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上丘眼跳抑制的电路模型。

A circuit model for saccadic suppression in the superior colliculus.

机构信息

National Institute for Physiological Sciences, Okazaki 444-8585, Japan.

出版信息

J Neurosci. 2011 Feb 9;31(6):1949-54. doi: 10.1523/JNEUROSCI.2305-10.2011.

Abstract

Attenuation of visual activity in the superficial layers (SLs), stratum griseum superficiale and stratum opticum, of the superior colliculus during saccades may contribute to reducing perceptual blur during saccades and also may help prevent subsequent unwanted saccades. GABAergic neurons in the intermediate, premotor, layer (SGI), stratum griseum intermedium, send an inhibitory input to SL. This pathway provided the basis for a model proposing that the SGI premotor cells that project to brainstem gaze centers and discharge before saccades also activate neighboring GABAergic neurons that suppress saccade-induced visual activity in SL. The in vitro method allowed us to test this model. We made whole-cell patch-clamp recordings in collicular slices from either rats or GAD67-GFP knock-in mice, in which GABAergic neurons could be identified by their expression of green fluorescence protein (GFP). Antidromic electrical stimulation of SGI premotor cells was produced by applying pulse currents in which their axons congregate after exiting the superior colliculus. The stimulation evoked monosynaptic EPSCs in SGI GABAergic neurons that project to SL, as would be predicted if these neurons receive excitatory input from the premotor cells. Second, IPSCs were evoked in SL neurons, some of which project to the visual thalamus. These IPSCs were polysynaptically mediated by the GABAergic neurons that were excited by the antidromically activated SGI neurons. These results support the hypothesis that collaterals of premotor neuron axons excite GABAergic neurons that inhibit SL visuosensory cells.

摘要

在扫视期间,上丘浅层(SL)、外颗粒层和外光层的视觉活动减弱,可能有助于减少扫视期间的知觉模糊,也有助于防止随后出现不想要的扫视。中间、前运动层(SGI)、中间灰色层中的 GABA 能神经元对上丘 SL 层投射抑制性输入。这条通路为一个模型提供了基础,该模型提出,投射到脑干凝视中枢并在扫视前放电的 SGI 前运动细胞也会激活邻近的 GABA 能神经元,抑制 SL 中扫视诱导的视觉活动。体外方法使我们能够测试这个模型。我们在来自大鼠或 GAD67-GFP 敲入小鼠的丘脑中切片上进行全细胞膜片钳记录,其中 GABA 能神经元可以通过它们表达的绿色荧光蛋白(GFP)来识别。通过施加脉冲电流,在离开上丘后,SGI 前运动细胞的逆行电刺激产生,其轴突聚集。刺激在投射到 SL 的 SGI GABA 能神经元中诱发单突触 EPSC,这与这些神经元从前运动细胞接收兴奋性输入的预测一致。其次,在 SL 神经元中诱发 IPSC,其中一些投射到视觉丘脑。这些 IPSC 是由被逆行激活的 SGI 神经元兴奋的 GABA 能神经元通过多突触介导的。这些结果支持这样的假设,即前运动神经元轴突的侧支兴奋抑制 SL 视觉感觉细胞的 GABA 能神经元。

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