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顶盖前区损伤对无尾两栖类动物顶盖对视觉刺激反应的影响:场电位、单神经元及行为分析

Influence of pretectal lesions on tectal responses to visual stimulation in anurans: field potential, single neuron and behavior analyses.

作者信息

Ewert J P, Schürg-Pfeiffer E, Schwippert W W

机构信息

Abteilung Neurobiologie, Fachbereich Biologie/Chemie, Universität Kassel (GhK), Kassel, Germany.

出版信息

Acta Biol Hung. 1996;47(1-4):89-111.

PMID:9124015
Abstract

Investigating the fine structure of the anuran's optic tectum (OT), Székely and Lázár suggested that a focal tectal excitation would spread across the tectal network if there were no control by thalamic pretectal (TP) inhibitory influences. Disconnecting OT from TP by lancet lesions in toads, we show that visual prey-catching is hyperexcited and stimulus discrimination nearly abolished. Functional recovery exists. Micro-administration of the axon sparing excitotoxins kainic acid (KA) or ibotenic acid (IBO) confirm that the TP region is actually involved. Recordings from prey-selective tectal neurons in immobilized frogs reveal a KA-induced impairment of stimulus discrimination and an increase in spontaneous firing. Following TP-lesions, in freely moving toads a correlation is observed between any moving stimulus, enhanced neuron firing, and pray-catching. Tectal field potentials evoked by diffuse light on- and off-stimuli before and after administration of the conduction-blocking drug procaine (PRC) suggest that populations of tectal neurons are affected by pretectal inhibitory influences. Considering previous work on physiologically identified pretecto-tectal projection cells, three different kinds of pretecto-tectal influences are discussed. A working hypothesis suggests a loop by which striatal influences are controlling TP, thus gating and tuning the visual information processing in OT.

摘要

在研究无尾两栖类动物视顶盖(OT)的精细结构时,塞凯利和拉扎尔提出,如果没有丘脑前顶盖(TP)的抑制性影响进行控制,视顶盖的局部兴奋就会在顶盖网络中扩散。通过在蟾蜍身上进行柳叶刀损伤,使OT与TP断开连接,我们发现视觉捕食行为过度兴奋,刺激辨别能力几乎丧失。但存在功能恢复。微量注射轴突保留性兴奋性毒素 kainic 酸(KA)或鹅膏蕈氨酸(IBO)证实TP区域确实参与其中。对固定青蛙中猎物选择性视顶盖神经元的记录显示,KA会导致刺激辨别能力受损以及自发放电增加。在TP损伤后,在自由活动的蟾蜍中观察到,任何移动刺激、增强的神经元放电与捕食行为之间存在相关性。在施用传导阻断药物普鲁卡因(PRC)前后,由漫射光开和关刺激诱发的视顶盖场电位表明,视顶盖神经元群体受到前顶盖抑制性影响。考虑到之前关于生理学上已确定的前顶盖 - 视顶盖投射细胞的研究工作,讨论了三种不同类型的前顶盖 - 视顶盖影响。一个可行的假设提出了一个环路,通过该环路纹状体的影响控制着TP,从而调节和调整OT中的视觉信息处理。

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