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通过向下丘微量注射荷包牡丹碱诱导听源性癫痫发作和类听源性癫痫发作的神经行为学评估。I. 中脑丘脑中切断术的影响

Neuroethological evaluation of audiogenic seizures and audiogenic-like seizures induced by microinjection of bicuculline into the inferior colliculus. I. Effects of midcollicular knife cuts.

作者信息

Tsutsui J, Terra V C, Oliveira J A, Garcia-Cairasco N

机构信息

Department of Physiology, Ribeirão Preto School of Medicine, University of São Paulo, Brazil.

出版信息

Behav Brain Res. 1992 Nov 30;52(1):7-17. doi: 10.1016/s0166-4328(05)80320-1.

Abstract

Audiogenic seizures (AS) are a model of generalized tonic-clonic seizures. The inferior colliculus (IC) and the GABAergic neurotransmission seems to be the most critical site and neurotransmitter system, respectively, of the auditory midbrain involved in AS origin and development. Thus, audiogenic-like seizures are evoked by GABAA antagonists such as bicuculline (BIC). Wistar audiogenic AS resistant (R) rats were sham-transected through the midcollicular line and microinjected with IC bicuculline (BIC; 80 ng/0.2 microliters) (n = 8); transected through the midcollicular line and microinjected with IC saline 0.9% (n = 8); transected through the cortex above the midcollicular line and microinjected with IC BIC (n = 3); transected through the midcollicular line up to 6.0 mm depth and microinjected with IC BIC (80 ng/0.2 microliters or 120 ng/0.3 microliters (n = 8). Wistar AS susceptible (S) rats were submitted to cortical transections (n = 8) and midcollicular transections (n = 7). Animals were studied by means of an ethological method before and after microinjections and/or transections in order to evaluate possible pathways in the AS-like evoked seizures. Bicuculline-evoked seizures were very similar to those evoked by acoustic stimulation, but lacked the tonic-clonic component. No modification in animal behavior was observed in the presence of sound, once the AS-like behavior was initiated. A small percentage of the animals, however, presented procursive behavior which was increased by sound. The IC BIC-evoked patterns were almost totally blocked by midcollicular but not cortical transections. Furthermore, midcollicular but not cortical transections blocked the tonic-clonic component of AS in genetically S animals without modifying the wild running component. These data suggest that the inferior colliculus-superior colliculus connection may be involved in the sensorimotor transduction necessary for AS-like behaviors.

摘要

听源性癫痫发作(AS)是全身性强直阵挛性癫痫发作的一种模型。下丘(IC)和GABA能神经传递似乎分别是参与AS起源和发展的听觉中脑中最关键的部位和神经递质系统。因此,GABAA拮抗剂如荷包牡丹碱(BIC)可诱发类听源性癫痫发作。对Wistar听源性AS抗性(R)大鼠进行假手术,经中脑线横断并向IC微量注射BIC(80 ng/0.2微升)(n = 8);经中脑线横断并向IC微量注射0.9%生理盐水(n = 8);经中脑线上方的皮层横断并向IC微量注射BIC(n = 3);经中脑线横断至6.0 mm深度并向IC微量注射BIC(80 ng/0.2微升或120 ng/0.3微升)(n = 8)。对Wistar AS易感(S)大鼠进行皮层横断(n = 8)和中脑横断(n = 7)。在微量注射和/或横断前后,通过行为学方法对动物进行研究,以评估类AS诱发癫痫发作的可能途径。BIC诱发的癫痫发作与声刺激诱发的癫痫发作非常相似,但缺乏强直阵挛成分。一旦类AS行为开始,在有声音的情况下未观察到动物行为的改变。然而,一小部分动物表现出前驱行为,这种行为会因声音而增加。IC BIC诱发的模式几乎完全被中脑横断所阻断,而皮层横断则不能。此外,中脑横断而非皮层横断阻断了遗传性S动物AS的强直阵挛成分,而不改变狂奔成分。这些数据表明,下丘-上丘连接可能参与了类AS行为所需的感觉运动转换。

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