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启动七鳃鳗幼体运动活动的高阶脑区的组织

Organization of higher-order brain areas that initiate locomotor activity in larval lamprey.

作者信息

Paggett K C, Jackson A W, McClellan A D

机构信息

Division of Biological Science and Interdisciplinary Neuroscience Program, 114 Lefevre Hall, University of Missouri, Columbia, MO 65211-6190, USA.

出版信息

Neuroscience. 2004;125(1):25-33. doi: 10.1016/j.neuroscience.2004.01.032.

Abstract

In the lamprey, spinal locomotor activity can be initiated by pharmacological microstimulation in several brain areas: rostrolateral rhombencephalon (RLR); dorsolateral mesencephalon (DLM); ventromedial diencephalon (VMD); and reticular nuclei. During DLM- or VMD-initiated locomotor activity in in vitro brain/spinal cord preparations, application of a solution that focally depressed neuronal activity in reticular nuclei often attenuated or abolished the locomotor rhythm. Electrical microstimulation in the DLM or VMD elicited synaptic responses in reticulospinal (RS) neurons, and close temporal stimulation in both areas evoked responses that summated and could elicit action potentials when neither input alone was sufficient. During RLR-initiated locomotor activity, focal application of a solution that depressed neuronal activity in the DLM or VMD abolished or attenuated the rhythm. These new results suggest that neurons in the RLR project rostrally to locomotor areas in the DLM and VMD. These latter areas then appear to project caudally to RS neurons, which probably integrate the synaptic inputs from both areas and activate the spinal locomotor networks. These pathways are likely to be important components of the brain neural networks for the initiation of locomotion and have parallels to locomotor command systems in higher vertebrates.

摘要

在七鳃鳗中,脊髓运动活动可通过对几个脑区进行药理学微刺激来启动:吻侧外侧后脑(RLR);背外侧中脑(DLM);腹内侧间脑(VMD);以及网状核。在体外脑/脊髓标本中,由DLM或VMD启动的运动活动期间,应用一种可局部抑制网状核神经元活动的溶液,通常会减弱或消除运动节律。对DLM或VMD进行电微刺激会在网状脊髓(RS)神经元中引发突触反应,并且在两个区域进行紧密的同步刺激会引发相加的反应,当单独任何一个输入都不足以引发动作电位时,这种相加反应可引发动作电位。在由RLR启动的运动活动期间,局部应用一种可抑制DLM或VMD中神经元活动的溶液会消除或减弱节律。这些新结果表明,RLR中的神经元向吻侧投射至DLM和VMD中的运动区域。而后,这些后一个区域似乎向尾侧投射至RS神经元,RS神经元可能整合来自这两个区域的突触输入并激活脊髓运动网络。这些通路可能是启动运动的脑神经网络的重要组成部分,并且与高等脊椎动物的运动指令系统相似。

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