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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >VIBRISSA SENSORY NEURONS: LINKING DISTINCT MORPHOLOGY TO SPECIFIC PHYSIOLOGY AND FUNCTION
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VIBRISSA SENSORY NEURONS: LINKING DISTINCT MORPHOLOGY TO SPECIFIC PHYSIOLOGY AND FUNCTION

机译:Vibriassa感觉神经元:将不同的形态与特定的生理学和功能联系起来

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摘要

Rodents use an array of long tactile facial hairs, the vibrissae, to locate and discriminate objects. Each vibrissa is densely innervated by multiple different types of trigeminal (TG) sensory neurons. Based on the sensory ending morphology, there are at least six types of vibrissa innervating neurons; whereas based on electrophysiological recordings, vibrissa neurons are generally classified as rapidly adapting (RA) and slowly adapting (SA), and show different responses to whisking movement and/or touch. There is a clear missing link between the morphologically defined neuronal types and their exact physiological properties and functions. We briefly summarize recent advances and consider single-cell transcriptome profiling, together with optogenetics-assisted in vivo electrophysiology, as a way to fill this major gap in our knowledge of the vibrissa sensory system.
机译:啮齿动物使用一系列长的触觉面部毛,vibrissae,定位和辨别物体。 每个VIBRISS通过多种不同类型的三叉(TG)感官神经元密度地密集地支配。 基于感官结束形态,存在至少六种类型的vibriassa的神经元; 虽然基于电生理记录,但Vibriassa神经元通常被归类为快速调整(Ra)和缓慢调整(SA),并显示出不同的反应,以搅拌运动和/或触摸。 形态定义的神经元类型与其确切的生理特性和功能之间存在明显的缺失联系。 我们简要概括了最近的进步,并考虑单细胞转录组分析,以及致光学辅助体内电生理学,作为我们在我们对Vibriassa感官系统的了解中填补这种主要差距的一种方式。

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