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大鼠体感皮层中躯体定位图和桶状模式的早期发育。

Early development of the somatotopic map and barrel patterning in rat somatosensory cortex.

作者信息

Schlaggar B L, O'Leary D D

机构信息

Molecular Neurobiology Laboratory, Salk Institute, La Jolla, California 92037.

出版信息

J Comp Neurol. 1994 Aug 1;346(1):80-96. doi: 10.1002/cne.903460106.

Abstract

Several lines of evidence implicate a crucial role for thalamic afferents from the ventroposterior nucleus (VP) in the development of barrels and their characteristic pattern in the primary somatosensory cortex (S1) of rodents. We sought to determine the stage in development when VP thalamocortical afferents are first distributed in a periphery-related pattern and the sequence of events that culminate in a mature pattern. Using acetylcholinesterase (AChE) histochemistry, an early marker for VP thalamocortical afferents, and the anterograde axon tracer DiI, we show that VP thalamocortical afferents become distributed into a periphery-related pattern earlier than was previously reported, including their parcellation into a barrel-related pattern that mirrors the distribution of sensory hairs on the face. The earliest periphery-related patterning observed is transiently present in the deep cortical layers prior to the emergence of layer 4, the layer in which barrels later develop. AChE histochemistry reveals a clear sequence of maturation of the barrel pattern in the distribution of VP afferents: An initially patternless distribution of AChE-reactive afferents is followed by their distribution in a nascent trigeminal representation, from which rows subsequently emerge; barrel-related clusters of afferents then emerge from the rows. This process begins before birth, and the transition from row-related to barrel-related distributions of VP afferents is evident during the first postnatal day (P0). This demonstration of a periphery-related pattern in developing rat S1 precedes by about 2 days that revealed by any other marker reported to delineate barrels. These findings confirm that VP thalamocortical afferents are the first barrel component to have a periphery-related pattern and support the hypothesis that thalamocortical afferents provide to immature S1 the patterning information that initiates the formation of barrels and their characteristic array. Furthermore because these findings show an earlier onset for barrel formation than was previously realized, they necessitate a reevaluation of conclusions drawn from experiments examining developmental plasticity in barrel patterning.

摘要

多条证据表明,来自腹后核(VP)的丘脑传入神经在啮齿动物初级体感皮层(S1)中桶状结构及其特征模式的发育过程中起着关键作用。我们试图确定VP丘脑皮质传入神经首次以与外周相关的模式分布的发育阶段,以及最终形成成熟模式的一系列事件的顺序。利用乙酰胆碱酯酶(AChE)组织化学(一种VP丘脑皮质传入神经的早期标记物)和顺行轴突示踪剂DiI,我们发现VP丘脑皮质传入神经以与外周相关的模式分布的时间比之前报道的要早,包括它们被分割成与桶状结构相关的模式,该模式反映了面部感觉毛的分布。最早观察到的与外周相关的模式短暂出现在第4层出现之前的深层皮质层中,而桶状结构后来在第4层发育。AChE组织化学揭示了VP传入神经分布中桶状结构成熟的清晰顺序:最初AChE反应性传入神经无模式分布,随后它们分布在新生的三叉神经表征中,随后从中出现排;与桶状结构相关的传入神经簇随后从这些排中出现。这个过程在出生前就开始了,可以明显观察到在出生后的第一天(P0),VP传入神经从与排相关的分布向与桶状结构相关的分布转变。在发育中的大鼠S1中与外周相关的模式的这一证明比任何其他用于描绘桶状结构的标记物所揭示的要早约2天。这些发现证实,VP丘脑皮质传入神经是第一个具有与外周相关模式的桶状结构成分,并支持丘脑皮质传入神经为未成熟的S1提供启动桶状结构及其特征阵列形成的模式信息这一假说。此外,由于这些发现表明桶状结构形成的开始时间比之前意识到的要早,它们需要重新评估从研究桶状结构模式发育可塑性的实验中得出的结论。

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