IEEE Trans Neural Syst Rehabil Eng. 2019 Mar;27(3):419-428. doi: 10.1109/TNSRE.2019.2894746. Epub 2019 Jan 25.
The closed-loop electrical stimulation is emerging as a promising neural modulation therapy for refractory epilepsy. However, the efficacy of electrical stimulation is less than optimal and the mechanism of seizure control is still unclear. In this paper, we evaluated the acute seizure control efficacy of the multi-site closed-loop stimulation (MSCLS) in a rodent model with a custom designed closed-loop neurostimulator. A total of 18 rats were injected with kainic-acid in CA3 of the left hippocampus to induce acute temporal lobe seizures. Instead of single target stimulation, four target sites in left hemisphere including CA1 and CA3 of the hippocampus, sub-thalamic nucleus, and M1 region of the motor cortex were selected for both recording and stimulation. A low-cost efficient multi-site seizure detection algorithm was implemented in the neurostimulator for MSCLS. With MSCLS treatment, the rats without status-epilepsy (SE) significantly reduced the seizure duration and the number of generalized seizures in each site. When considering the rats developed SE, the MSCLS could also alleviate the seizure severity, but had little effect on the seizure duration and seizure number. In conclusion, although the efficacy of MSCLS was still limited by the stimulation sites, stimulation parameters, and seizure model chosen in this paper, the MSCLS itself would be a promising direction for the refractory seizure treatment.
闭环电刺激作为一种有前途的神经调节疗法,正在治疗难治性癫痫。然而,电刺激的疗效并不理想,其控制癫痫发作的机制仍不清楚。在本文中,我们使用定制的闭环神经刺激器评估了多部位闭环刺激(MSCLS)在左侧海马 CA3 注射海人酸的啮齿动物模型中的急性癫痫发作控制效果。与单靶点刺激不同,选择了左半球的四个靶点,包括海马的 CA1 和 CA3、丘脑底核和运动皮层的 M1 区,用于记录和刺激。在神经刺激器中实现了一种低成本高效的多部位癫痫发作检测算法,用于 MSCLS。在 MSCLS 治疗下,无癫痫持续状态(SE)的大鼠显著减少了每个部位的发作持续时间和全身性发作次数。当考虑到发生 SE 的大鼠时,MSCLS 也可以减轻癫痫发作的严重程度,但对发作持续时间和发作次数影响不大。总之,尽管本文中选择的刺激部位、刺激参数和癫痫发作模型仍然限制了 MSCLS 的疗效,但 MSCLS 本身可能是难治性癫痫治疗的一个有前途的方向。