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Spatial frequency requirements for audiovisual speech perception

机译:视听语音感知的空间频率要求

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Spatial frequency band-pass and low-pass filtered images of a talker were used in an audiovisual speech-in-noise task. Three experiments tested subjects' use of information contained in the different filter bands with center frequencies ranging from 2.7 to 44.1 cycles/face (c/face). Experiment 1 demonstrated that information from a broad range of spatial frequencies enhanced auditory intelligibility. The frequency bands differed in the degree of enhancement, with a peak being observed in a mid-range band (11-c/face center frequency). Experiment 2 showed that this pattern was not influenced by viewing distance and, thus, that the results are best interpreted in object spatial frequency, rather than in retinal coordinates. Experiment 3 showed that low-pass filtered images could produce a performance equivalent to that produced by unfiltered images. These experiments are consistent with the hypothesis that high spatial resolution information is not necessary for audiovisual speech perception and that a limited range of spatial frequency spectrum is sufficient.
机译:讲话者的空间带通和低通滤波图像被用于视听噪声中。三个实验测试了受试者对中心频率范围为2.7至44.1个循环/人脸(c / face)的不同滤波器频带中包含的信息的使用。实验1表明,来自广泛空间频率的信息增强了听觉清晰度。频段的增强程度不同,在中频段(11-c /面部中心频率)观察到一个峰值。实验2表明,该模式不受观察距离的影响,因此,最好以物体空间频率而不是视网膜坐标来解释结果。实验3表明,低通滤波后的图像可以产生与未经滤波的图像相同的性能。这些实验与以下假设一致:高空间分辨率信息对于视听语音感知不是必需的,并且有限范围的空间频谱就足够了。

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