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Task-dependent calibration of auditory spatial perception through environmental visual observation

机译:通过环境视觉观察对听觉空间感知进行任务相关的校准

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Visual information is paramount to space perception. Vision influences auditory space estimation. Many studies show that simultaneous visual and auditory cues improve precision of the final multisensory estimate. However, the amount or the temporal extent of visual information, that is sufficient to influence auditory perception, is still unknown. It is therefore interesting to know if vision can improve auditory precision through a short-term environmental observation preceding the audio task and whether this influence is task-specific or environment-specific or both. To test these issues we investigate possible improvements of acoustic precision with sighted blindfolded participants in two audio tasks [minimum audible angle (MAA) and space bisection] and two acoustically different environments (normal room and anechoic room). With respect to a baseline of auditory precision, we found an improvement of precision in the space bisection task but not in the MAA after the observation of a normal room. No improvement was found when performing the same task in an anechoic chamber. In addition, no difference was found between a condition of short environment observation and a condition of full vision during the whole experimental session. Our results suggest that even short-term environmental observation can calibrate auditory spatial performance. They also suggest that echoes can be the cue that underpins visual calibration. Echoes may mediate the transfer of information from the visual to the auditory system.
机译:视觉信息对空间感知至关重要。视觉影响听觉空间估计。许多研究表明,视觉和听觉的同时提示可提高最终多感官估计的准确性。然而,仍不知道足以影响听觉感知的视觉信息的量或时间范围。因此,有趣的是,视觉是否可以通过音频任务之前的短期环境观察来提高听觉精度,以及这种影响是特定于任务的还是特定于环境的,还是两者都有。为了测试这些问题,我们研究了在两个音频任务(最小听觉角(MAA)和空间二等分)和两个声学上不同的环境(正常房间和消声房间)中被目盲者蒙住眼睛的参与者可能会提高的声学精度。关于听觉精度的基准,我们发现在观察正常房间后,空间平分任务的精度有所提高,但在MAA中却没有。在消声室内执行相同任务时,未发现任何改进。另外,在整个实验过程中,短时观察环境与全视条件之间没有发现差异。我们的结果表明,即使是短期环境观察也可以校准听觉空间性能。他们还暗示,回声可能是支撑视觉校准的线索。回声可以介导信息从视觉到听觉系统的传递。

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