| Literature DB >> 26621617 |
Yi Wang1, Jiao Liang1, Cenglin Xu1, Ying Wang1, Yifang Kuang2, Zhenghao Xu3, Yi Guo4, Shuang Wang4, Feng Gao5, Zhong Chen6.
Abstract
High-frequency stimulation (HFS) of the anterior nucleus of thalamus (ANT) is a new and alternative option for the treatment of intractable epilepsy. However, the responder rate is relatively low. The present study was designed to determine the effect of low-frequency stimulation (LFS) in ANT on chronic spontaneous recurrent seizures and related pathological pattern in intra-hippocampal kainate mouse model. We found that LFS (1 Hz, 100 μs, 300 μA), but not HFS (100 Hz, 100 μs, 30 μA), in bilateral ANT significantly decreased the frequency of spontaneous recurrent seizures, either non-convulsive focal seizures or tonic-clonic generalized seizures. The anti-epileptic effect persisted for one week after LFS cessation, which manifested as a long-term inhibition of the frequency of seizures with short (20-60 s) and intermediate duration (60-120 s). Meanwhile, LFS decreased the frequency of high-frequency oscillations (HFOs) and interictal spikes, two indicators of seizure severity, whereas HFS increased the HFO frequency. Furthermore, LFS decreased the power of the delta band and increased the power of the gamma band of hippocampal background EEG. In addition, LFS, but not HFS, improved the performance of chronic epileptic mice in objection-location task, novel objection recognition and freezing test. These results provide the first evidence that LFS in ANT alleviates kainate-induced chronic epilepsy and cognitive impairment, which may be related to the modulation of the hippocampal EEG rhythm. This may be of great therapeutic significance for clinical treatment of epilepsy with deep brain stimulation.Entities:
Keywords: Anterior nucleus of thalamus; Chronic epilepsy; EEG rhythm; Low-frequency stimulation; Spontaneous recurrent seizures
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Year: 2015 PMID: 26621617 DOI: 10.1016/j.expneurol.2015.11.014
Source DB: PubMed Journal: Exp Neurol ISSN: 0014-4886 Impact factor: 5.330