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用于触觉引导舌头控制的中脑顶盖图谱。

A collicular map for touch-guided tongue control.

作者信息

Ito Brendan S, Gao Yongjie, Kardon Brian, Goldberg Jesse H

机构信息

Department of Neurobiology and Behavior, Cornell University, Ithaca, NY, USA.

出版信息

Nature. 2025 Jan;637(8048):1143-1151. doi: 10.1038/s41586-024-08339-3. Epub 2025 Jan 1.

Abstract

Accurate goal-directed behaviour requires the sense of touch to be integrated with information about body position and ongoing motion. Behaviours such as chewing, swallowing and speech critically depend on precise tactile events on a rapidly moving tongue, but neural circuits for dynamic touch-guided tongue control are unknown. Here, using high-speed videography, we examined three-dimensional lingual kinematics as mice drank from a water spout that unexpectedly changed position during licking, requiring re-aiming in response to subtle contact events on the left, centre or right surface of the tongue. Mice integrated information about both precise touch events and tongue position to re-aim ensuing licks. Touch-guided re-aiming was unaffected by photoinactivation of tongue sensory, premotor and motor cortices, but was impaired by photoinactivation of the lateral superior colliculus (latSC). Electrophysiological recordings identified latSC neurons with mechanosensory receptive fields for precise touch events that were anchored in tongue-centred, head-centred or conjunctive reference frames. Notably, latSC neurons also encoded tongue position before contact, information that is important for tongue-to-head-based coordinate transformations underlying accurate touch-guided aiming. Viral tracing revealed tongue sensory inputs to the latSC from the lingual trigeminal nucleus, and optical microstimulation in the latSC revealed a topographic map for aiming licks. These findings demonstrate that touch-guided tongue control relies on a collicular mechanosensorimotor map, analogous to collicular visuomotor maps associated with visually guided orienting across many species.

摘要

准确的目标导向行为需要触觉与身体位置及正在进行的运动信息相整合。诸如咀嚼、吞咽和言语等行为严重依赖于快速移动的舌头发生的精确触觉事件,但动态触觉引导舌头控制的神经回路尚不清楚。在这里,我们使用高速摄像技术,研究了小鼠从一个在舔舐过程中意外改变位置的饮水口饮水时的三维舌部运动学,这要求小鼠根据舌头左、中或右表面的细微接触事件重新调整目标。小鼠整合了精确触觉事件和舌头位置的信息,以便重新调整随后的舔舐目标。触觉引导的重新调整目标不受舌感觉皮层、运动前皮层和运动皮层光灭活的影响,但外侧上丘(latSC)的光灭活会损害这一过程。电生理记录确定了latSC神经元具有用于精确触觉事件的机械感觉感受野,这些感受野以舌头为中心、头部为中心或联合参考系为锚定。值得注意的是,latSC神经元还在接触前对舌头位置进行编码,这一信息对于基于舌头到头部的坐标转换以实现准确的触觉引导目标瞄准很重要。病毒示踪显示从舌三叉神经核到latSC的舌感觉输入,并且在latSC中的光学微刺激揭示了一个用于瞄准舔舐的地形图。这些发现表明,触觉引导的舌头控制依赖于一个上丘机械感觉运动图谱,类似于许多物种中与视觉引导定向相关的上丘视觉运动图谱。

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