首页> 美国卫生研究院文献>The Journal of Neuroscience >Transgenic Mice Reveal Unexpected Diversity of On-Off Direction-Selective Retinal Ganglion Cell Subtypes and Brain Structures Involved in Motion Processing
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Transgenic Mice Reveal Unexpected Diversity of On-Off Direction-Selective Retinal Ganglion Cell Subtypes and Brain Structures Involved in Motion Processing

机译:转基因小鼠揭示了运动处理涉及的开关方向选择性视网膜神经节细胞亚型和脑结构的意外多样性。

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摘要

On-Off direction-selective retinal ganglion cells (DSGCs) encode the axis of visual motion. They respond strongly to an object moving in a preferred direction and weakly to an object moving in the opposite, “null,” direction. Historically, On-Off DSGCs were classified into four subtypes according to their directional preference (anterior, posterior, superior, or inferior). Here, we compare two genetically identified populations of On-Off DSGCs: dopamine receptor 4 (DRD4)-DSGCs and thyrotropin-releasing hormone receptor (TRHR)-DSGCs. We find that although both populations are tuned for posterior motion, they can be distinguished by a variety of physiological and anatomical criteria. First, the directional tuning of TRHR-DSGCs is broader than that of DRD4-DSGCs. Second, whereas both populations project similarly to the dorsal lateral geniculate nucleus, they project differently to the ventral lateral geniculate nucleus and the superior colliculus. Moreover, TRHR-DSGCs, but not DRD4-DSGCs, also project to the zona incerta, a thalamic area not previously known to receive direction-tuned visual information. Our findings reveal unexpected diversity among mouse On-Off DSGC subtypes that uniquely process and convey image motion to the brain.
机译:开-关方向选择性视网膜神经节细胞(DSGC)编码视觉运动的轴。它们对沿首选方向移动的对象有强烈反应,而对相反的“空”方向移动的对象则无力响应。历史上,开-关DSGC根据其方向偏好(前,后,上或下)分为四个亚型。在这里,我们比较了两个通过基因鉴定的On-Off DSGC种群:多巴胺受体4(DRD4)-DSGC和促甲状腺激素释放激素受体(TRHR)-DSGC。我们发现,尽管两个种群都针对后运动进行了调整,但是可以通过各种生理和解剖学标准来区分它们。首先,TRHR-DSGC的定向调谐比DRD4-DSGC的定向调谐要宽。其次,虽然两个种群的投射方式与背外侧膝状体核相似,但它们的投射方式与腹侧外侧膝状体核和上丘不同。此外,TRHR-DSGC(而不是DRD4-DSGC)也投射到不透明带,这是以前未知的丘脑区域,无法接收方向调整后的视觉信息。我们的研究结果揭示了老鼠On-Off DSGC亚型之间意想不到的多样性,这些亚型独特地处理并将图像运动传递到大脑。

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