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上丘神经元共同表征了快速扫视和运动。

Whisking and locomotion are jointly represented in superior colliculus neurons.

作者信息

Chinta Suma, Pluta Scott R

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana, United States of America.

出版信息

PLoS Biol. 2025 Apr 7;23(4):e3003087. doi: 10.1371/journal.pbio.3003087. eCollection 2025 Apr.

Abstract

Active sensation requires the brain to interpret external stimuli against an ongoing estimate of body position. While internal estimates of body position are often ascribed to the cerebral cortex, we examined the midbrain superior colliculus (SC), due to its close relationship with the sensory periphery as well as higher, motor-related brain regions. Using high-density electrophysiology and movement tracking, we discovered that the on-going kinematics of whisker motion and locomotion speed accurately predict the firing rate of mouse SC neurons. Neural activity was best predicted by movements occurring either in the past, present, or future, indicating that the SC population continuously estimates a trajectory of self-motion. A combined representation of slow and fast whisking features predicted absolute whisker angle at high temporal resolution. Sensory reafference played at least a partial role in shaping this feature tuning. Taken together, these data indicate that the SC contains a joint representation of whisking and locomotor features that is potentially useful in guiding complex orienting movements involving the face and limbs.

摘要

主动感觉需要大脑根据对身体位置的持续估计来解释外部刺激。虽然身体位置的内部估计通常归因于大脑皮层,但我们研究了中脑上丘(SC),因为它与感觉外周以及更高层次的、与运动相关的脑区关系密切。利用高密度电生理学和运动跟踪技术,我们发现触须运动和运动速度的持续运动学特征能够准确预测小鼠上丘神经元的放电频率。过去、现在或未来发生的运动对神经活动的预测效果最佳,这表明上丘群体不断估计自身运动轨迹。慢速和快速触须运动特征的组合表示能够在高时间分辨率下预测绝对触须角度。感觉再传入在塑造这种特征调谐中至少起到了部分作用。综上所述,这些数据表明上丘包含触须运动和运动特征的联合表示,这可能有助于指导涉及面部和四肢的复杂定向运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a0/12005515/ae44803d313e/pbio.3003087.g001.jpg

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