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人类颞叶中的功能连接。II. 对侧边缘结构之间功能联系丧失的证据。

Functional connections in the human temporal lobe. II. Evidence for a loss of functional linkage between contralateral limbic structures.

作者信息

Wilson C L, Isokawa M, Babb T L, Crandall P H, Levesque M F, Engel J

机构信息

Department of Neurology, University of California, Los Angeles 90024.

出版信息

Exp Brain Res. 1991;85(1):174-87. doi: 10.1007/BF00229999.

Abstract

In a previous investigation of functional limbic pathways in the human mesial temporal lobe, we found evidence for strong connections between ipsilateral mesial temporal structures, but none for contralateral functional connections (Wilson et al. 1990). In the present study, we focused specifically upon the question of functional commissural linkages between these structures by systematic stimulation of a total of 390 electrode placements in 74 epileptic patients with temporal lobe depth electrodes implanted for surgical diagnosis. Eight standard electrode placement regions were targeted: amygdala, entorhinal cortex, anterior, middle and posterior hippocampus, subicular cortex, middle parahippocampal gyrus, and posterior parahippocampal gyrus. Three to six electrodes were implanted bilaterally in each patient, and each electrode was individually stimulated while recording from all the other sites. Out of the 390 electrodes stimulated, 78% were effective in evoking clear responses in adjacent ipsilateral structures, and 75% of 581 ipsilateral recording sites were responsive to stimulation. Only one of the stimulated electrode sites was effective in evoking responses in contralateral recording sites, and only two of 511 contralateral recording sites were responsive to that stimulation. The effective stimulation site was in presubicular cortex, and the responsive contralateral recording sites were in entorhinal and presubicular cortices. Response to this stimulation site was intermittent and variable in latency. The relative ease of obtaining functional verification of significant ipsilateral anatomical pathways in the human limbic system, and the sharply contrasting difficulty of functionally activating commissural pathways to contralateral limbic sites are discussed in the context of decreases in hippocampal contribution to commissural pathways in the primate brain compared to sub-primate mammals, and the significance of this change to normal limbic system function as well as to mechanisms of seizure spread in epilepsy.

摘要

在先前一项关于人类内侧颞叶功能边缘通路的研究中,我们发现了同侧内侧颞叶结构之间存在强连接的证据,但未发现对侧功能连接的证据(威尔逊等人,1990年)。在本研究中,我们通过系统刺激74例植入颞叶深部电极用于手术诊断的癫痫患者总共390个电极植入位置,专门聚焦于这些结构之间功能连合联系的问题。目标是八个标准电极植入区域:杏仁核、内嗅皮质、海马体的前部、中部和后部、下托皮质、海马旁回中部和海马旁回后部。在每位患者双侧植入三到六个电极,在对每个电极进行单独刺激时,从所有其他部位进行记录。在390个受到刺激的电极中,78%能有效诱发相邻同侧结构的清晰反应,在581个同侧记录部位中,75%对刺激有反应。在受刺激的电极部位中,只有一个能有效诱发对侧记录部位的反应,在511个对侧记录部位中,只有两个对该刺激有反应。有效的刺激部位在海马下托前皮质,有反应的对侧记录部位在内嗅皮质和海马下托前皮质。对该刺激部位的反应是间歇性的,潜伏期可变。结合灵长类动物大脑中海马体对连合通路的贡献相比于灵长类以下哺乳动物有所减少的情况,讨论了在人类边缘系统中相对容易获得同侧重要解剖通路的功能验证,以及在功能上激活通向对侧边缘部位的连合通路存在巨大反差的困难,以及这种变化对正常边缘系统功能以及癫痫发作传播机制的意义。

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