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成年七鳃鳗(Lampetra fluviatilis)中参与运动起始的网状脊髓神经元的间脑投射

Diencephalic projection to reticulospinal neurons involved in the initiation of locomotion in adult lampreys Lampetra fluviatilis.

作者信息

El Manira A, Pombal M A, Grillner S

机构信息

Department of Neuroscience, The Nobel Institute for Neurophysiology, Karolinska Institutet, Stockholm, Sweden.

出版信息

J Comp Neurol. 1997 Dec 29;389(4):603-16.

PMID:9421142
Abstract

Morphological and electrophysiological techniques were used to characterize a diencephalic projection from the ventral thalamus to reticulospinal neurons and its role in initiating rhythmic locomotor activity in the spinal cord of adult lampreys (Lampetra fluviatilis). Injection of fluorescein-coupled dextran amine (FDA) into the rhombencephalic reticular nuclei labeled neurons in the ventral thalamus region on both the ipsilateral side and the contralateral side. Injection of FDA into the ventral thalamus labeled axonal projections in all reticular nuclei, but no direct projections were found to the spinal cord. Extracellular stimulation of the ventral thalamus elicited monosynaptic excitatory postsynaptic potentials (EPSPs), polysynaptic EPSPs, and inhibitory postsynaptic potentials (IPSPs) in reticulospinal neurons in the posterior (prrn) and middle (mrrn) rhombencephalic reticular nuclei. The monosynaptic EPSPs were blocked by the glutamate antagonist kynurenic acid and can be considered glutamatergic. The monosynaptic EPSPs were potentiated (up to 12 minutes) following a brief high-frequency stimulation. Stimulation of the ventral thalamus induced rhythmic firing of reticulospinal neurons and elicited rhythmic burst activity in the spinal ventral roots. The projections from the ventral thalamus to the reticulospinal neurons in the prrn and mrrn thus provide excitatory inputs to the reticulospinal neurons, which, in turn, can activate the spinal circuits underlying locomotion. Also, the input nuclei to the ventral thalamus were labeled following injection of FDA into this nucleus. Labeled cells were found in the olfactory bulb, pallial areas, striatum, preoptic nucleus, hypothalamus, dorsal thalamus, optic tectum, and dorsal isthmic gray. The ventral thalamus, therefore, receives inputs from several different regions in the brain and controls the level of excitability in reticulospinal neurons.

摘要

运用形态学和电生理学技术,对成年七鳃鳗(Lampetra fluviatilis)脊髓中从腹侧丘脑到网状脊髓神经元的间脑投射及其在启动节律性运动活动中的作用进行了表征。将荧光素偶联葡聚糖胺(FDA)注入后脑网状核,标记了同侧和对侧腹侧丘脑区域的神经元。将FDA注入腹侧丘脑,标记了所有网状核中的轴突投射,但未发现有直接投射到脊髓的情况。对腹侧丘脑进行细胞外刺激,在后脑网状核后部(prrn)和中部(mrrn)的网状脊髓神经元中引发了单突触兴奋性突触后电位(EPSP)、多突触EPSP和抑制性突触后电位(IPSP)。单突触EPSP被谷氨酸拮抗剂犬尿喹啉酸阻断,可认为是谷氨酸能的。短暂高频刺激后,单突触EPSP增强(长达12分钟)。刺激腹侧丘脑诱导网状脊髓神经元产生节律性放电,并在后根腹侧引发节律性爆发活动。因此,从腹侧丘脑到prrn和mrrn中网状脊髓神经元的投射为网状脊髓神经元提供了兴奋性输入,进而可以激活运动的脊髓回路。此外,将FDA注入腹侧丘脑后,标记了该核的输入核。在嗅球、大脑皮质区域、纹状体、视前核、下丘脑、背侧丘脑、视顶盖和背侧峡部灰质中发现了标记细胞。因此,腹侧丘脑接收来自大脑几个不同区域的输入,并控制网状脊髓神经元的兴奋性水平。

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