首页> 外文会议>Basic and Clinical Ocular Motor and Vestibular Research: A Tribute to R. John Leigh >Circuit dynamics of the superior colliculus revealed by in vitro voltage imaging
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Circuit dynamics of the superior colliculus revealed by in vitro voltage imaging

机译:通过体外电压成像显示出优质小集的电路动力学

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The superior colliculus (SC) is well known for its involvement in the conversion of sensory stimuli into motor commands. This sensorimotor integration is made possible by the collective activity of multiple neuronal connections throughout the SC. Still, the majority of SC research focuses on in vivo extracellular recordings of behaving monkeys or in vitro patch-clamp recordings from lower mammals. Here, we discuss the results of an in vitro voltage-imaging technique in which population activity across the rodent SC circuitry was visualized to bridge the gap between single-cell recordings and whole-animal behavior. The high temporal and spatial resolution of the voltage-imaging technique allowed us to visualize patterns of activity following stimulation at discrete laminae. Stimulation within either the superficial or intermediate layer showed recruitment of disparate SC circuitry. These results provide insight into the circuit dynamics and neuronal populations that underlie behavior.
机译:优越的小集(SC)众所周知,其参与感应刺激转化为电动机命令。通过整个SC的多个神经元连接的集体活动,可以实现这种感觉电流集成。尽管如此,大多数SC研究侧重于表现猴子的体内细胞外记录,或者来自下哺乳动物的体外贴片夹具。这里,我们讨论了体外电压成像技术的结果,其中可视化啮齿动物SC电路的群体活动以弥合单细胞记录和全动物行为之间的差距。电压成像技术的高时间和空间分辨率使我们能够在离散薄层处刺激刺激后的活动模式。浅表或中间层内的刺激显示出不同SC电路的招募。这些结果提供了深入行为的电路动态和神经元群体的洞察力。

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