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狐蝠体感皮层的半球间连接

Interhemispheric connections of somatosensory cortex in the flying fox.

作者信息

Krubitzer L, Clarey J C, Tweedale R, Calford M B

机构信息

Department of Psychology and Center For Neuroscience, University of California, Davis 95616, USA.

出版信息

J Comp Neurol. 1998 Dec 28;402(4):538-59.

PMID:9862325
Abstract

The interhemispheric connections of somatosensory cortex in the gray-headed flying fox (Pteropus poliocephalus) were examined. Injections of anatomical tracers were placed into five electrophysiologically identified somatosensory areas: the primary somatosensory area (SI or area 3b), the anterior parietal areas 3a and 1/2, and the lateral somatosensory areas SII (the secondary somatosensory area) and PV (pairetal ventral area). In two animals, the hemisphere opposite to that containing the injection sites was explored electrophysiologically to allow the details of the topography of interconnections to be assessed. Examination of the areal distribution of labeled cell bodies and/or axon terminals in cortex sectioned tangential to the pial surface revealed several consistent findings. First, the density of connections varied as a function of the body part representation injected. For example, the area 3b representation of the trunk and structures of the face are more densely interconnected than the representation of distal body parts (e.g., digit 1, D1). Second, callosal connections appear to be both matched and mismatched to the body part representations injected in the opposite hemisphere. For example, an injection of retrograde tracer into the trunk representation of area 3b revealed connections from the trunk representation in the opposite hemisphere, as well as from shoulder and forelimb/wing representations. Third, the same body part is differentially connected in different fields via the corpus callosum. For example, the D1 representation in area 3b in one hemisphere had no connections with the area 3b D1 representation in the opposite hemisphere, whereas the D1 representation in area 1/2 had relatively dense reciprocal connections with area 1/2 in the opposite hemisphere. Finally, there are callosal projections to fields other than the homotopic, contralateral field. For example, the D1 representation in area 1/2 projects to contralateral area 1/2, and also to area 3b and SII.

摘要

对灰头狐蝠(Pteropus poliocephalus)体感皮层的半球间连接进行了研究。将解剖示踪剂注射到五个经电生理鉴定的体感区域:初级体感区(SI或3b区)、顶叶前部3a区和1/2区,以及外侧体感区SII(次级体感区)和PV(顶叶腹侧区)。在两只动物中,对与注射部位所在半球相对的半球进行了电生理探索,以便评估连接的拓扑结构细节。对与软脑膜表面相切切片的皮层中标记细胞体和/或轴突终末的区域分布进行检查,发现了几个一致的结果。首先,连接密度随注射的身体部位代表区而变化。例如,躯干和面部结构在3b区的代表区比远端身体部位(如第一指,D1)的代表区连接更密集。其次,胼胝体连接似乎与对侧半球注射的身体部位代表区既有匹配的,也有不匹配的。例如,向3b区躯干代表区注射逆行示踪剂,显示出与对侧半球躯干代表区以及肩部和前肢/翅膀代表区的连接。第三,同一身体部位通过胼胝体在不同区域有不同的连接。例如,一个半球3b区的D1代表区与对侧半球3b区的D1代表区没有连接,而1/2区的D1代表区与对侧半球1/2区有相对密集的相互连接。最后,存在向同侧、对侧同型区以外的区域的胼胝体投射。例如,1/2区的D1代表区投射到对侧1/2区,也投射到3b区和SII区。

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