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Where did that sound come from? Comparing the ability to localise using audification and audition

机译:声音从哪里来?比较使用声音和试听进行本地化的能力

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Purpose: A prototype device was developed to allow individuals to hear ultrasound reflections off environmental obstacles. Previous studies have shown that this device allows for better distance judgement than audition and allows for effective passage through the centreline of apertures. The purpose of this research was to evaluate audification as a method to localise direct sound sources as compared to audition. Method: In an anechoic environment, participants localised point-sound sources for three conditions: auditory, audified ultrasound with receivers facing laterally, and audified ultrasound with receivers facing forward. Results: Azimuth localisation was similar within a range of -35° to 35° in front of the participant among all conditions. At the periphery, -70° and 70°, audified ultrasound was more accurate than audition for novice participants. No difference was evident in user elevation accuracy for these signals among the different conditions. Conclusion: Audification of ultrasound can be effective for localising point-source sounds in the azimuth direction, but more evidence is required to evaluate accuracy in the vertical direction. Implications for Rehabilitation Secondary mobility devices can be used by individuals with visual impairment to avoid obstacles above waist height. Audification allows for skill-based response enabling intuitive obstacle avoidance and localization of point sound sources. Localization of peripheral sounds was shown in this study to be better with audified ultrasound than audition.
机译:目的:开发了一种原型设备,以使个人能够听到来自环境障碍物的超声反射。先前的研究表明,与听觉相比,该设备可以更好地判断距离,并可以有效地通过孔的中心线。这项研究的目的是评估可听性,这是一种比直接听声更能定位直接声源的方法。方法:在无回声环境中,参与者将点声源定位在以下三种情况下:听觉,听觉超声,接收器面向侧面,以及听觉超声,接收器面向前方。结果:在所有条件下,参与者在-35°至35°范围内方位角定位相似。对于初学者,在-70°和70°的外围,超声听觉比听觉更准确。在不同条件下,这些信号的用户提升精度没有明显差异。结论:超声的超声处理可以有效地将点源声音定位在方位方向上,但是需要更多的证据来评估垂直方向上的准确性。康复的含义视力障碍者可以使用辅助移动设备,以避开腰部高度以上的障碍物。审核可实现基于技能的响应,从而实现直观的避障和点声源定位。在这项研究中显示,使用超声听觉比听觉对周围声音的定位更好。

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