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顶树突和基底树突对小鼠 V1 L2/3 锥体神经元方向编码的贡献。

Contribution of apical and basal dendrites to orientation encoding in mouse V1 L2/3 pyramidal neurons.

机构信息

Brigham and Women's Hospital and Jamaica Plain VA Hospital, Harvard Medical School, Boston, MA, USA.

Program in Structural and Computational Biology and Molecular Biophysics, Baylor College of Medicine, Houston, TX, USA.

出版信息

Nat Commun. 2019 Nov 26;10(1):5372. doi: 10.1038/s41467-019-13029-0.

Abstract

Pyramidal neurons integrate synaptic inputs from basal and apical dendrites to generate stimulus-specific responses. It has been proposed that feed-forward inputs to basal dendrites drive a neuron's stimulus preference, while feedback inputs to apical dendrites sharpen selectivity. However, how a neuron's dendritic domains relate to its functional selectivity has not been demonstrated experimentally. We performed 2-photon dendritic micro-dissection on layer-2/3 pyramidal neurons in mouse primary visual cortex. We found that removing the apical dendritic tuft did not alter orientation-tuning. Furthermore, orientation-tuning curves were remarkably robust to the removal of basal dendrites: ablation of 2 basal dendrites was needed to cause a small shift in orientation preference, without significantly altering tuning width. Computational modeling corroborated our results and put limits on how orientation preferences among basal dendrites differ in order to reproduce the post-ablation data. In conclusion, neuronal orientation-tuning appears remarkably robust to loss of dendritic input.

摘要

锥体神经元整合来自基底和顶树突的突触输入,以产生具有刺激特异性的反应。有人提出,基底树突的前馈输入驱动神经元的刺激偏好,而顶树突的反馈输入则使选择性更加尖锐。然而,神经元的树突域与其功能选择性之间的关系尚未在实验中得到证明。我们在小鼠初级视觉皮层的第 2/3 层锥体神经元上进行了双光子树突微切割。我们发现,去除顶树突簇不会改变朝向调谐。此外,朝向调谐曲线对去除基底树突具有很强的鲁棒性:需要去除 2 个基底树突才能导致朝向偏好发生小的偏移,而不会显著改变调谐宽度。计算模型证实了我们的结果,并限制了基底树突之间的朝向偏好如何不同,以再现消融后的数据。总之,神经元的朝向调谐对树突输入的丧失表现出很强的鲁棒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2139/6879601/48a7ef99d599/41467_2019_13029_Fig1_HTML.jpg

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