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首页> 外文期刊>Neurology: Official Journal of the American Academy of Neurology >SEPTAL NUCLEI ENLARGEMENT IN HUMAN TEMPORAL LOBE EPILEPSY WITHOUT MESIAL TEMPORAL SCLEROSIS
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SEPTAL NUCLEI ENLARGEMENT IN HUMAN TEMPORAL LOBE EPILEPSY WITHOUT MESIAL TEMPORAL SCLEROSIS

机译:隔核扩大人类颞叶癫痫没有内侧颞硬化

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摘要

Objective: To measure the volume of basal forebrain septal nuclei in patients with temporal lobe epilepsy (TLE) as compared to patients with extratemporal epilepsy and controls. In animal models of TLE, septal lesions facilitate epileptogenesis, while septal stimulation is antiepileptic.Method; Subjects were recruited from 2 sites and consisted of patients with pharmacoresistant focal epilepsy (20 with TLE and mesial temporal sclerosis [MTS], 24 with TLE without MTS, 23 with extratemporal epilepsy) and 114 controls. Septal volume was measured using high-resolution MRI in association with newly developed probabilistic septal nuclei maps. Septal volume was compared betweensubject groups while controlling for relevant factors.Results: Patients with TLE without MTS had significantly larger septal nuclei than patients with extratemporal epilepsy and controls.This was not true for patients with MTS. These results are interpreted with reference to prior studies demonstrating expansion of the septo-hippocampal cholinergic system in animal models of TLE and human TLE surgical specimens.Conclusion: Septal nuclei are enlarged in patients with TLE without MTS. Furtlier investigation of septal nuclei and antiepileptic septo-hippocampal neurocircuitry could be relevant to development of new therapeutic interventions such as septal stimulation for refractory TLE.
机译:目的:测量基底的体积在患者颞前脑隔核叶癫痫患者相比(框架)extratemporal癫痫和控制。的模型框架,隔病变方便epileptogenesis,而隔刺激antiepileptic.Method;从2网站和由患者pharmacoresistant局灶性癫痫(20和框架(MTS),内侧颞叶硬化24与框架没有MTS, 23 extratemporal癫痫)和114控制。高分辨率核磁共振与新协会开发的概率隔核地图。隔成交量相比betweensubject组同时为相关因素控制。患者没有MTS明显的框架比患者更大的隔核extratemporal癫痫和控制。适用于患者MTS。这些结果参照之前的研究展示septo-hippocampal的扩张在动物模型的框架和胆碱能系统人类的病童,手术标本。原子核在病童,患者没有扩大隔核和MTS。Furtlier调查抗癫痫septo-hippocampal神经会相关开发新的呢治疗性干预措施如隔刺激框架耐火材料。

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