Infinite Biomedical Technologies, LLC Neuro Division, Emerging Technology Centers, 1101 E. 33rd Street, Suite #A306, Baltimore, MD 21218, USA.
Int J Neural Syst. 2011 Apr;21(2):115-26. doi: 10.1142/S0129065711002754.
EEG and field potential rhythms established in the cortex and thalamus may accommodate the propagation of seizures. This article describes the interaction between thalamus and cortex during pentylenetetrazol (PTZ) seizures in rats with and without prior treatment with ethosuximide (ESM), a well-known antiepileptic drug (AED) that raises the threshold for seizures, was given before PTZ. The AED was given before PTZ convulsant administration. We track this thalamo-cortical association with a novel measure we have called the cross-bicoherence gain, or BISCOH. This quantity allows us to measure the spectral coherence in a purely higher order spectralmethodology. BISCOH is able to track the formation of nonlinearities at specific frequencies in the recorded EEG. BISCOH showed a strong increase in low alpha wave harmonic generationat 10 and 12.5 Hz after ESM treatment (p < 0.02 and p < 0.007, respectively). Conventional coherence failed to show distinctive and significant changes in thalamo-cortical coupling after ESM treatment at those frequencies and instead showed changes at 5 Hz. This rise in cortical rhythms is evidence of harmonic generation or new frequency formation in the thalamo-cortical system withAED therapy. BISCOH could become a powerful tool in unraveling changes in coherence due to neuroelectric modulation resulting from drug treatment or electrical stimulation.
皮层和丘脑建立的脑电图和场电位节律可能适应癫痫发作的传播。本文描述了戊四氮(PTZ)癫痫发作大鼠丘脑与皮层之间的相互作用,这些大鼠在给予 PTZ 之前,要么接受了已知抗癫痫药物(AED)依索昔咪的预先治疗,要么没有接受过治疗。AED 在给予 PTZ 致惊厥药物之前给予。我们使用一种新的称为交叉双相干增益(BISCOH)的方法来跟踪这种丘脑-皮层关联。该量允许我们在纯高阶谱方法中测量谱相干性。BISCOH 能够跟踪记录脑电图中特定频率的非线性形成。在 ESM 治疗后,BISCOH 在低 alpha 波谐波生成方面显示出强烈的增加,分别为 10 Hz 和 12.5 Hz(p < 0.02 和 p < 0.007)。在那些频率下,常规相干性未能显示 ESM 治疗后丘脑-皮层耦合的独特和显著变化,而是显示出 5 Hz 的变化。皮质节律的这种增加证明了 AED 治疗后丘脑-皮层系统中的谐波产生或新频率形成。BISCOH 可能成为一种强大的工具,用于揭示由于药物治疗或电刺激引起的神经电调制导致的相干性变化。