Lorenceau J
Laboratoire de Psychologie Expérimentale, Université R. Descartes, CNRS, Paris, France.
Vision Res. 1996 Nov;36(21):3415-27. doi: 10.1016/0042-6989(96)00086-7.
To better understand how local motion detectors merge their responses so as to permit the global determination of objects' movements in the visual field, direction discrimination of performance was measured using a flexible class of moving dots--two sets of dots translating sinusoidally 90 deg out of phase along orthogonal axes. When dots' velocities are combined, a global motion along a circular trajectory emerges, clockwise or counter-clockwise depending on the sign of the phase lag. However, the results of the present experiments indicate that dot patterns are segregated into distinct, but interacting, streams when each dot motion can be accurately determined. In contrast, perceptual coherence of the global motion occurs when each local motion signal is "blurred" by a "motion noise". Direction discrimination performance then increases regularly with both noise amplitude and noise frequency, i.e., noise speed. Performance also increases when relative motion between dots is added. Testing different dot configurations indicates that performance is better for spatial arrangements that display structural properties (a square shape), as compared to overlapping random distributions. Interestingly, when the delay between stimulus onset and motion onset increases up to 300 msec, performance improves when dot patterns convey come form of structural organization but not when the dots are distributed at random. Relations of these results to existing models of motion integration are considered.
为了更好地理解局部运动探测器如何合并它们的反应,以便在视野中全局确定物体的运动,我们使用了一类灵活的移动点——两组点沿正交轴作正弦式平移,相位相差90度,来测量性能的方向辨别能力。当点的速度组合起来时,会出现沿圆形轨迹的全局运动,顺时针或逆时针取决于相位滞后的符号。然而,本实验的结果表明,当每个点的运动能够被准确确定时,点图案会被分离成不同但相互作用的流。相反,当每个局部运动信号被“运动噪声”“模糊”时,会出现全局运动的感知连贯性。然后,方向辨别性能会随着噪声幅度和噪声频率(即噪声速度)有规律地增加。当点之间添加相对运动时,性能也会提高。测试不同的点配置表明,与重叠的随机分布相比,对于显示结构特性(方形)的空间排列,性能更好。有趣的是,当刺激开始和运动开始之间的延迟增加到300毫秒时,当点图案传达某种形式的结构组织时性能会提高,但当点随机分布时则不会。我们考虑了这些结果与现有运动整合模型的关系。