首页> 外文期刊>The Journal of Physiology >Identification of ON-OFF direction-selective ganglion cells in the mouse retina.
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Identification of ON-OFF direction-selective ganglion cells in the mouse retina.

机译:小鼠视网膜中ON-OFF方向选择性神经节细胞的鉴定。

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We identified the ON-OFF direction-selective ganglion cells (DSGCs) in the mouse retina and characterized their physiological, morphological and pharmacological properties. These cells showed transient responses to the onset and termination of a stationary flashing spot, and strong directional selectivity to a moving rectangle. Application of various pharmacological reagents demonstrated that the ON-OFF DSGCs in the mouse retina utilize a similar array of transmitters and receptors to compute motion direction to their counterparts in the rabbit retina. Voltage clamp recording showed that ON-OFF DSGCs in the mouse retina receive a larger inhibitory input when the stimulus is moving in the null direction and a larger excitatory input when the stimulus is moving in the preferred direction. Finally, intracellular infusion of neurobiotin revealed a bistratified dendritic field with recursive dendrites forming loop-like structures, previously classified as RG(D2) by morphology. Overall, the ON-OFF DSGCs in the mouse retina exhibit almost identical properties to their counterparts in the rabbit retina, indicating that the mechanisms for computing motion direction are conserved from mouse to rabbit, and probably also to higher mammals. This first detailed characterization of ON-OFF DSGCs in the mouse retina provides fundamental information for further study of maturation and regulation of the neuronal circuitry underlying computation of direction.
机译:我们确定了小鼠视网膜中的开-关方向选择性神经节细胞(DSGCs),并表征了它们的生理,形态和药理特性。这些单元格显示出对固定闪烁点的开始和终止的瞬态响应,以及对移动矩形的强烈方向选择性。各种药理学试剂的应用表明,小鼠视网膜中的ON-OFF DSGC利用类似的发射器和受体阵列来计算与兔视网膜中对应物的运动方向。电压钳记录显示,当刺激沿无效方向移动时,鼠标视网膜中的ON-OFF DSGC接收较大的抑制输入,而当刺激沿优选方向移动时,其接收的兴奋性输入较大。最终,神经生物素的细胞内输注显示了一个双分层的树突区域,其中递归的树突形成了环状结构,先前被形态学分类为RG(D2)。总体而言,小鼠视网膜中的ON-OFF DSGC与兔子视网膜中的DSGC具有几乎相同的特性,这表明从小鼠到兔子,甚至到更高的哺乳动物,都保留了用于计算运动方向的机制。老鼠视网膜中ON-OFF DSGC的第一个详细表征为进一步研究方向计算基础的神经元回路的成熟和调节提供了基础信息。

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