Jiang Yang, Luo Yue-Jia, Parasuraman Raja
Behavioral Science Department, University of Kentucky College of Medicine, Lexington, 40536, USA.
Neuropsychol Dev Cogn B Aging Neuropsychol Cogn. 2009 Mar;16(2):164-82. doi: 10.1080/13825580802348588.
Previously we reported that priming of visual motion perception is reduced in older adults compared to younger adults (Jiang, Greenwood, & Parasuraman, 1999, Psychology and Aging, 14(4), 619; Jiang, Luo, & Parasuraman, 2002b, Neuropsychology, 16(2), 140). To examine the neural mechanisms underlying this age-related effect, event-related brain potentials (ERPs) were recorded during perceptual judgments of motion directions by younger and older adults in two experiments. When judging single-step motion, both younger and older adults evoked significantly larger ERP late positive component (LPC) responses to unambiguous motion compared to LPC responses elicited by ambiguous motion. In contrast, compared to the younger adults, the older adults evoked comparable but delayed ERP responses to single motion steps. In the second experiment the younger and older groups judged the directions of two successive motion-steps (either motion priming or motion reversals). Under short (200-400 ms) stimulus onset asynchrony (SOA), the difference between the ERP responses to priming and reversal conditions was significantly larger for the younger than for the older adults. This study provides the first electrophysiological evidence that brain aging leads to delayed processing of single motion direction and visual motion priming as early as 100 ms in the early visual cortex. Age-related changes in strength and temporal characteristics of neural responses in temporal-parietal regions were particularly pronounced in older adults when successive motion signals are placed closely in time, within 400 ms.
此前我们报道,与年轻人相比,老年人视觉运动感知的启动能力有所下降(Jiang、Greenwood和Parasuraman,1999年,《心理学与衰老》,第14卷第4期,619页;Jiang、Luo和Parasuraman,2002b年,《神经心理学》,第16卷第2期,140页)。为了探究这种与年龄相关效应背后的神经机制,在两项实验中记录了年轻人和老年人在判断运动方向时的事件相关脑电位(ERP)。在判断单步运动时,与由模糊运动引发的LPC反应相比,年轻人和老年人对明确运动都诱发了显著更大的ERP晚期正成分(LPC)反应。相比之下,与年轻人相比,老年人对单步运动诱发了可比但延迟的ERP反应。在第二项实验中,年轻人和老年组判断两个连续运动步骤(运动启动或运动反转)的方向。在短(200 - 400毫秒)刺激起始异步(SOA)条件下,年轻人对启动和反转条件的ERP反应差异显著大于老年人。这项研究提供了首个电生理证据,表明大脑衰老会导致在早期视觉皮层中,早在100毫秒时就出现单运动方向处理延迟和视觉运动启动延迟。当连续运动信号在400毫秒内时间上紧密排列时,老年人颞顶叶区域神经反应强度和时间特征的年龄相关变化尤为明显。