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首页> 外文期刊>Documenta Ophthalmologica: Advances in Ophthalmology >Role of latency jittering correction in motion-onset VEP amplitude decay during prolonged visual stimulation.
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Role of latency jittering correction in motion-onset VEP amplitude decay during prolonged visual stimulation.

机译:潜伏期抖动校正在长时间视觉刺激期间在运动发作性VEP振幅衰减中的作用。

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摘要

Visual evoked potentials to motion-onset stimulation (M-VEPs) gradually attenuate in amplitude during examination. The observed decline in averaged responses can be caused by decreases in single response magnitudes and/or increased variability in a response delays, that is, latency jittering. To illuminate the origins of the suppression of M-VEPs during stimuli repetition, we used correlation technique to estimate an upper bound of possible latency jittering of single sweeps and we evaluated the effect of its correction on the amplitudes of three M-VEP dominant peaks P1, N2 and P3. During prolonged visual motion stimulation, the variability of corrective latency shifts in the occipital region increased (r = 0.35: 0.44) and the number of single responses corresponding to the average curve declined in occipital and parietal derivations (r = -0.48: -0.62). While the P1 peak amplitude did not exhibit any time-specific behaviour, the N2 amplitude exhibited a significant decay of 29.4% that was partially reduced to 16.6% in the central occipital derivation by the latency jitter and non-correspondence corrections. The strongest attenuation (32.7%) was observed in the P3 amplitude and was less sensitive to the corrections, dropping only to 27.9%. The main part of the response suppression to repeated motion stimulation was caused by amplitude drop and represents non-stationary process that likely correspond to a fatigue model. The rise of variability in latency jitter correction and the reduction in single responses correlated with the M-VEP were significant factors associated with prolonged motion stimulation. The relation of these parameters to a hypothetical veridical response is ambiguous and can be caused by a time shift of the response or by a change of signal-to-noise ratio. Using selective averaging and latency jitter correction, the effect of response suppression was partially removed.
机译:在检查过程中,视觉诱发电位对运动发作刺激(M-VEP)的振幅逐渐减弱。观察到的平均响应的下降可能是由于单个响应幅度的减小和/或响应延迟的可变性(即延迟抖动)引起的。为了阐明刺激重复过程中M-VEP抑制的起源,我们使用相关技术来估计单次扫描可能出现的时延抖动的上限,并评估了其校正对三个M-VEP主峰P1幅度的影响。 ,N2和P3。在长时间的视觉运动刺激过程中,枕骨区矫正潜伏期变化的变异性增加(r = 0.35:0.44),并且枕骨和顶叶导数对应于平均曲线的单次反应数量下降(r = -0.48:-0.62) 。虽然P1峰值幅度没有表现出任何特定时间的行为,但N2幅度却表现出29.4%的显着衰减,在潜伏时抖动和非对应校正中,在中央枕骨推导中部分减小了16.6%。在P3振幅中观察到最强的衰减(32.7%),对校正的敏感性较小,仅下降到27.9%。对重复运动刺激的响应抑制的主要部分是由振幅下降引起的,代表了可能与疲劳模型相对应的非平稳过程。潜伏期抖动校正的可变性增加以及与M-VEP相关的单个响应的减少是与长时间运动刺激相关的重要因素。这些参数与假设的垂直响应之间的关系是模棱两可的,并且可能由响应的时间偏移或信噪比的变化引起。使用选择性平均和等待时间抖动校正,可以部分消除响应抑制的影响。

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