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Visual evoked potentials to change in coloration of a moving bar

机译:视觉诱发电位改变移动条的颜色

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摘要

In our previous study we found that it takes less time to detect coloration change in a moving object compared to coloration change in a stationary one (). Here, we replicated the experiment, but in addition to reaction times (RTs) we measured visual evoked potentials (VEPs), to see whether this effect of motion is revealed at the cortical level of information processing. We asked our subjects to detect changes in coloration of stationary (0°/s) and moving bars (4.4 and 17.6°/s). Psychophysical results replicate the findings from the previous study showing decreased RTs to coloration changes with increase of velocity of the color changing stimulus. The effect of velocity on VEPs was opposite to the one found on RTs. Except for component N1, the amplitudes of VEPs elicited by the coloration change of faster moving objects were reduced than those elicited by the coloration change of slower moving or stationary objects. The only significant effect of velocity on latency of peaks was found for P2 in frontal region. The results are discussed in the light of change-to-change interval and the two methods reflecting different processing mechanisms.
机译:在我们先前的研究中,我们发现与固定物体()中的颜色变化相比,检测运动物体中的颜色变化所需的时间更少。在这里,我们重复了实验,但是除了反应时间(RTs)之外,我们还测量了视觉诱发电位(VEP),以查看运动的这种影响是否在信息处理的皮层水平上得以揭示。我们要求受试者检测静止(0 ° / s)和活动条(4.4和17.6 ° / s)的颜色变化。心理物理结果重复了先前研究的结果,表明随着变色刺激速度的增加,RT减少至变色。速度对VEPs的影响与RTs上相反。除了分量N1之外,与较慢运动或静止物体的颜色变化所引起的相比,由较快运动物体的颜色变化所引起的VEP的振幅减小了。速度对峰值潜伏期的唯一显着影响是在额叶区域的P2中发现的。根据变更间隔和两种反映不同处理机制的方法讨论了结果。

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