官方服务:
资源简介:
Otitis Media Impact on Inner Ear
应用场景:
创建时间:
2015-07-21
相关数据集
Low-frequency sound affects active micromechanics in the human inner ear
Noise-induced hearing loss is one of the most common auditory pathologies, resulting from overstimulation of the human cochlea, an exquisitely sensitive micromechanical device. At very low frequencies
DataCite Commons2020-09-04 更新110
Low-frequency sound affects active micromechanics in the human inner ear
Noise-induced hearing loss is one of the most common auditory pathologies, resulting from overstimulation of the human cochlea, an exquisitely sensitive micromechanical device. At very low frequencies
DataCite Commons2020-09-04 更新70
Low-frequency sound affects active micromechanics in the human inner ear
Noise-induced hearing loss is one of the most common auditory pathologies, resulting from overstimulation of the human cochlea, an exquisitely sensitive micromechanical device. At very low frequencies
Mendeley Data2024-06-27 更新40
Low-frequency sound affects active micromechanics in the human inner ear
Noise-induced hearing loss is one of the most common auditory pathologies, resulting from overstimulation of the human cochlea, an exquisitely sensitive micromechanical device. At very low frequencies
DataCite Commons2020-09-04 更新100
Low-frequency sound affects active micromechanics in the human inner ear
Noise-induced hearing loss is one of the most common auditory pathologies, resulting from overstimulation of the human cochlea, an exquisitely sensitive micromechanical device. At very low frequencies
DataCite Commons2020-09-04 更新60



