Front Vet Sci. 2024 Jul 18;11:1424890. doi: 10.3389/fvets.2024.1424890. eCollection 2024.

Abstract

INTRODUCTION

Equine trigeminal-mediated headshaking is a painful neuropathic disorder comparable to trigeminal neuralgia in humans. The selective destruction of pain fibers within the trigeminal ganglion, called rhizotomy, is the surgical treatment of choice for idiopathic trigeminal neuralgia refractory to medical treatment in humans. The human trigeminal ganglion is enclosed by a dural recess called the Meckel's or trigeminal cave, in which the ganglion is surrounded by a cerebrospinal fluid (CSF)-filled subarachnoid space. During glycerol rhizotomy, glycerol is percutaneously injected in this CSF-filled space. Until now, information about the anatomy of the dural recess and the subarachnoid space surrounding the trigeminal ganglion is lacking in horses. The aim of this study was to explore if a CSF-filled subarachnoid space around the trigeminal ganglion exists in horses.

MATERIALS AND METHODS

Six equine cadaver heads were investigated for CSF accumulation around the ganglion with a 3 Tesla MRI. After anatomical dissection to expose the trigeminal root, a polymer-based radiopaque contrast agent was injected through the porus trigeminus into the subarachnoid space (cisternography). The exact delineation and the volume of the contrast agent accumulation were determined on subsequent micro-computed tomographic scans and segmentation. Finally, the distribution of the contrast agent within the subarachnoid space was examined histologically in three specimens.

RESULTS

In all 12 specimens included in this study, the trigeminal ganglion was surrounded by a subarachnoid space forming a trigeminal cistern. The mean volume of the trigeminal cave in this study was 0.31 mL (±SD: 0.11 mL). Distribution of the contrast agent along the peripheral nerves (i.e., ophthalmic, maxillary and/or mandibular nerve) was observed in 7 out of 12 specimens.

DISCUSSION/CONCLUSION: A subarachnoid space surrounding the trigeminal ganglion exists in the horse and could be targeted for glycerol rhizotomy in horses suffering from trigeminal-mediated headshaking. However, the clinical relevance of contrast agent distribution along the peripheral nerves remains to be assessed.

摘要

引言

马的三叉神经介导性摇头是一种疼痛性神经病变,类似于人类的三叉神经痛。在三叉神经节内选择性破坏痛觉纤维,即神经根切断术,是人类药物治疗无效的特发性三叉神经痛的首选手术治疗方法。人类三叉神经节被一个称为梅克尔腔或三叉神经腔的硬脑膜隐窝所包围,在该隐窝中,神经节被充满脑脊液(CSF)的蛛网膜下腔所环绕。在甘油神经根切断术中,甘油经皮注射到这个充满脑脊液的空间中。到目前为止,马的硬脑膜隐窝和三叉神经节周围蛛网膜下腔的解剖结构信息尚不完善。本研究的目的是探讨马的三叉神经节周围是否存在充满脑脊液的蛛网膜下腔。

材料与方法

使用3特斯拉磁共振成像(MRI)对6个马的尸体头部进行研究,以观察神经节周围的脑脊液积聚情况。在进行解剖暴露三叉神经根后,通过三叉神经孔将一种基于聚合物的不透射线造影剂注入蛛网膜下腔(脑池造影)。在随后的微型计算机断层扫描和分割中确定造影剂积聚的确切轮廓和体积。最后,对3个标本进行组织学检查,以观察造影剂在蛛网膜下腔内的分布情况。

结果

在本研究纳入的所有12个标本中,三叉神经节被一个形成三叉神经池的蛛网膜下腔所包围。本研究中三叉神经腔的平均体积为0.31毫升(±标准差:0.11毫升)。在12个标本中的7个标本中观察到造影剂沿周围神经(即眼神经、上颌神经和/或下颌神经)分布。

讨论/结论:马的三叉神经节周围存在蛛网膜下腔,对于患有三叉神经介导性摇头的马,该腔可作为甘油神经根切断术的靶点。然而,造影剂沿周围神经分布的临床相关性仍有待评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/135c/11291345/8b461816c2d5/fvets-11-1424890-g001.jpg

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