通过特征不变表征将视觉感知学习转移到与任务无关的特征上:行为实验与模型模拟。

IF 2 4区 心理学 Q2 OPHTHALMOLOGY Journal of Vision Pub Date : 2024-06-03 DOI:10.1167/jov.24.6.17
Jiajuan Liu, Zhong-Lin Lu, Barbara Dosher
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引用次数: 0

摘要

大量文献对知觉学习的特异性和迁移进行了研究,表明了一个复杂的情况。在这里,我们区分了对 "任务相关 "特征变化的迁移(例如,将学习到的方位任务迁移到不同的参考方位)和对 "任务无关 "特征的迁移(例如,将学习到的方位任务迁移到不同的视网膜位置或不同的空间频率),并重点研究了后者的机制。在实验中,我们评估了使用不相关特征的一个值(如空间频率)学习一个特征(如方位)的判断是否会转移到不相关特征的另一个值上。实验 1 考察了用一种或多种空间频率进行八种方位识别的学习是否会转移到五种不同空间频率的刺激上。实验 2 与实验 1 类似,考察的是一个或多个方向的八种空间频率替代识别学习是否会转移到五个不同方向的刺激物上。以单一空间频率进行的方位任务训练可广泛转移到所有其他空间频率,而以最高空间频率进行的训练则倾向于特异性。对空间频率任务的训练可以完全转移到所有方向。在计算上,我们扩展了识别综合加权理论(I-IRT)来解释转移数据(Dosher、Liu 和 Lu,2023;Liu、Dosher 和 Lu,2023)。正如原始 IRT 中的位置不变表征可以解释视网膜位置的转移一样,加入特征不变表征也能有效解释观察到的转移。综上所述,我们认为特征不变表征可以解释对 "任务无关 "特征的学习迁移。
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Transfer of visual perceptual learning over a task-irrelevant feature through feature-invariant representations: Behavioral experiments and model simulations.

A large body of literature has examined specificity and transfer of perceptual learning, suggesting a complex picture. Here, we distinguish between transfer over variations in a "task-relevant" feature (e.g., transfer of a learned orientation task to a different reference orientation) and transfer over a "task-irrelevant" feature (e.g., transfer of a learned orientation task to a different retinal location or different spatial frequency), and we focus on the mechanism for the latter. Experimentally, we assessed whether learning a judgment of one feature (such as orientation) using one value of an irrelevant feature (e.g., spatial frequency) transfers to another value of the irrelevant feature. Experiment 1 examined whether learning in eight-alternative orientation identification with one or multiple spatial frequencies transfers to stimuli at five different spatial frequencies. Experiment 2 paralleled Experiment 1, examining whether learning in eight-alternative spatial-frequency identification at one or multiple orientations transfers to stimuli with five different orientations. Training the orientation task with a single spatial frequency transferred widely to all other spatial frequencies, with a tendency to specificity when training with the highest spatial frequency. Training the spatial frequency task fully transferred across all orientations. Computationally, we extended the identification integrated reweighting theory (I-IRT) to account for the transfer data (Dosher, Liu, & Lu, 2023; Liu, Dosher, & Lu, 2023). Just as location-invariant representations in the original IRT explain transfer over retinal locations, incorporating feature-invariant representations effectively accounted for the observed transfer. Taken together, we suggest that feature-invariant representations can account for transfer of learning over a "task-irrelevant" feature.

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来源期刊
Journal of Vision
Journal of Vision 医学-眼科学
CiteScore
2.90
自引率
5.60%
发文量
218
审稿时长
3-6 weeks
期刊介绍: Exploring all aspects of biological visual function, including spatial vision, perception, low vision, color vision and more, spanning the fields of neuroscience, psychology and psychophysics.
期刊最新文献
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