Department of Optometry and Visual Science, Buskerud University College, Institute of Optometry and Visual Science, Kongsberg, Norway.
Invest Ophthalmol Vis Sci. 2013 Aug 5;54(8):5204-10. doi: 10.1167/iovs.13-12005.
Sensitivity to moving structure decreases with age and slow speeds may be selectively impaired. This loss could be caused by elevated internal noise in the responses of motion sensors or a reduction in the efficiency with which motion responses are integrated. We adapt an equivalent noise paradigm to analyze the perception of slow and fast speed motion as a function of normal aging.
A total of 70 observers (20 to 89 years) identified the direction of global motion in a two-alternative forced choice task. In a central 8° aperture, 100 dots of 10% Michelson contrast were moving at 1.6 or 5.5°/s. The direction of each dot was drawn from a Gaussian distribution whose mean and SD were adaptively changed. Internal noise and sampling efficiency were estimated from direction discrimination thresholds as a function of external direction noise, speed, and age.
Direction sensitivity was significantly worse for slow speeds at all ages (paired t-test, P < 0.05) and decreased approximately 2% per year (linear regressions, P < 0.01). This aging deficit was due to significant changes in internal noise (5.5°/s) and sampling efficiency (1.6°/s) (linear regression, P < 0.05).
There is motion sensitivity loss with age that arises from an increase in internal noise in the responses of directional sensors and a decrease in responses that contribute to the global decision. Differences in the rates of progression at each speed indicate that motion is processed by independent systems tuned to different speeds, and that the channel for slow speed may be more vulnerable to normal age-related changes.
对运动结构的敏感性随年龄增长而降低,并且可能会选择性地损害低速运动的感知能力。这种损失可能是由于运动传感器响应中的内部噪声增加,或者是由于运动响应的整合效率降低所致。我们采用等效噪声范式来分析作为正常衰老的函数的慢、快运动感知。
共有 70 名观察者(20 至 89 岁)在二选一强制选择任务中识别全局运动的方向。在中央 8°孔径内,100 个 10%Michelson 对比度的点以 1.6 或 5.5°/s 的速度运动。每个点的方向是从服从正态分布的方向中随机抽取的,其均值和标准差是通过自适应变化的。内部噪声和采样效率是通过方向辨别阈值来估计的,其是作为外部方向噪声、速度和年龄的函数。
在所有年龄段,慢速度的方向敏感性都显著降低(配对 t 检验,P < 0.05),并且每年约降低 2%(线性回归,P < 0.01)。这种与年龄相关的缺陷是由于定向传感器响应中的内部噪声(5.5°/s)和采样效率(1.6°/s)显著变化(线性回归,P < 0.05)所致。
随着年龄的增长,运动敏感性会下降,这是由于方向传感器响应中的内部噪声增加以及对全局决策有贡献的响应减少所致。在每个速度下的进展速度差异表明,运动是由独立的系统以不同的速度进行处理的,而用于慢速度的通道可能更容易受到与年龄相关的正常变化的影响。