Department of Vision Science, Glasgow Caledonian University, 70 Cowcaddens Road, Glasgow, G4 0BA, United Kingdom.
Department of Engineering, Glasgow Caledonian University, 70 Cowcaddens Road, Glasgow, G4 0BA, United Kingdom.
Sci Rep. 2018 Jul 3;8(1):10013. doi: 10.1038/s41598-018-27803-5.
Our aim was to use both behavioural and neuroimaging data to identify indicators of perceptual decline in motion processing. We employed a global motion coherence task and functional Near Infrared Spectroscopy (fNIRS). Healthy adults (n = 72, 18-85) were recruited into the following groups: young (n = 28, mean age = 28), middle-aged (n = 22, mean age = 50), and older adults (n = 23, mean age = 70). Participants were assessed on their motion coherence thresholds at 3 different speeds using a psychophysical design. As expected, we report age group differences in motion processing as demonstrated by higher motion coherence thresholds in older adults. Crucially, we add correlational data showing that global motion perception declines linearly as a function of age. The associated fNIRS recordings provide a clear physiological correlate of global motion perception. The crux of this study lies in the robust linear correlation between age and haemodynamic response for both measures of oxygenation. We hypothesise that there is an increase in neural recruitment, necessitating an increase in metabolic need and blood flow, which presents as a higher oxygenated haemoglobin response. We report age-related changes in motion perception with poorer behavioural performance (high motion coherence thresholds) associated with an increased haemodynamic response.
我们的目的是利用行为和神经影像学数据来识别运动处理中感知下降的指标。我们采用了全局运动一致性任务和功能近红外光谱(fNIRS)。健康成年人(n=72,18-85 岁)被分为以下三组:年轻组(n=28,平均年龄 28 岁)、中年组(n=22,平均年龄 50 岁)和老年组(n=23,平均年龄 70 岁)。参与者使用心理物理设计在 3 种不同速度下评估他们的运动一致性阈值。正如预期的那样,我们报告了运动处理方面的年龄组差异,表现为老年人的运动一致性阈值较高。至关重要的是,我们添加了相关数据,表明全局运动感知随着年龄的增长呈线性下降。相关的 fNIRS 记录提供了全局运动感知的明确生理相关性。这项研究的关键在于,两种氧合测量值的年龄和血液动力学反应之间存在稳健的线性相关性。我们假设,随着神经募集的增加,需要增加代谢需求和血流量,这表现为更高的氧合血红蛋白反应。我们报告了与行为表现较差(高运动一致性阈值)相关的运动感知的年龄相关变化,这与血液动力学反应增加有关。