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首页> 外文期刊>Attention, perception & psychophysics >The T?lz Temporal Topography Study: Mapping the visual field across the life span. Part I: The topography of light detection and temporal-information processing
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The T?lz Temporal Topography Study: Mapping the visual field across the life span. Part I: The topography of light detection and temporal-information processing

机译:T?lz时间地形研究:绘制整个生命周期的视野。第一部分:光检测和时间信息处理的地形

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Temporal performance parameters vary across the visual field. Their topographical distributions relative to each other and relative to basic visual performance measures and their relative change over the life span are unknown. Our goal was to characterize the topography and age-related change of temporal performance. We acquired visual field maps in 95 healthy participants (age: 10-90 years): perimetric thresholds, double-pulse resolution (DPR), reaction times (RTs), and letter contrast thresholds. DPR and perimetric thresholds increased with eccentricity and age; the periphery showed a more pronounced age-related increase than the center. RT increased only slightly and uniformly with eccentricity. It remained almost constant up to the age of 60, a marked change occurring only above 80. Overall, age was a poor predictor of functionality. Performance decline could be explained only in part by the aging of the retina and optic media. In Part II, we therefore examine higher visual and cognitive functions.
机译:时间性能参数在整个视野中都不同。它们相对于彼此以及相对于基本视觉性能指标的地形分布以及它们在整个寿命期内的相对变化是未知的。我们的目标是表征时间表现的地形和与年龄相关的变化。我们获得了95位健康参与者(年龄:10-90岁)的视野图:视野阈值,双脉冲分辨率(DPR),反应时间(RTs)和字母对比度阈值。 DPR和视野阈值随离心率和年龄的增加而增加;与中心相比,外围地区的年龄相关性增长更为明显。 RT随偏心率仅略微均匀增加。直到60岁,它几乎保持不变,只有80岁以上才出现明显变化。总的来说,年龄是功能性的不良预测指标。性能下降只能部分归因于视网膜和视神经介质的老化。因此,在第二部分中,我们考察了更高的视觉和认知功能。

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