Chaitanya Ganne, Toth Emilia, Pizarro Diana, Iasemidis Leonidas, Murray Teresa A, Riley Kristen, Pati Sandipan
Epilepsy and Cognitive Neurophysiology Laboratory, Department of Neurology, University of Alabama at Birmingham, Birmingham, AL, USA.
Center for Biomedical Engineering and Rehabilitation Science, Louisiana Tech Institute, Ruston, LA, USA.
Epilepsy Behav Rep. 2020 Apr 23;14:100363. doi: 10.1016/j.ebr.2020.100363. eCollection 2020.
Targeted stimulation of white matter has opened newer perspectives in the field of neuromodulation, towards an attempt to improve memory or as a therapy for epilepsy. Stimulation of the fornix, being a part of the Papez circuit, is likely to modulate the limbic network excitability. However, the stimulation-frequency dependent variability in network excitability is unknown. In the case study, which involved stereo electroencephalographic (SEEG) recording of field potentials in a 48-year old left-handed woman with suspected temporal lobe epilepsy, we demonstrated the network effects of acute low (1 and 10 Hz) and high (50 Hz) frequency electrical stimulation of fornix. Mapping the short-latency evoked responses to forniceal stimulation confirmed the SEEG target localization within the Papez circuit. Low and high-frequency stimulation of the fornix produced opposite effects in the post-stimuli excitability, with the latter causing increased excitability in the limbic network that culminated in a clinical seizure. A distinct spectral peak around 8 Hz confirmed that sensing field potentials from the forniceal white matter is feasible. This is the first case study that provided an insight into how the temporal patterning of forniceal stimulation altered the downstream limbic network excitability.
对白质进行靶向刺激为神经调节领域开辟了新的前景,旨在改善记忆或作为治疗癫痫的一种方法。穹窿作为帕佩兹环路的一部分,对其进行刺激可能会调节边缘网络的兴奋性。然而,网络兴奋性中与刺激频率相关的变异性尚不清楚。在该病例研究中,我们对一名48岁疑似颞叶癫痫的左利手女性进行了立体脑电图(SEEG)记录场电位,展示了对穹窿进行急性低频(1和10Hz)和高频(50Hz)电刺激的网络效应。绘制对穹窿刺激的短潜伏期诱发反应图证实了SEEG靶点在帕佩兹环路内的定位。对穹窿进行低频和高频刺激在刺激后兴奋性方面产生了相反的效果,高频刺激导致边缘网络兴奋性增加,最终引发了一次临床发作。一个约8Hz的明显频谱峰值证实了从穹窿白质感知场电位是可行的。这是首个深入探究穹窿刺激的时间模式如何改变下游边缘网络兴奋性的病例研究。