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Inhibition of the Neural Activity by Paired Stimulation in Somatosensory Evoked Potentials and High Frequency Oscillations

机译:体感诱发电位和高频振荡中成对刺激对神经活动的抑制作用

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This study evaluated the inhibition of neural reaction induced by paired stimulation using somatosensory-evoked potentials (SEPs) and high frequency oscillations (HFOs) in healthy subjects. The paired stimulations were applied to the subject at the specific interval. We used three interstimulus intervals (ISIs: 60, 100 and 300 ms) to analyze SEPs components (PIS, N20 and P25) and HFOs caused paired electrical stimuli which are delivered to right median nerve. SEPs has high-frequency component (about 600Hz) is called HFOs in the intrinsic latency near N20. Shorter ISIs (less than 100ms) decreased the P15-N20 and N20-P25 amplitude significantly. Furthermore, also the maximum amplitude and the intensity of HFOs (both early and late components) decreased significantly as the ISIs shorten. Hashimoto et al and Curio el al suggested early HFOs reflect population spikes in thalamo-cortical axons, and later may reflect in SI within grey matter. Therefore, we hypothesis that population spike in the time series variation of neural population spikes decreased by paired stimulation to peripheral nerve. It may be non-invasive technique to investigate neural activity in human cortex.
机译:这项研究评估了在健康受试者中使用体感诱发电位(SEP)和高频振荡(HFO)对配对刺激诱导的神经反应的抑制作用。配对的刺激以特定的时间间隔应用于对象。我们使用三个刺激间隔(ISI:60、100和300 ms)来分析SEP组件(PIS,N20和P25)和HFO引起的成对电刺激,这些电刺激被传递到右正中神经。 SEP具有高频成分(大约600Hz),在N20附近的固有延迟中称为HFO。较短的ISI(小于100毫秒)会显着降低P15-N20和N20-P25的幅度。此外,随着ISI的缩短,HFO(早期和晚期成分)的最大幅度和强度也显着降低。 Hashimoto等人和Curio等人建议,早期的HFO反映了丘脑皮质轴突的种群高峰,后来可能反映了灰质中的SI。因此,我们假设通过配对对周围神经的刺激,神经种群峰值的时间序列变化中的种群峰值减少了。研究人类皮层中的神经活动可能是非侵入性技术。

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