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Robo3cKO 小鼠初级躯体感觉皮层中的双侧胡须代表反映在初级运动皮层中。

Bilateral Whisker Representations in the Primary Somatosensory Cortex in Robo3cKO Mice Are Reflected in the Primary Motor Cortex.

机构信息

Department of Neurobiology, University of Maryland School of Medicine, 20 Penn St, HSF-2, Baltimore, MD 21201, USA.

The Zanvyl Krieger Mind/Brain Institute, The Johns Hopkins University, 3400 N. Charles Street, 338 Krieger Hall, Baltimore, MD 21218, USA.

出版信息

Neuroscience. 2024 Apr 19;544:128-137. doi: 10.1016/j.neuroscience.2024.02.031. Epub 2024 Mar 5.

DOI:10.1016/j.neuroscience.2024.02.031
PMID:38447690
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11146016/
Abstract

In Robo3cKO mice, midline crossing defects of the trigeminothalamic projections from the trigeminal principal sensory nucleus result in bilateral whisker maps in the somatosensory thalamus and consequently in the face representation area of the primary somatosensory (S1) cortex (Renier et al., 2017; Tsytsarev et al., 2017). We investigated whether this bilateral sensory representation in the whisker-barrel cortex is also reflected in the downstream projections from the S1 to the primary motor (M1) cortex. To label these projections, we injected anterograde viral axonal tracer in S1 cortex. Corticocortical projections from the S1 distribute to similar areas across the ipsilateral hemisphere in control and Robo3cKO mice. Namely, in both genotypes they extend to the M1, premotor/prefrontal cortex (PMPF), secondary somatosensory (S2) cortex. Next, we performed voltage-sensitive dye imaging (VSDi) in the left hemisphere following ipsilateral and contralateral single whisker stimulation. While controls showed only activation in the contralateral whisker barrel cortex and M1 cortex, the Robo3cKO mouse left hemisphere was activated bilaterally in both the barrel cortex and the M1 cortex. We conclude that the midline crossing defect of the trigeminothalamic projections leads to bilateral whisker representations not only in the thalamus and the S1 cortex but also downstream from the S1, in the M1 cortex.

摘要

在 Robo3cKO 小鼠中,三叉神经感觉主核向丘脑感觉中继核的三叉神经感觉投射的中线交叉缺陷导致体感丘脑双侧胡须图谱,进而导致初级体感(S1)皮层的面部代表区(Renier 等人,2017 年;Tsytsarev 等人,2017 年)。我们研究了这种胡须 - 桶状皮层中的双侧感觉表示是否也反映在 S1 向初级运动(M1)皮层的下游投射中。为了标记这些投射,我们在 S1 皮层中注射了顺行病毒轴突示踪剂。来自 S1 的皮质皮质投射在对照和 Robo3cKO 小鼠的同侧半球分布到相似的区域。即,在两种基因型中,它们延伸到 M1、运动前/前额叶皮层(PMPF)、次级体感(S2)皮层。接下来,我们在左侧半球进行了电压敏感染料成像(VSDi),分别在同侧和对侧单根胡须刺激后进行。虽然对照显示仅在对侧胡须桶状皮层和 M1 皮层中激活,但 Robo3cKO 小鼠左侧半球在桶状皮层和 M1 皮层中均双侧激活。我们得出的结论是,三叉神经感觉中继核的中线交叉缺陷导致双侧胡须表示不仅在丘脑和 S1 皮层中,而且在 S1 下游的 M1 皮层中也是如此。

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本文引用的文献

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Callosal inputs generate side-invariant receptive fields in the barrel cortex.胼胝体输入在桶状皮层中产生侧不变的感受野。
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