An estimate of lifetime noise exposure was used as the primary predictor of performance on a range of behavioral tasks: frequency and intensity difference limens, amplitude modulation detection, interaural phase discrimination, the digit triplet speech test, the co-ordinate response speech measure, an auditory localization task, a musical consonance task and a subjective report of hearing ability. One hundred and thirty-eight participants (81 females) aged 18–36 years were tested, with a wide range of self-reported noise exposure. All had normal pure-tone audiograms up to 8 kHz. It was predicted that increased lifetime noise exposure, which we assume to be concordant with noise-induced cochlear synaptopathy, would elevate behavioral thresho...
The purpose of this study was to test the hypothesis that listeners with frequent exposure to loud m...
Animal studies demonstrate that noise exposure can permanently damage the synapses between inner hai...
Animal studies demonstrate that noise exposure can permanently damage the synapses between inner hai...
An estimate of lifetime noise exposure was used as the primary predictor of performance on a range o...
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these anima...
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these anima...
Although there is strong histological evidence for age-related synaptopathy in humans, evidence for ...
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these anima...
AbstractNoise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In the...
In rodents, noise exposure can destroy synapses between inner hair cells and auditory nerve fibers (...
In rodents, exposure to high-level noise can destroy synapses between inner hair cells and auditory ...
© 2019 In animal models, exposure to high noise levels can cause permanent damage to hair-cell synap...
Musicians are at risk of hearing loss due to prolonged noise exposure, but they may also be at risk ...
Purpose: Speech-in-noise tests and suprathreshold auditory evoked potentials are promising biomarker...
Purpose: Studies in rodents, and more recently humans, suggest that noise exposure can cause permane...
The purpose of this study was to test the hypothesis that listeners with frequent exposure to loud m...
Animal studies demonstrate that noise exposure can permanently damage the synapses between inner hai...
Animal studies demonstrate that noise exposure can permanently damage the synapses between inner hai...
An estimate of lifetime noise exposure was used as the primary predictor of performance on a range o...
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these anima...
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these anima...
Although there is strong histological evidence for age-related synaptopathy in humans, evidence for ...
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these anima...
AbstractNoise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In the...
In rodents, noise exposure can destroy synapses between inner hair cells and auditory nerve fibers (...
In rodents, exposure to high-level noise can destroy synapses between inner hair cells and auditory ...
© 2019 In animal models, exposure to high noise levels can cause permanent damage to hair-cell synap...
Musicians are at risk of hearing loss due to prolonged noise exposure, but they may also be at risk ...
Purpose: Speech-in-noise tests and suprathreshold auditory evoked potentials are promising biomarker...
Purpose: Studies in rodents, and more recently humans, suggest that noise exposure can cause permane...
The purpose of this study was to test the hypothesis that listeners with frequent exposure to loud m...
Animal studies demonstrate that noise exposure can permanently damage the synapses between inner hai...
Animal studies demonstrate that noise exposure can permanently damage the synapses between inner hai...