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Establishing standardized conditions for clinically available sound-localization tests: A multicenter approach
Tadao Yoshida1, Takashi Ishino2, Satoshi Iwasaki3
1Department of Otorhinolaryngology, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Early sound reflections significantly impair sound localization accuracy, especially in smaller rooms. Standardizing testing environments and using sound-absorbing materials are crucial for reliable auditory spatial awareness assessments, particularly for those with unilateral hearing loss.
Area of Science:
- Auditory Neuroscience
- Acoustics
- Psychoacoustics
Background:
- Sound localization is vital for auditory spatial awareness, relying on interaural time/level differences and spectral cues.
- Standardizing sound localization testing is essential for consistent clinical and research outcomes.
Purpose of the Study:
- To standardize sound localization testing conditions across Japanese facilities.
- To analyze the impact of early reflected sounds on localization accuracy.
- To compare localization performance between individuals with normal hearing and unilateral hearing loss.
Main Methods:
- Conducted sound localization tests with 77 normal-hearing and 45 unilateral hearing-impaired participants across 11 facilities.
- Used nine loudspeakers in a 180° arc, presenting CCITT and low-pass CCITT noise bursts (50-60 dB SPL).
- Measured early reflections (4-7 ms) using time-stretched pulses and assessed accuracy via root-mean-square error and mean deviation.
Main Results:
- Early reflections significantly reduced localization accuracy, with envelope area/peak values (4-7 ms) correlating with decreased performance (r = -0.535 to -0.555).
- Normal-hearing participants had a root-mean-square error of 2.0° ± 4.8°, while unilateral hearing loss participants showed significantly higher errors (68.4° ± 40.7°, p < .001).
- Left-right response asymmetry correlated positively with reflected sound characteristics (r > 0.6); noise type did not significantly impact performance.
Conclusions:
- Early reflections critically compromise sound localization accuracy, particularly in reverberant environments.
- Standardized testing protocols controlling early reflections are vital for reliable sound localization assessments.
- Optimizing acoustic conditions, including sound absorption, can improve test precision, especially for unilateral hearing loss evaluation.
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