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梨状皮质前部和后部不同细胞层对电刺激和点燃的易感性:与基底外侧杏仁核和“风暴区”的比较。

Susceptibility of different cell layers of the anterior and posterior part of the piriform cortex to electrical stimulation and kindling: comparison with the basolateral amygdala and "area tempestas".

作者信息

Löscher W, Ebert U, Wahnschaffe U, Rundfeldt C

机构信息

Department of Pharmacology, Toxicology and Pharmacy, School of Veterinary Medicine, Hannover, Germany.

出版信息

Neuroscience. 1995 May;66(2):265-76. doi: 10.1016/0306-4522(94)00614-b.

Abstract

Several lines of evidence suggest that the piriform cortex functions as a generator in the development and propagation of forebrain (limbic type) seizures, particularly in the kindling model of epilepsy. It is, however, not clear where, within the rather large piriform cortex region, the generator resides, and how much tissue is involved. Highly sensitive loci to chemical or electrical stimulation have been described both in the deep anterior and posterior parts of the piriform cortex. Furthermore, data from piriform cortex slice preparations indicated that epileptiform potentials originate in deep structures, particularly the endopiriform nucleus that underlies the piriform cortex. In the present study, in rats, we implanted stimulation and recording electrodes in various rostrocaudal locations of the piriform cortex and endopiriform nucleus, including the "area tempestas", i.e. a structure in the anterior part of the piriform cortex previously proposed to be critically involved in the generation of convulsive seizures of limbic origin. Within the piriform cortex, electrodes were aimed at different cellular layers of this structure. For comparison, additional animals received electrodes in different parts of the basolateral amygdala. A total of 19 different locations was obtained in this way. The susceptibility of these locations to electrical stimulation was characterized by determining the threshold for induction of afterdischarges. The afterdischarge threshold was lowest in layer III of the posterior piriform cortex and some locations in the endopiriform nucleus, whereas amygdala and "area tempestas" displayed higher values. In several animals, particularly those with electrodes in layer III of the posterior piriform cortex, spontaneous spiking was seen in prestimulation recordings, whereas this was never observed in recordings from the amygdala. Subsequent kindling by repeated stimulation of the various locations demonstrated marked differences in afterdischarge threshold reduction and kindling rate. The most marked decreases in afterdischarge threshold were seen in locations within layer III of the piriform cortex, whereas several other locations, including the "area tempestas", exhibited only moderate decreases or no decrease at all. In contrast to previous observations with only few locations in the piriform cortex region, the posterior piriform cortex was not in general slower to kindle than the anterior piriform cortex, although some locations in the posterior piriform cortex exhibited significantly lower kindling rates than the amygdala. The highest kindling rate was seen in the dorsal endopiriform nucleus.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

多条证据表明,梨状皮层在前脑(边缘型)癫痫发作的发生和传播中起发生器的作用,尤其是在癫痫点燃模型中。然而,尚不清楚在相当大的梨状皮层区域内,发生器位于何处,以及涉及多少组织。在梨状皮层的深部前部和后部均已描述了对化学或电刺激高度敏感的位点。此外,来自梨状皮层切片制备的数据表明,癫痫样电位起源于深部结构,特别是位于梨状皮层下方的内梨状核。在本研究中,我们在大鼠的梨状皮层和内梨状核的不同前后位置植入了刺激和记录电极,包括“颞叶区”,即先前提出的在边缘性惊厥发作的发生中起关键作用的梨状皮层前部的一个结构。在梨状皮层内,电极针对该结构的不同细胞层。为了进行比较,另外的动物在基底外侧杏仁核的不同部位植入电极。通过这种方式总共获得了19个不同的位置。通过确定诱发后放电的阈值来表征这些位置对电刺激的敏感性。后梨状皮层III层和内梨状核的一些位置的后放电阈值最低,而杏仁核和“颞叶区”的值较高。在几只动物中,特别是那些在后梨状皮层III层植入电极的动物,在预刺激记录中观察到自发放电,而在杏仁核的记录中从未观察到这种情况。随后通过对各个位置的重复刺激进行点燃,结果显示在后放电阈值降低和点燃率方面存在明显差异。后放电阈值下降最明显的是在梨状皮层III层内的位置,而其他几个位置,包括“颞叶区”,仅表现出中度下降或根本没有下降。与之前在梨状皮层区域仅少数位置的观察结果相反,后梨状皮层总体上并不比前梨状皮层更难点燃,尽管后梨状皮层的一些位置的点燃率明显低于杏仁核。点燃率最高的是在内梨状核背侧。(摘要截于400字)

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