首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Recording Light-evoked Postsynaptic Responses in Neurons in Dark-adapted Mouse Retinal Slice Preparations Using Patch Clamp Techniques
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Recording Light-evoked Postsynaptic Responses in Neurons in Dark-adapted Mouse Retinal Slice Preparations Using Patch Clamp Techniques

机译:使用膜片钳技术记录暗适应的小鼠视网膜切片制剂中神经元的光诱发的突触后反应。

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摘要

The retina is the gateway to the visual system. To understand visual signal processing mechanisms, we investigate retinal neural network functions. Retinal neurons in the network comprise of numerous subtypes. More than 10 subtypes of bipolar cells, ganglion cells, and amacrine cells have been identified by morphological studies. Multiple subtypes of retinal neurons are thought to encode distinct features of visual signaling, such as motion and color, and form multiple neural pathways. However, the functional roles of each neuron in visual signal processing are not fully understood. The patch clamp method is useful to address this fundamental question. Here, a protocol to record light-evoked synaptic responses in mouse retinal neurons using patch clamp recordings in dark-adapted conditions is provided. The mouse eyes are dark-adapted O/N, and retinal slice preparations are dissected in a dark room using infrared illumination and viewers. Infrared light does not activate mouse photoreceptors and thus preserves their light responsiveness. Patch clamp is used to record light-evoked responses in retinal neurons. A fluorescent dye is injected during recordings to characterize neuronal morphological subtypes. This procedure enables us to determine the physiological functions of each neuron in the mouse retina.
机译:视网膜是通往视觉系统的门户。为了了解视觉信号处理机制,我们研究了视网膜神经网络功能。网络中的视网膜神经元包含许多亚型。通过形态学研究已经鉴定出超过十个亚型的双极细胞,神经节细胞和无长突细胞。视网膜神经元的多种亚型被认为可以编码视觉信号的独特特征,例如运动和颜色,并形成多种神经通路。但是,每个神经元在视觉信号处理中的功能作用尚不完全清楚。膜片钳方法对于解决这个基本问题很有用。在这里,提供了一种在黑暗适应条件下使用膜片钳记录来记录小鼠视网膜神经元中光诱发突触反应的协议。小鼠的眼睛适应黑暗的O / N,在黑暗的房间中使用红外照明和观察者解剖视网膜切片制剂。红外光不会激活鼠标感光器,因此保留了它们的光响应能力。膜片钳用于记录视网膜神经元中的光诱发反应。在录制过程中注入荧光染料以表征神经元形态亚型。此过程使我们能够确定小鼠视网膜中每个神经元的生理功能。

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