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丘脑网状核的一级和高级区域是否具有不同的发育时间表?

Do first order and higher order regions of the thalamic reticular nucleus have different developmental timetables?

作者信息

Fitzgibbon Thomas

机构信息

Discipline of Anatomy and Histology, School of Medical Sciences and Bosch Institute, The University of Sydney, New South Wales 2006, Australia.

出版信息

Exp Neurol. 2007 Mar;204(1):339-54. doi: 10.1016/j.expneurol.2006.11.012. Epub 2007 Jan 17.

Abstract

The thalamic reticular nucleus (TRN) can been subdivided into sectors based on thalamic and cortical input. Additionally, in carnivores the visual sector of the TRN can be subdivided into first order (perigeniculate nucleus: PGN) and higher order (TRN) regions. This report examines whether TRN development reflects the nature of its higher order visual connections. 170 cells from 12 kittens aged between postnatal day 0 (P0) and P125 were fully analysed after single cell injections in 400-500 microm fixed brain slices. TRN cells have a period of exuberant dendritic branching that peaks between P3 and P12, around the time of eye opening (P7), followed by branch pruning until P68. Similarly, most dendritic appendages are added between P12 and P22 followed by pruning, which is also largely complete by P68. Most branch points occur within the first 10-30% of the dendritic arbor, peaking between 10 and 20% (roughly equivalent to 100 mum from the soma), while appendages were concentrated between 20 and 30% of the arbour; appendages tend to be distributed over a larger proportion of the arbor up to P14 compared to later ages. TRN and PGN maturation were not significantly different. The present data suggest that clear distinctions cannot be made between the maturation of first and higher order pathways and indicate that GABAergic cells of the ventral thalamus may mature earlier than relay cells of the dorsal thalamus. Furthermore, dendritic development in the TRN may be less dependent on extrinsic factors than an intrinsic growth pattern or factors other than a functional hierarchy within the visual pathway.

摘要

丘脑网状核(TRN)可根据丘脑和皮质输入细分为不同区域。此外,在食肉动物中,TRN的视觉区域可细分为一级(膝周核:PGN)和高级(TRN)区域。本报告研究了TRN的发育是否反映其高级视觉连接的性质。在400 - 500微米厚的固定脑片中进行单细胞注射后,对12只出生后0天(P0)至125天的小猫的170个细胞进行了全面分析。TRN细胞有一个树突分支旺盛的时期,在P3至P12之间达到峰值,此时正值睁眼期(P7),随后是树突修剪,直至P68。同样,大多数树突附属物在P12至P22之间添加,随后进行修剪,到P68时也基本完成。大多数分支点出现在树突主干的前10 - 30%内,在10%至20%之间达到峰值(大致相当于距胞体100微米),而附属物集中在主干的20%至30%之间;与后期相比,在P14之前附属物倾向于分布在主干的更大比例上。TRN和PGN的成熟没有显著差异。目前的数据表明,一级和高级通路的成熟之间无法明确区分,并且表明腹侧丘脑的GABA能细胞可能比背侧丘脑的中继细胞成熟得更早。此外,TRN中的树突发育可能比内在生长模式或视觉通路内功能层次以外的其他因素更少依赖外在因素。

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