MTA-SZTE 'Momentum' Oscillatory Neuronal Networks Research Group, Department of Physiology, University of Szeged, Szeged 6720, Hungary.
Department of Neuropharmacology, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, 467-8603, Japan.
Brain. 2021 Apr 12;144(3):885-908. doi: 10.1093/brain/awaa450.
Temporal lobe epilepsy with distributed hippocampal seizure foci is often intractable and its secondary generalization might lead to sudden death. Early termination through spatially extensive hippocampal intervention is not feasible directly, because of the large size and irregular shape of the hippocampus. In contrast, the medial septum is a promising target to govern hippocampal oscillations through its divergent connections to both hippocampi. Combining this 'proxy intervention' concept and precisely timed stimulation, we report here that closed-loop medial septum electrical stimulation can quickly terminate intrahippocampal seizures and suppress secondary generalization in a rat kindling model. Precise stimulus timing governed by internal seizure rhythms was essential. Cell type-specific stimulation revealed that the precisely timed activation of medial septum GABAergic neurons underlaid the effects. Our concept of time-targeted proxy stimulation for intervening pathological oscillations can be extrapolated to other neurological and psychiatric disorders, and has potential for clinical translation.
颞叶癫痫伴广泛海马痫灶通常难以治疗,其继发性全面性发作可能导致突然死亡。由于海马体体积大且形状不规则,直接进行广泛的空间海马体干预是不可行的。相比之下,内侧隔核通过向两个海马体发出分歧连接,是控制海马体振荡的一个很有前途的靶点。结合这种“代理干预”的概念和精确的定时刺激,我们在此报告,闭环内侧隔核电刺激可以快速终止海马内癫痫发作,并抑制点燃大鼠模型中的继发性全面性发作。由内部癫痫节律控制的精确刺激时间是至关重要的。细胞类型特异性刺激表明,内侧隔核 GABA 能神经元的精确定时激活是产生这种效果的基础。我们的时间靶向代理刺激干预病理性振荡的概念可以推广到其他神经和精神疾病,并具有临床转化的潜力。