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深部和浅部伤害性刺激可增加大鼠中脑导水管周围灰质不同区域的Fos样免疫反应性。

Deep and superficial noxious stimulation increases Fos-like immunoreactivity in different regions of the midbrain periaqueductal grey of the rat.

作者信息

Keay K A, Bandler R

机构信息

Department of Anatomy and Histology, University of Sydney, NSW, Australia.

出版信息

Neurosci Lett. 1993 May 14;154(1-2):23-6. doi: 10.1016/0304-3940(93)90162-e.

Abstract

UNLABELLED

We have reported that the lateral region of the caudal third of the midbrain periaqueductal grey (PAG), which mediates flight and hypertension, receives inputs from lamina I and IIo and the lateral cervical nucleus (LCN) of the upper cervical spinal cord (UCC); whereas the ventrolateral PAG region, which mediates hypotension, quiescence and immobility, is targeted by cells in laminae VII, VIII and X. In the UCC the cells of laminae VII and VIII receive a significant afferent input from the deep neck muscles, whereas cells of laminae I and IIo and the LCN receive a large input from cutaneous nociceptors. Thus we investigated the hypothesis that nociceptive activation of the deep neck muscles would activate the spinal-ventrolateral PAG projection, whereas cutaneous nociceptive stimulation would activate the spinal-lateral PAG projection, by examining the expression of Fos protein. We found that deep noxious stimulation led to Fos-positive cells predominantly in the ventrolateral PAG and superficial noxious stimulation led to Fos-positive cells predominantly in the lateral PAG.

THE RESULTS

(i) indicate that the UCC afferent regulation of the PAG arises from topographically separable and functionally dissociable populations of neurons and (ii) raise the possibility that the ventrolateral and lateral PAG play important but different roles in mediating the distinctive affective, emotional and autonomic responses evoked by pain arising from deep or superficial structures.

摘要

未标记

我们曾报道,中脑导水管周围灰质(PAG)尾端三分之一的外侧区域介导逃跑和高血压,它接收来自I层和IIo层以及上颈髓(UCC)的外侧颈核(LCN)的输入;而介导低血压、安静和不动的腹外侧PAG区域则受到VII、VIII和X层细胞的靶向作用。在UCC中,VII层和VIII层的细胞接收来自颈部深层肌肉的大量传入输入,而I层和IIo层以及LCN的细胞则接收来自皮肤伤害感受器的大量输入。因此,我们通过检测Fos蛋白的表达来研究以下假设:颈部深层肌肉的伤害性激活会激活脊髓 - 腹外侧PAG投射,而皮肤伤害性刺激会激活脊髓 - 外侧PAG投射。我们发现,深部伤害性刺激主要导致腹外侧PAG中出现Fos阳性细胞,而浅表伤害性刺激主要导致外侧PAG中出现Fos阳性细胞。

结果

(i)表明UCC对PAG的传入调节源自神经元在拓扑结构上可分离且功能上可解离的群体,并且(ii)增加了以下可能性,即腹外侧和外侧PAG在介导由深部或浅表结构疼痛引起的独特情感、情绪和自主反应中发挥重要但不同的作用。

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