Distinct detection and discrimination sensitivities in visual processing of real versus unreal optic flow.

IF 3.2 3区 心理学 Q1 PSYCHOLOGY, EXPERIMENTAL
Li Li, Xuechun Shen, Shuguang Kuai
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Abstract

We examined the intricate mechanisms underlying visual processing of complex motion stimuli by measuring the detection sensitivity to contraction and expansion patterns and the discrimination sensitivity to the location of the center of motion (CoM) in various real and unreal optic flow stimuli. We conducted two experiments (N = 20 each) and compared responses to both "real" optic flow stimuli containing information about self-movement in a three-dimensional scene and "unreal" optic flow stimuli lacking such information. We found that detection sensitivity to contraction surpassed that to expansion patterns for unreal optic flow stimuli, whereas this trend was reversed for real optic flow stimuli. Furthermore, while discrimination sensitivity to the CoM location was not affected by stimulus duration for unreal optic flow stimuli, it showed a significant improvement when stimulus duration increased from 100 to 400 ms for real optic flow stimuli. These findings provide compelling evidence that the visual system employs distinct processing approaches for real versus unreal optic flow even when they are perfectly matched for two-dimensional global features and local motion signals. These differences reveal influences of self-movement in natural environments, enabling the visual system to uniquely process stimuli with significant survival implications.

真假光流视觉处理中不同的检测和分辨灵敏度。
通过测量不同真实和虚幻光流刺激对收缩和膨胀模式的检测灵敏度以及对运动中心位置的识别灵敏度,研究了复杂运动刺激视觉加工的复杂机制。我们进行了两个实验(每个实验N = 20),并比较了包含三维场景中自我运动信息的“真实”光流刺激和缺乏此类信息的“虚幻”光流刺激的反应。我们发现,对于不真实的光流刺激,对收缩模式的检测灵敏度超过了对膨胀模式的检测灵敏度,而对于真实的光流刺激,这种趋势是相反的。此外,对于非真实光流刺激,当刺激时间从100 ms增加到400 ms时,对CoM位置的识别灵敏度不受刺激时间的影响,但在真实光流刺激下,当刺激时间从100 ms增加到400 ms时,识别灵敏度显著提高。这些发现提供了令人信服的证据,表明视觉系统对真实和不真实的光流采用不同的处理方法,即使它们对二维全局特征和局部运动信号完全匹配。这些差异揭示了自然环境中自我运动的影响,使视觉系统能够独特地处理具有重要生存意义的刺激。
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来源期刊
CiteScore
6.70
自引率
2.90%
发文量
165
期刊介绍: The journal provides coverage spanning a broad spectrum of topics in all areas of experimental psychology. The journal is primarily dedicated to the publication of theory and review articles and brief reports of outstanding experimental work. Areas of coverage include cognitive psychology broadly construed, including but not limited to action, perception, & attention, language, learning & memory, reasoning & decision making, and social cognition. We welcome submissions that approach these issues from a variety of perspectives such as behavioral measurements, comparative psychology, development, evolutionary psychology, genetics, neuroscience, and quantitative/computational modeling. We particularly encourage integrative research that crosses traditional content and methodological boundaries.
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