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中脑导水管周围灰质柱之间的局部连接:内在神经调节的一个实例

Local connections between the columns of the periaqueductal gray matter: a case for intrinsic neuromodulation.

作者信息

Jansen A S, Farkas E, Mac Sams J, Loewy A D

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Brain Res. 1998 Feb 16;784(1-2):329-36. doi: 10.1016/s0006-8993(97)01293-6.

Abstract

Chemical stimulation of the lateral or ventrolateral columns of the midbrain periaqueductal gray matter (PAG) in conscious animals produces opposite responses (viz., defensive behavior and pressor responses from the lateral column vs. quiescence and depressor responses from the ventrolateral column), raising the possibility that the two columns are interconnected. To test this hypothesis, two types of anatomical experiments were performed in rats. First, the anterograde axonal marker Phaseolus vulgaris leuco-agglutinin (PHA-L) was injected into individual PAG columns or adjoining regions which included the Edinger-Westphal, dorsal raphe, and precommissural nuclei. The results shows that each column projects bilaterally to all of the other PAG columns, and also provides local connections within its own column. Furthermore, the Edinger-Westphal and precommissural nuclei project to all four PAG columns, while the dorsal raphe nucleus projects only to the ventrolateral and lateral columns. In a second experiment, we found that cardiovascular-related PAG projection neurons of both the lateral and ventrolateral columns receive an input from the reciprocal PAG column. This was demonstrated by a double tracer neuroanatomical study in which PHA-L was first iontophoretically ejected into either the lateral or ventrolateral PAG columns and then, several days later the retrograde transneuronal viral tracer, pseudorabies virus, was injected into the stellate sympathetic ganglion. Intra-PAG circuits were visualized by a dual immunohistochemical procedure. These results suggest that during the fight-or-flight response when the 'fight' program is activated, inhibition of the 'flight' PAG network may occur and the converse situation may occur during the flight response.

摘要

在清醒动物中,对中脑导水管周围灰质(PAG)的外侧或腹外侧柱进行化学刺激会产生相反的反应(即,外侧柱引发防御行为和升压反应,而腹外侧柱则引发安静和降压反应),这增加了两个柱相互连接的可能性。为了验证这一假设,在大鼠身上进行了两种类型的解剖学实验。首先,将顺行轴突标记物菜豆白细胞凝集素(PHA-L)注入单个PAG柱或相邻区域,其中包括动眼神经核、中缝背核和连合前核。结果表明,每个柱都向双侧投射到所有其他PAG柱,并且在其自身柱内也提供局部连接。此外,动眼神经核和连合前核投射到所有四个PAG柱,而中缝背核仅投射到腹外侧柱和外侧柱。在第二个实验中,我们发现外侧柱和腹外侧柱中与心血管相关的PAG投射神经元都接受来自相对的PAG柱的输入。这是通过一项双示踪神经解剖学研究证明的,在该研究中,首先将PHA-L通过离子电渗法注入外侧或腹外侧PAG柱,然后在几天后将逆行跨神经元病毒示踪剂伪狂犬病病毒注入星状交感神经节。通过双重免疫组织化学程序观察PAG内的回路。这些结果表明,在“战斗或逃跑”反应中,当“战斗”程序被激活时,可能会发生对“逃跑”PAG网络的抑制,而在逃跑反应中可能会出现相反的情况。

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