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体感中央凹的早期发育:在皮质空间竞争中抢占先机?

Early development of a somatosensory fovea: a head start in the cortical space race?

作者信息

Catania K C

机构信息

Department of Biological Sciences, Vanderbilt University, Box 1812, Station B, Nashville, Tennessee 37235, USA.

出版信息

Nat Neurosci. 2001 Apr;4(4):353-4. doi: 10.1038/85992.

Abstract

Star-nosed moles have 11 mechanosensory appendages surrounding each nostril, and primary afferents from a single appendage-the tactile fovea-are greatly over-represented in somatosensory cortex. It was found that the foveal appendage led development in the periphery, had the greatest innervated surface area in embryos, and developed mature nerve terminals and epidermal sensory organs first; also, in developing cortex, markers for metabolic activity (cytochrome oxidase) appeared first in the fovea representation. This developmental sequence may provide the fovea with an advantage in a competition for cortical space, and account for the much larger areas of cortex devoted to foveal afferents.

摘要

星鼻鼹鼠每个鼻孔周围有11个机械感觉附属器,来自单个附属器——触觉小窝的初级传入神经在体感皮层中所占比例极大。研究发现,小窝附属器在周围组织发育中起主导作用,在胚胎中具有最大的神经支配表面积,并且最早发育成熟的神经末梢和表皮感觉器官;此外,在发育中的皮层中,代谢活动标志物(细胞色素氧化酶)最早出现在小窝代表区。这种发育顺序可能使小窝在争夺皮层空间的竞争中具有优势,并解释了皮层中 devoted to foveal afferents的区域大得多的原因。(注:原文中“devoted to foveal afferents”表述不太准确,可能影响理解,推测是指专门用于小窝传入神经的区域)

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