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脑膜传入神经的颅外投射及其对脑膜痛觉和头痛的影响。

Extracranial projections of meningeal afferents and their impact on meningeal nociception and headache.

机构信息

Institute of Physiology and Pathophysiology, Friedrich-Alexander University Erlangen-Nürnberg, Erlangen D-91054, Germany Department of Nephrology and Hypertensiology, Friedrich-Alexander University Erlangen-Nürnberg, Erlangen D-91054, Germany Department of Physiology, University of Szeged, Szeged H-6720, Hungary Institute of Anatomy, Friedrich-Alexander University Erlangen-Nürnberg, Erlangen D-91054, Germany Department of Anaesthesiology and Operative Intensive Care, Faculty of Clinical Medicine Mannheim, University of Heidelberg, Mannheim D-68167, Germany.

出版信息

Pain. 2013 Sep;154(9):1622-1631. doi: 10.1016/j.pain.2013.04.040. Epub 2013 Apr 27.

Abstract

Headaches can be evoked by activation of meningeal nociceptors, but an involvement of pericranial tissues is debated. We aimed to examine a possible extracranial innervation by meningeal afferents in the rat. For in vivo neuronal tracing, dextran amines were applied to the periosteum underlying the temporal muscle. Labeling was observed 2 days later in the parietal dura mater, trigeminal ganglion, and spinal trigeminal nucleus with confocal and electron microscopy. In the hemisected rat head, extracellular recordings were made from meningeal nerve fibers. Release of calcitonin gene-related peptide (CGRP) from the cranial dura mater during noxious stimulation of pericranial muscles was quantified. In vivo capsaicin was injected into the temporal muscle while meningeal blood flow was recorded. In the parietal dura mater, labeled C- and Aδ fibers ramified extensively, accompanied the middle meningeal artery, and passed through the spinosus nerve into the maxillary and mandibular, but not the ophthalmic division of the trigeminal ganglion. Some fibers could be traced into the ipsilateral spinal trigeminal nucleus. Electrophysiological recordings revealed afferent fibers with mechanosensitive receptive fields both in the dura mater and in the parietal periosteum. Noxious stimulation of the temporal muscle caused CGRP release from the dura mater and elevated meningeal blood flow. Collaterals of meningeal nerve fibers project through the skull, forming functional connections between extra- and intracranial tissues. This finding offers a new explanation of how noxious stimulation of pericranial tissues can directly influence meningeal nociception associated with headache generation and why manual therapies of pericranial muscles may be useful in headaches.

摘要

头痛可由脑膜伤害感受器激活引起,但颅周组织的参与仍存在争议。我们旨在研究脑膜传入纤维在大鼠中是否存在可能的颅外神经支配。为了进行体内神经元追踪,将葡聚糖胺应用于颞肌下方的骨膜。在 2 天后,通过共聚焦和电子显微镜观察到标记物出现在顶骨硬脑膜、三叉神经节和三叉神经脊束核中。在半切大鼠头部,对脑膜神经纤维进行了细胞外记录。在颅周肌肉有害刺激期间,从颅骨硬脑膜中定量释放降钙素基因相关肽 (CGRP)。在将辣椒素注入颞肌的同时,记录脑膜血流。在顶骨硬脑膜中,标记的 C 和 Aδ纤维广泛分支,伴随脑膜中动脉,并通过棘神经进入上颌和下颌分支,但不进入三叉神经节的眼分支。一些纤维可以追踪到同侧三叉神经脊束核。电生理记录显示,在硬脑膜和顶骨骨膜中都有机械敏感感受野的传入纤维。颞肌的有害刺激会引起硬脑膜中 CGRP 的释放,并增加脑膜血流。脑膜神经纤维的侧支通过颅骨投射,在颅内和颅外组织之间形成功能性连接。这一发现为颅周组织的有害刺激如何能直接影响与头痛发生相关的脑膜伤害感受提供了新的解释,也解释了为什么颅周肌肉的手法治疗在头痛中可能有用。

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