Suppr超能文献

针对调谐至粗糙和精细特征的运动传感器之间相互拮抗作用的证据。

Evidence for reciprocal antagonism between motion sensors tuned to coarse and fine features.

作者信息

Serrano-Pedraza Ignacio, Goddard Paul, Derrington Andrew M

机构信息

Laboratory of Visual Neuroscience, Barrow Neurological Institute, Phoenix, AZ, USA.

出版信息

J Vis. 2007 Sep 20;7(12):8.1-14. doi: 10.1167/7.12.8.

Abstract

Early visual processing analyses fine and coarse image features separately. Here we show that motion signals derived from fine and coarse analyses are combined in rather a surprising way: Coarse and fine motion sensors representing the same direction of motion inhibit one another and an imbalance can reverse the motion perceived. Observers judged the direction of motion of patches of filtered two-dimensional noise, centered on 1 and 3 cycles/deg. When both sets of noise were present and only the 3 cycles/deg noise moved, judgments were reversed at short durations. When both sets of noise moved, judgments were correct but sensitivity was impaired. Reversals and impairments occurred both with isotropic noise and with orientation-filtered noise. The reversals and impairments could be simulated in a model of motion sensing by adding a stage in which the outputs of motion sensors tuned to 1 and 3 cycles/deg and the same direction of motion were subtracted from one another. The subtraction model predicted and we confirmed in experiments with orientation-filtered noise that if the 1 cycle/deg noise flickered and the 3 cycles/deg noise moved, the 1 cycle/deg noise appeared to move in the opposite direction to the 3 cycles/deg noise even at long durations.

摘要

早期视觉处理分别分析精细和粗糙的图像特征。我们在此表明,从精细和粗糙分析中得出的运动信号以一种相当惊人的方式进行组合:代表相同运动方向的粗糙和精细运动传感器相互抑制,并且这种不平衡会使感知到的运动方向反转。观察者判断以1周/度和3周/度为中心的二维滤波噪声斑块的运动方向。当两组噪声都存在且只有3周/度的噪声移动时,在短时间内判断会反转。当两组噪声都移动时,判断是正确的,但敏感度会受损。各向同性噪声和方向滤波噪声都会出现反转和受损情况。通过在运动感知模型中添加一个阶段来模拟反转和受损情况,在该阶段中,将调谐到1周/度和3周/度且运动方向相同的运动传感器的输出相互相减。减法模型进行了预测,并且我们在方向滤波噪声的实验中证实,如果1周/度的噪声闪烁而3周/度的噪声移动,即使在长时间情况下,1周/度的噪声似乎也会朝着与3周/度的噪声相反的方向移动。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验