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Fast and famous: looking for the fastest speed at which a face can be recognized

机译:快速出名:寻找最快的速度以识别脸部

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摘要

Face recognition is supposed to be fast. However, the actual speed at which faces can be recognized remains unknown. To address this issue, we report two experiments run with speed constraints. In both experiments, famous faces had to be recognized among unknown ones using a large set of stimuli to prevent pre-activation of features which would speed up recognition. In the first experiment (31 participants), recognition of famous faces was investigated using a rapid go/no-go task. In the second experiment, 101 participants performed a highly time constrained recognition task using the Speed and Accuracy Boost- ing procedure. Results indicate that the fastest speed at which a face can be recognized is around 360–390 ms. Such latencies are about 100 ms longer than the latencies recorded in similar tasks in which subjects have to detect faces among other stimuli. We discuss which model of activation of the visual ventral stream could account for such latencies. These latencies are not consistent with a purely feed-forward pass of activity throughout the visual ventral stream. An alternative is that face recognition relies on the core network underlying face processing identified in fMRI studies (OFA, FFA, and pSTS) and reentrant loops to refine face representation. However, the model of activation favored is that of an activation of the whole visual ventral stream up to anterior areas, such as the perirhinal cortex, combined with parallel and feed-back processes. Further studies are needed to assess which of these three models of activation can best account for face recognition.
机译:人脸识别应该是快速的。但是,人脸识别的实际速度仍然未知。为了解决这个问题,我们报告了两个在速度限制下进行的实验。在这两个实验中,必须使用大量刺激识别未知面孔中的著名面孔,以防止特征的预先激活而加快识别速度。在第一个实验(31名参与者)中,使用快速执行/不执行任务调查了著名面孔的识别。在第二个实验中,有101名参与者使用“速度和准确性”增强程序执行了时间紧迫的识别任务。结果表明,人脸识别的最快速度约为360–390 ms。这样的等待时间比类似任务中记录的等待时间长约100毫秒,在类似任务中,受试者必须检测其他刺激中的面部。我们讨论了哪种视觉腹侧流激活模型可以解释这种潜伏期。这些潜伏期与整个视觉腹侧流的纯粹前馈活动不一致。另一种选择是,人脸识别依赖于在fMRI研究(OFA,FFA和pSTS)中确定的人脸处理基础核心网络和折返循环来完善人脸表示。但是,激活的模型是整个视觉腹侧流直到前部区域(如周围神经皮层)的激活的模型,结合了并行和反馈过程。需要进一步的研究来评估这三种激活模型中的哪一种可以最好地说明人脸识别。

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