首页> 外文会议>International Conference on Neural Information Processing >Organization of inhibitory synaptic circuits in layer 4 of ferret visual cortex related to direction preference maps
【24h】

Organization of inhibitory synaptic circuits in layer 4 of ferret visual cortex related to direction preference maps

机译:与方向偏好图的雪貂视觉皮层第4层抑制突触电路组织

获取原文

摘要

Simple cells in layer 4 of the primary visual cortex are the first neurons in the visual pathway showing orientation and direction selective responses. The precise role of intracortical excitatory and inhibitory connections in generating these properties is still unclear. Intracortical inhibitory processes have been shown to be crucial to the generation of direction selective responses. In vivo, excitatory and inhibitory layer 4 cells differ in their receptive field properties: excitatory (regular spiking) neurons are orientation- and direction selective whereas inhibitory (fast spiking) neurons are orientation-, but poorly direction tuned. This difference in direction tuning could be due differences in intracortical inhibitory synaptic input patterns. To address this question we have optically recorded orientation and direction maps from ferret primary visual cortex. Subsequently the imaged brain region was removed and tangential slices prepared. Whole cell patch clamp recordings from individual layer 4 neurons were done and synaptic inputs were scanned by local photolysis of caged glutamate. Postsynaptic cells were filled with biocytin and histological sections were aligned with the synaptic input maps and the optical images obtained in vivo to determine the spatial distribution of presynaptic inputs. The majority (68 %) of excitatory inputs to both spiny (excitatory) and aspiny (inhibitory) stellate cells originated from cortical regions preferring the same orientation and direction as the postsynaptic cell. However the inhibitory input patterns were significantly different for the two cell populations: excitatory layer 4 cells received two populations of inhibitory inputs, about 50 % originated in iso-direction domains whereas the remaining inputs originated in cortical regions preferring the opposite direction of stimulus motion. This indicates that specific inhibitory connections originating in regions tuned to the opposite direction are important for direction tuning of cortical neurons and that differences in response properties in different populations of cortical neurons might be explained by their different intracortical connectivity patterns.
机译:主要视觉皮质层4中的简单细胞是视觉途径中的第一神经元,其显示取向和方向选择性反应。在产生这些性质时,肠内兴奋性和抑制性的确切作用仍然尚不清楚。已显示内部抑制过程对方向选择性反应的产生至关重要。在体内,兴奋性和抑制层4细胞的接受场特性不同:兴奋性(常规尖峰)神经元是取向和方向选择性的,而抑制(快速尖峰)神经元是取向的,但调谐的方向差。方向调谐的这种差异可能是由于内部抑制突触输入模式的差异。为了解决这个问题,我们有来自菲罗雷初级Visual Cortex的光学录制的方向和方向映射。随后取出成像脑区并制备切切切片。完成来自单层4个神经元的整个细胞贴片夹具,并通过局部光解的笼谷氨酸局部扫描突触输入。填充突触细胞填充生物霉素,组织学部分与突触输入映射对齐,并且在体内获得的光学图像以确定突触前输入的空间分布。大多数(68%)的兴奋性投入到源自皮质区域的多刺(兴奋性)和有天空(抑制)星状细胞的兴趣进入偏好与突触细胞相同的取向和方向。然而,对于两个细胞群,抑制性输入模式显着不同:兴奋剂层4细胞接受了两种抑制输入的群体,源于ISO方向域,而源于皮质区域的剩余输入较偏正刺激运动的相反方向。这表明,源自调谐到相反方向的区域的特定抑制连接对于皮质神经元的方向调整是重要的,并且通过其不同的内核连接模式可以解释不同群体的响应性质的响应性质的差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号