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电诱导边缘叶癫痫发作:啮齿动物模型的初步研究结果。

Electrically induced limbic seizures: preliminary findings in a rodent model.

作者信息

Kowski Alexander B, Holtkamp Martin

机构信息

Department of Neurology, Epilepsy-Center Berlin-Brandenburg, Charité-Universitätsmedizin Berlin, Berlin, Germany.

出版信息

J Exp Neurosci. 2015 Mar 25;9:7-14. doi: 10.4137/JEN.S23759. eCollection 2015.

Abstract

In epilepsy, novel pharmacological and nonpharmacological treatment approaches are commonly assessed in model systems of acute motor and often generalized seizures. We developed a rodent model with short-term electrical stimulation of the perforant path resulting in stereotyped limbic seizures. Limbic structures play a major role in human intractable epilepsy. In 10 rats, single electrical 5-second and 20-Hz stimuli to the perforant path reliably produced limbic seizures characterized by resting behavior and subtle motor signs. Electrophysiological recordings from the dentate gyrus demonstrated a seizure pattern with 4-Hz to 5-Hz discharges. Multiple inductions of seizures within 72 hours did not alter behavioral and electrophysiological seizure characteristics. Electrophysiological excitatory and inhibitory parameters assessed by evoked single and paired pulses did not change with increasing number of seizures. We present preliminary findings on a new model of electrically induced limbic seizures of mesiotemporal origin. This model may represent a reliable screening tool for new treatment approaches such as deep brain stimulation.

摘要

在癫痫研究中,新型药物和非药物治疗方法通常在急性运动性且往往是全身性癫痫发作的模型系统中进行评估。我们开发了一种啮齿动物模型,通过对穿通路径进行短期电刺激来引发刻板的边缘性癫痫发作。边缘结构在人类难治性癫痫中起主要作用。在10只大鼠中,对穿通路径进行单次5秒、20赫兹的电刺激可靠地产生了以静息行为和细微运动体征为特征的边缘性癫痫发作。齿状回的电生理记录显示出4赫兹至5赫兹放电的癫痫发作模式。在72小时内多次诱发癫痫发作并未改变行为和电生理癫痫特征。通过诱发单脉冲和双脉冲评估的电生理兴奋性和抑制性参数不会随着癫痫发作次数的增加而改变。我们展示了关于一种新的电诱发颞叶内侧起源边缘性癫痫发作模型的初步研究结果。该模型可能代表一种用于新治疗方法(如深部脑刺激)的可靠筛选工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e70c/4376203/10ffab1f3850/jen-9-2015-007f1.jpg

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