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首页> 外文期刊>Advances in Experimental Medicine and Biology >Measuring the apparent width of auditory sources in normal and impaired hearing.
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Measuring the apparent width of auditory sources in normal and impaired hearing.

机译:测量正常和受损听觉中听觉来源的表观宽度。

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摘要

It is often assumed that single sources of sound are perceived as being punctate, but this cannot be guaranteed, especially for hearing-impaired listeners. Any impairment that gives a reduction at the periphery in the accuracy of coding fine-scale temporal information must give a slight interaural jitter in the temporal information passed to higher centres, and so would be expected to lead to an effective reduction in the interaural coherence (IC) of any stimulus. This would lead to deficits in locating sounds, but deficits of imprecision, not inaccuracy. In turn, this implies that older hearing-impaired individuals should have a diminished perception of auditory space, affecting their abilities to perceive clear, concise, punctate spatial impressions or to separate sounds by location. The current work tested this hypothesis by using two separate visual-analogy methods to measure auditory source width for broadband sounds. In one method, the listener sketched the auditory image, a visual-description task, and for the other, the listener selected the closest one of a set of pre-drawn visual sketches (note that the first is an open-set experiment, whereas the second is a closed-set experiment). We found that older hearing-impaired listeners had increased difficulty in judging changes in interaural coherence, showing a corresponding insensitivity to auditory source width in the visual-analogy tasks.
机译:通常认为,单个声音源被认为是点状的,但这不能保证,特别是对于有听力障碍的听众。任何在外围对精细尺度时间信息进行编码的准确性降低的损伤都必须在传递给较高中心的时间信息中使听觉产生轻微的抖动,因此可以预期导致听觉相关性的有效降低( IC)的任何刺激。这会导致声音定位的缺陷,但会导致不精确的缺陷,而不是准确性的缺陷。反过来,这意味着年龄较大的听力受损人士对听觉空间的感知应减弱,从而影响他们感知清晰,简洁,准确的空间印象或按位置分离声音的能力。当前的工作通过使用两种单独的视觉模拟方法来测量宽带声音的听觉源宽度,从而检验了这一假设。在一种方法中,听者绘制了听觉图像的草图,进行了视觉描述任务,而在另一种方法中,听者选择了一组预先绘制的视觉草图中最接近的一个(请注意,第一个是开放式实验,而第二个是封闭式实验)。我们发现,年龄较大的听力受损的听众在判断耳间连贯性变化时增加了难度,这在视觉模拟任务中显示出对听觉源宽度的不敏感性。

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