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VPM 和 POm 丘脑神经元共同编码头部和胡须运动。

Co-coding of head and whisker movements by both VPM and POm thalamic neurons.

机构信息

Department of Brain Sciences, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Nat Commun. 2024 Jul 13;15(1):5883. doi: 10.1038/s41467-024-50039-z.

Abstract

Rodents continuously move their heads and whiskers in a coordinated manner while perceiving objects through whisker-touch. Studies in head-fixed rodents showed that the ventroposterior medial (VPM) and posterior medial (POm) thalamic nuclei code for whisker kinematics, with POm involvement reduced in awake animals. To examine VPM and POm involvement in coding head and whisker kinematics in awake, head-free conditions, we recorded thalamic neuronal activity and tracked head and whisker movements in male mice exploring an open arena. Using optogenetic tagging, we found that in freely moving mice, both nuclei equally coded whisker kinematics and robustly coded head kinematics. The fraction of neurons coding head kinematics increased after whisker trimming, ruling out whisker-mediated coding. Optogenetic activation of thalamic neurons evoked overt kinematic changes and increased the fraction of neurons leading changes in head kinematics. Our data suggest that VPM and POm integrate head and whisker information and can influence head kinematics during tactile perception.

摘要

啮齿动物在通过触须感知物体时,会持续协调地移动头部和触须。在头部固定的啮齿动物研究中,发现腹后内侧(VPM)和后内侧(POm)丘脑核编码触须运动学,而在清醒动物中,POm 的参与减少。为了研究在清醒、无头部固定条件下 VPM 和 POm 在编码头部和触须运动学中的作用,我们在雄性小鼠探索开放竞技场时记录了丘脑神经元的活动并跟踪了头部和触须的运动。使用光遗传学标记,我们发现,在自由活动的小鼠中,这两个核同样编码触须运动学,并且强烈编码头部运动学。在修剪触须后,编码头部运动学的神经元比例增加,排除了触须介导的编码。光遗传学激活丘脑神经元会引起明显的运动学变化,并增加导致头部运动学变化的神经元比例。我们的数据表明,VPM 和 POm 整合头部和触须信息,并在触觉感知过程中影响头部运动学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9582/11246487/a22b9192b49c/41467_2024_50039_Fig1_HTML.jpg

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