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猫外侧膝状体和膝周核中神经元活动的皮质调制

Cortical modulation of neuronal activity in the cat's lateral geniculate and perigeniculate nuclei.

作者信息

Waleszczyk Wioletta J, Bekisz Marek, Wróbel Andrzej

机构信息

Department of Neurophysiology, Nencki Institute of Experimental Biology, 3 Pasteur St., 02-093 Warsaw, Poland.

出版信息

Exp Neurol. 2005 Nov;196(1):54-72. doi: 10.1016/j.expneurol.2005.07.006. Epub 2005 Aug 8.

Abstract

The cortico-thalamic influence on spontaneous and visually evoked activity of single cells in the dorsal lateral geniculate (LGN) and perigeniculate (PGN) nuclei were examined in unanesthetized cats with pretrigeminal brainstem transections by means of reversible cooling of cortical areas 17 and 18. The spatio-temporal characteristic of cells' RFs was tested with light spot randomly presented at different points along the receptive field axis. The cessation of cortical input decreased spontaneous activity of most of the LGN cells (64%; as compared to 36% with increased background firing). Similarly, their visually evoked responses were reduced (70% cells; compared to 24% with increased response) and extent of central excitatory domains diminished. In contrast, the majority of PGN neurons increased their spontaneous activity (62%; compared to 38% with decreased firing rate). Cortical cooling resulted also in a decrease of the ON and OFF central responses of most PGN cells (55%; as compared to 20% with increased responses). The described effects were more pronounced within the population of cells in X than in Y pathway. Although the removal of descending cortical excitation disturbed the balance of activity within the network of thalamic cells the gain of the geniculate relay was preserved. We conclude that the main role exerted by the cortico-thalamic pathway serves facilitation of the ascending retino-cortical flow of visual information at the level of lateral geniculate nucleus.

摘要

通过可逆性冷却皮层17区和18区,在未麻醉的、已横断三叉神经前脑干的猫中,研究了皮质-丘脑对背外侧膝状体(LGN)和膝状体周核(PGN)中单个细胞的自发活动和视觉诱发活动的影响。利用沿感受野轴在不同点随机呈现的光点测试细胞感受野的时空特征。皮质输入的停止降低了大多数LGN细胞的自发活动(64%;相比之下,背景放电增加的情况为36%)。同样,它们的视觉诱发反应也降低了(70%的细胞;相比之下,反应增加的情况为24%),并且中央兴奋域的范围减小。相反,大多数PGN神经元增加了它们自身的活动(62%;相比之下,放电率降低的情况为38%)。皮质冷却还导致大多数PGN细胞的开和关中央反应降低(55%;相比之下,反应增加的情况为20%)。所描述的效应在X通路的细胞群体中比在Y通路中更明显。虽然去除下行皮质兴奋扰乱了丘脑细胞网络内的活动平衡,但膝状体中继的增益得以保留。我们得出结论,皮质-丘脑通路发挥的主要作用是在外侧膝状体核水平促进视觉信息的上行视网膜-皮质信息流。

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