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首页> 外文期刊>The Journal of Physiology >Light-evoked current responses in rod bipolar cells, cone depolarizing bipolar cells and AII amacrine cells in dark-adapted mouse retina.
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Light-evoked current responses in rod bipolar cells, cone depolarizing bipolar cells and AII amacrine cells in dark-adapted mouse retina.

机译:暗适应小鼠视网膜中的杆状双极细胞,视锥细胞去极化双极细胞和AII紫水晶细胞中的光诱发电流反应。

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摘要

Light-evoked excitatory cation current (DeltaI(C)) and inhibitory chloride current (DeltaI(Cl)) of rod and cone depolarizing bipolar cells (DBC(R)s and DBC(C)s) and AII amacrine cells (AIIACs) in dark-adapted mouse retinal slices were studied by whole-cell voltage-clamp recording techniques, and the cell morphology was revealed by Lucifer yellow fluorescence with a confocal microscope. DeltaI(C) of all DBC(R)s exhibited similar high sensitivity to 500 nm light, but two patterns of DeltaI(Cl) were observed in DBC(R)s with slightly different axon morphology. At least two types of DBC(C)s were identified: one with axon terminals ramified in 70-85% of the depth of the inner plexiform layer (IPL) and DBC(R)-like DeltaI(C) sensitivity, whereas the other with axon terminals ramified in 55-75% of IPL depth and much lower DeltaI(C) sensitivity. The relative rod/cone inputs to DBCs and AIIACs were analysed by comparing the DeltaI(C) and DeltaI(Cl) thresholds and dynamic ranges with the corresponding values of rods and cones. On average, the sensitivity of a DBC(R) to the 500 nm light is about 20 times higher than that of a rod. The sensitivity of an AIIAC is more than 1000 times higher than that of a rod, suggesting that AIIAC responses are pooled through a coupled network of about 40 AIIACs. Interactions of rod and cone signals in dark-adapted mouse retina appear asymmetrical: rod signals spread into the cone system more efficiently than cone signals into the rod system. The mouse synaptic circuitry allows small rod signals to be highly amplified, and effectively transmitted to the cone system via rod-cone and AIIAC-DBC(C) coupling.
机译:杆和视锥细胞去极化双极细胞(DBC(R)和DBC(C))和AII紫胶细胞(AIIAC)的光诱发兴奋性阳离子电流(DeltaI(C))和抑制性氯化物电流(DeltaI(Cl))通过全细胞电压钳记录技术研究了暗适应的小鼠视网膜切片,并通过共聚焦显微镜通过路西法黄色荧光揭示了细胞形态。所有DBC(R)的DeltaI(C)对500 nm光表现出相似的高灵敏度,但是在轴突形态略有不同的DBC(R)中观察到了两种DeltaI(Cl)模式。至少鉴定出两种类型的DBC(C):一种具有在内部丛状层(IPL)的深度的70-85%内延伸的轴突末端和类似DBC(R)的DeltaI(C)敏感性,而另一种轴突末端的IPL深度为55-75%,而DeltaI(C)灵敏度则低得多。通过将DeltaI(C)和DeltaI(Cl)阈值以及动态范围与杆和圆锥的相应值进行比较,分析了DBC和AIIAC的相对杆/圆锥输入。平均而言,DBC(R)对500 nm光的敏感度比棒的敏感度高约20倍。 AIIAC的灵敏度比棒的灵敏度高1000倍以上,这表明AIIAC响应是通过约40个AIIAC的耦合网络汇集起来的。暗适应小鼠视网膜中视杆和视锥信号的相互作用似乎是不对称的:与视锥信号进入视杆系统相比,视杆信号更有效地传播到视锥系统中。鼠标突触电路允许小杆信号被高度放大,并通过杆锥和AIIAC-DBC(C)耦合有效地传输到锥体系统。

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