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上丘在定向运动中作用的光遗传学研究

Optogenetic investigation of the role of the superior colliculus in orienting movements.

作者信息

Stubblefield Elizabeth A, Costabile Jamie D, Felsen Gidon

机构信息

Department of Physiology and Biophysics, University of Colorado School of Medicine, USA.

出版信息

Behav Brain Res. 2013 Oct 15;255:55-63. doi: 10.1016/j.bbr.2013.04.040. Epub 2013 May 1.

Abstract

In vivo studies have demonstrated that the superior colliculus (SC) integrates sensory information and plays a role in controlling orienting motor output. However, how the complex microcircuitry within the SC, as documented by slice studies, subserves these functions is unclear. Optogenetics affords the potential to examine, in behaving animals, the functional roles of specific neuron types that comprise heterogeneous nuclei. As a first step toward understanding how SC microcircuitry underlies motor output, we applied optogenetics to mice performing an odor discrimination task in which sensory decisions are reported by either a leftward or rightward SC-dependent orienting movement. We unilaterally expressed either channelrhodopsin-2 or halorhodopsin in the SC and delivered light in order to excite or inhibit motor-related SC activity as the movement was planned. We found that manipulating SC activity predictably affected the direction of the selected movement in a manner that depended on the difficulty of the odor discrimination. This study demonstrates that the SC plays a similar role in directional orienting movements in mice as it does in other species, and provides a framework for future investigations into how specific SC cell types contribute to motor control.

摘要

体内研究表明,上丘(SC)整合感觉信息并在控制定向运动输出中发挥作用。然而,切片研究记录的SC内复杂的微电路如何实现这些功能尚不清楚。光遗传学为在行为动物中研究构成异质核的特定神经元类型的功能作用提供了可能。作为理解SC微电路如何构成运动输出基础的第一步,我们将光遗传学应用于执行气味辨别任务的小鼠,在该任务中,感觉决策通过向左或向右的依赖于SC的定向运动来报告。我们在SC中单侧表达通道视紫红质-2或嗜盐视紫红质,并在计划运动时发出光以激发或抑制与运动相关的SC活动。我们发现,操纵SC活动可预测地影响所选运动的方向,其方式取决于气味辨别的难度。这项研究表明,SC在小鼠的定向运动中发挥着与其他物种类似的作用,并为未来研究特定SC细胞类型如何对运动控制做出贡献提供了框架。

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