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Assessment of nonlinear interactions in event-related potentials (ERPs) elicited by stimuli presented at short inter-stimulus intervals

机译:评估在短时间间隔内的刺激引起的事件相关电位(ERP)中的非线性相互作用

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The recording of brain event-related potentials (ERPs) is a widely used technique to investigate the neural basis of sensory perception and cognitive processing in humans‥ However, when the temporal interval between two consecutive stimuli used to elicit ERPs is smaller than the latency of the main ERP peaks, i.e., when the stimuli are presented at a fast rate, overlaps between the ERPs elicited by successive stimuli may occur. These overlaps are usually dealt with by assuming that there is no nonlinear interaction between these responses, and thereby by performing algebraic waveform subtractions. Here we propose a straightforward approach to assess the presence of nonlinear interactions in a ERPs. This approach is a direct consequence of the concept of nonlinearity between two successive impulsive-like stimuli. By applying this approach to ERPs elicited by nociceptive cutaneous stimuli delivered at inter-stimulus intervals (ISIs) ranging from 250 ms to 2000 ms, we provide evidence that there are no nonlinear interactions between nociceptive ERPs, even at the shortest ISIs.
机译:脑事件相关电位(ERPs)的记录是研究人类感觉知觉和认知过程的神经基础的一种广泛使用的技术‥但是,当用于诱发ERPs的两个连续刺激之间的时间间隔小于ERP的潜伏期时主要的ERP高峰,即当以快速的速度出现刺激时,可能会出现由连续刺激引起的ERP之间的重叠。通常通过假设这些响应之间没有非线性相互作用来处理这些重叠,从而执行代数波形减法。在这里,我们提出了一种简单的方法来评估ERP中非线性相互作用的存在。这种方法是两个连续的脉冲状刺激之间的非线性概念的直接结果。通过将此方法应用于在250毫秒至2000毫秒的刺激间间隔(ISI)传递的伤害性皮肤刺激引起的ERPs,我们提供了证据,即使在最短的ISI时,伤害性ERP之间也没有非线性相互作用。

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