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通过内侧前脑束投射到内侧视前区/下丘脑前部的延髓腹外侧神经元:大鼠的电生理研究

Ventrolateral medullary neurons projecting to the medial preoptic/anterior hypothalamic area through the medial forebrain bundle: an electrophysiological study in the rat.

作者信息

Kaba H, Saito H, Otsuka K, Seto K

出版信息

Exp Brain Res. 1986;63(2):369-74. doi: 10.1007/BF00236854.

DOI:10.1007/BF00236854
PMID:3489639
Abstract

A total of 152 ventrolateral medullary neurons was antidromically stimulated from both the medial preoptic/anterior hypothalamic area (MPOAH) and the medial forebrain bundle (MFB) in urethane anesthetized rats. These neurons were located primarily dorsal to the lateral reticular nucleus and could be readily classified in at least two groups, type I and type II cells on the basis of electrophysiological properties. The action potentials of type I cells had a shorter duration, and their conduction velocities ranged from 0.45 to 3.1 m/s. By contrast, type II cells, most predominantly observed, were characterized by a longer duration and an unusual shape of their action potential, and the antidromic propagation into the somatodendritic complex was often blocked. The conduction velocity (mean = 0.21 m/s) and absolute refractory period (mean = 2.63 ms) of type II cells are consistent with them having fine non-myelinated axons. Injection of 6-hydroxydopamine (6-OHDA), but not 5,7-dihydroxytryptamine, directly into the MFB blocked antidromic responses of 57% of type II cells tested. The residual type II cells whose antidromic responses were not affected by 6-OHDA were located significantly rostral to the 6-OHDA sensitive cells. Neither antidromic response of type I cells tested, on the other hand, was affected by 6-OHDA. The majority of type I cells were dramatically activated by noxious pinches of the tail, whereas the noxious stimuli produced no detectable change in the firing of type II cells. These data demonstrate that ventrolateral medullary neurons projecting to the MPOAH through the MFB are comprised of at least three distinct populations: 6-OHDA resistant fast conducting cells with somatic afferents, 6-OHDA sensitive and resistant slow conducting cells.

摘要

在乌拉坦麻醉的大鼠中,从内侧视前区/下丘脑前区(MPOAH)和内侧前脑束(MFB)对总共152个延髓腹外侧神经元进行了逆向刺激。这些神经元主要位于外侧网状核的背侧,根据电生理特性可轻易分为至少两组,即I型和II型细胞。I型细胞的动作电位持续时间较短,其传导速度范围为0.45至3.1米/秒。相比之下,最常见的II型细胞的特征是动作电位持续时间较长且形状异常,并且逆向传入树突复合体的过程经常受阻。II型细胞的传导速度(平均=0.21米/秒)和绝对不应期(平均=2.63毫秒)与它们具有细的无髓轴突一致。直接向MFB注射6-羟基多巴胺(6-OHDA),而非5,7-二羟基色胺,可阻断57%受试II型细胞的逆向反应。其逆向反应不受6-OHDA影响的残余II型细胞位于比6-OHDA敏感细胞更靠前的位置。另一方面,受试I型细胞的逆向反应均不受6-OHDA影响。大多数I型细胞在尾部受到有害挤压时会被显著激活,而有害刺激对II型细胞的放电没有可检测到的影响。这些数据表明,通过MFB投射到MPOAH的延髓腹外侧神经元至少由三个不同的群体组成:具有躯体传入的6-OHDA抗性快速传导细胞、6-OHDA敏感和抗性的慢速传导细胞。

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