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Human scotopic spatiotemporal sensitivity: a comparison of psychophysical and electrophysiological data

机译:人类暗区时空敏感性:心理物理和电生理数据的比较

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摘要

The aim of the study was to investigate spatiotemporal visual functions under scotopic and photopic conditions in order to acquire human psychophysical and electrophysiological data that are comparable with contrast sensitivities based on single-unit recordings in animal experiments. Static and dynamic contrast sensitivities (CSs) and steady-state visual evoked potentials (VEPs) were measured under photopic and scotopic conditions in healthy volunteers. The results from the CS experiment indicated that the inclusion of temporal modulation and the application of scotopic luminance levels uniformly resulted in a relatively increased sensitivity for low spatial frequencies. Similarly, analysis of the second harmonic component of the VEPs demonstrated a shift from band-pass to low-pass functions. These results suggest that, under scotopic conditions, human visuospatial processing is characteristically predominated by the functional activity of the magnocellular pathways.
机译:这项研究的目的是研究暗视和明视条件下的时空视觉功能,以便获得与基于动物实验中单个记录的对比敏感度可比的人类心理和电生理数据。在健康志愿者中,在明视和暗视条件下测量静态和动态对比敏感度(CSs)和稳态视觉诱发电位(VEP)。 CS实验的结果表明,包含时间调制和暗视亮度水平的应用均匀地导致了对低空间频率的相对灵敏度的提高。同样,对VEP的二次谐波成分的分析表明,从带通功能向低通功能转变。这些结果表明,在暗视条件下,人类视觉空间加工的特征是大细胞通路的功能活性。

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