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感觉证据在知觉决策中的树突整合。

Dendritic Integration of Sensory Evidence in Perceptual Decision-Making.

机构信息

Centre for Neural Circuits and Behaviour, University of Oxford, Tinsley Building, Mansfield Road, Oxford OX1 3SR, UK.

MRC Brain Network Dynamics Unit, University of Oxford, Mansfield Road, Oxford OX1 3TH, UK.

出版信息

Cell. 2018 May 3;173(4):894-905.e13. doi: 10.1016/j.cell.2018.03.075. Epub 2018 Apr 26.

Abstract

Perceptual decisions require the accumulation of sensory information to a response criterion. Most accounts of how the brain performs this process of temporal integration have focused on evolving patterns of spiking activity. We report that subthreshold changes in membrane voltage can represent accumulating evidence before a choice. αβ core Kenyon cells (αβ KCs) in the mushroom bodies of fruit flies integrate odor-evoked synaptic inputs to action potential threshold at timescales matching the speed of olfactory discrimination. The forkhead box P transcription factor (FoxP) sets neuronal integration and behavioral decision times by controlling the abundance of the voltage-gated potassium channel Shal (K4) in αβ KC dendrites. αβ KCs thus tailor, through a particular constellation of biophysical properties, the generic process of synaptic integration to the demands of sequential sampling.

摘要

感知决策需要将感官信息积累到一个反应标准。大多数关于大脑如何完成时间整合过程的解释都集中在不断发展的尖峰活动模式上。我们报告说,在做出选择之前,膜电压的亚阈值变化可以代表累积的证据。果蝇蘑菇体中的αβ 核心肯扬细胞 (αβ KCs) 将气味诱发的突触输入整合到动作电位阈值中,时间尺度与嗅觉辨别速度相匹配。叉头框 P 转录因子 (FoxP) 通过控制电压门控钾通道 Shal(K4)在 αβ KC 树突中的丰度来设置神经元整合和行为决策时间。因此,αβ KCs 通过特定的生物物理特性组合,将通用的突触整合过程调整为顺序采样的要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56c8/5947940/baab47770e6c/fx1.jpg

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