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Whisker-Mediated Touch System in Rodents: From Neuron to Behavior

机译:啮齿动物晶须介导的触摸系统:从神经元到行为

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摘要

A key question in systems neuroscience is to identify how sensory stimuli are represented in neuronal activity, and how the activity of sensory neurons in turn is “read out” by downstream neurons and give rise to behavior. The choice of a proper model system to address these questions, is therefore a crucial step. Over the past decade, the increasingly powerful array of experimental approaches that has become available in non-primate models (e.g., optogenetics and two-photon imaging) has spurred a renewed interest for the use of rodent models in systems neuroscience research. Here, I introduce the rodent whisker-mediated touch system as a structurally well-established and well-organized model system which, despite its simplicity, gives rise to complex behaviors. This system serves as a behaviorally efficient model system; known as nocturnal animals, along with their olfaction, rodents rely on their whisker-mediated touch system to collect information about their surrounding environment. Moreover, this system represents a well-studied circuitry with a somatotopic organization. At every stage of processing, one can identify anatomical and functional topographic maps of whiskers; “barrelettes” in the brainstem nuclei, “barreloids” in the sensory thalamus, and “barrels” in the cortex. This article provides a brief review on the basic anatomy and function of the whisker system in rodents.
机译:系统神经科学中的一个关键问题是确定感觉刺激如何在神经元活动中表示,以及感觉神经元的活动又如何被下游神经元“读出”并引起行为。因此,选择合适的模型系统来解决这些问题是至关重要的一步。在过去的十年中,非灵长类动物模型(例如光遗传学和双光子成像)中越来越多的实验方法变得越来越强大,这激发了人们对在系统神经科学研究中使用啮齿动物模型的兴趣。在这里,我将啮齿动物晶须介导的触摸系统作为一种结构完善,组织良好的模型系统进行介绍,尽管它具有简单性,但却会引起复杂的行为。该系统用作行为有效的模型系统;啮齿动物被称为夜间活动动物,除了嗅觉外,还依靠晶须介导的触摸系统来收集有关周围环境的信息。此外,该系统代表了经过精心研究的具有躯体组织的电路。在加工的每个阶段,都可以识别晶须的解剖和功能地形图。脑干核中的“ barrelettes”,感觉丘脑中的“ barreloids”和皮质中的“ barrels”。本文简要介绍了啮齿动物晶须系统的基本解剖结构和功能。

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