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Journal Article
International Journal of Pediatric Otorhinolaryngology, ISSN 0165-5876, 2016, Volume 90, pp. 251 - 258
Journal Article
Journal Article
Journal Article
Journal of Voice, ISSN 0892-1997, 2016, Volume 31, Issue 3, pp. 379.e21 - 379.e32
Summary Objectives Singers and voice teachers are exposed to a range of noise levels during a normal working day. This study aimed to assess the hearing... 
Otolaryngology | Voice teachers | Noise exposure | Sensorineural hearing loss | Noise-induced hearing loss | Singers | INDIVIDUAL SUSCEPTIBILITY | MUSICIANS | CHOIR | WORKERS | ADULTS | RISK | NOISE | AUDIOMETER | POLYMORPHISMS | OTORHINOLARYNGOLOGY | EXPOSURE | United States - epidemiology | Prevalence | Prospective Studies | Singing | Humans | Middle Aged | Male | Hearing Loss, High-Frequency - epidemiology | Hearing Loss, Noise-Induced - psychology | Hearing Loss, Sensorineural - epidemiology | Hearing Loss, Sensorineural - psychology | Persons With Hearing Impairments - psychology | Occupational Diseases - diagnosis | Teaching | Young Adult | Hearing Loss, Noise-Induced - epidemiology | Hearing Loss, Sensorineural - diagnosis | Occupational Diseases - physiopathology | Students - psychology | Time Factors | Adult | Female | Surveys and Questionnaires | Hearing Loss, High-Frequency - physiopathology | Severity of Illness Index | Hearing Loss, Noise-Induced - physiopathology | Hearing Loss, Noise-Induced - diagnosis | Cross-Sectional Studies | Risk Factors | Hearing Loss, High-Frequency - diagnosis | Auditory Threshold | Hearing Loss, High-Frequency - psychology | Adolescent | Aged | Auditory Perception | Occupational Diseases - epidemiology | Voice | Occupational Diseases - psychology | Hearing Loss, Sensorineural - physiopathology | Teachers | Hearing loss
Journal Article
Hearing Research, ISSN 0378-5955, 07/2017, Volume 350, pp. 91 - 99
Results in studies concerning cortical changes in idiopathic sudden sensorineural hearing loss (ISSNHL) are not homogeneous, in particular due to the different... 
Tinnitus | Auditory scene analysis network | Positron emission tomography | Frontoparietal control system | Sudden hearing loss | Speech discrimination score | HUMAN BRAIN | MULTIPLE CHEMICAL-SENSITIVITY | ALZHEIMERS-DISEASE | AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY | FUNCTIONAL NEUROANATOMY | OLFACTORY STIMULATION | DEFAULT-MODE NETWORK | NEUROSCIENCES | POSITRON-EMISSION-TOMOGRAPHY | GLUCOSE-METABOLISM | CINGULATE CORTEX | OTORHINOLARYNGOLOGY | PRIMARY AUDITORY-CORTEX | Fluorodeoxyglucose F18 - administration & dosage | Humans | Middle Aged | Auditory Cortex - metabolism | Male | Hearing Loss, Sensorineural - psychology | Case-Control Studies | Auditory Cortex - physiopathology | Adult | Female | Hearing Loss, Sudden - metabolism | Disability Evaluation | Auditory Cortex - diagnostic imaging | Hearing Loss, Sensorineural - metabolism | Acoustic Stimulation | Hearing Loss, Sudden - physiopathology | Brain Mapping - methods | Hearing Loss, Sensorineural - diagnostic imaging | Auditory Threshold | Hearing Loss, Sudden - diagnostic imaging | Positron Emission Tomography Computed Tomography | Radiopharmaceuticals - administration & dosage | Hearing | Energy Metabolism | Hearing Loss, Sudden - psychology | Speech Perception | Hearing Loss, Sensorineural - physiopathology | Speech Discrimination Tests | Neurosciences | Hearing loss | Control systems
Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 09/2012, Volume 7, Issue 9, p. e46355
The hallmark of mechanosensory hair cells is the stereocilia, where mechanical stimuli are converted into electrical signals. These delicate stereocilia are... 
NERVOUS-SYSTEM | RECOVERY | MATH1 | MULTIDISCIPLINARY SCIENCES | IN-VIVO | GUINEA-PIG | PRONEURAL GENE | MECHANICAL DAMAGE | MYOSIN-XVA | IMPULSE NOISE | INDUCED HEARING-LOSS | Genetic Therapy | Hair Cells, Auditory - metabolism | Hair Cells, Auditory - pathology | Hearing Loss, Noise-Induced - etiology | Hearing Loss - etiology | Male | Hearing Loss, Noise-Induced - therapy | Hearing Loss - therapy | Adenoviridae - genetics | Female | Cell Differentiation | Transgenes | Gene Expression | Microscopy, Electron, Scanning | Basic Helix-Loop-Helix Transcription Factors - genetics | Guinea Pigs | Stereocilia - physiology | Hearing Loss - pathology | Hearing Loss - genetics | Hearing Loss, Noise-Induced - genetics | Regeneration | Animals | Hearing Loss, Noise-Induced - pathology | Noise - adverse effects | Genetic Vectors | Evoked Potentials, Auditory, Brain Stem - physiology | Care and treatment | Usage | Cochlea | Research | Cell differentiation | Psychic trauma | Scanning microscopy | Hearing loss | Drugs | Noise levels | Organ of Corti | Noise | Brain stem | Hair cells | Otolaryngology | Nervous system | Hearing protection | Inoculation | Acoustic noise | Surgery | Vestibular system | Repair | Damage | Hair | Scanning electron microscopy | Outer hair cells | Gunfire | Exposure | Sound | Hearing impairment | Electron microscopy | Mammals | Trauma | Bundles | Vertebrates | Ears & hearing | Mechanical stimuli | Auditory defects | Gene therapy | Ototoxicity | Apoptosis
Journal Article
Hearing research, ISSN 0378-5955, 2017, Volume 344, pp. 68 - 81
Noise-induced cochlear synaptopathy has been demonstrated in numerous rodent studies. In these animal models, the disorder is characterized by a reduction in... 
Cochlear synaptopathy | Auditory brainstem response | Hidden hearing loss | Noise-induced hearing loss | Frequency-following response | BRAIN-STEM RESPONSE | AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY | AUDITORY-NERVE | NEUROSCIENCES | DAMAGE | DEGENERATION | COCHLEAR NEUROPATHY | VARIABILITY | INDIVIDUAL-DIFFERENCES | OTORHINOLARYNGOLOGY | HIDDEN HEARING-LOSS | LATENCY | AGE | Age Factors | Hearing Loss, Noise-Induced - etiology | Humans | Male | Reaction Time | Electroencephalography | Hearing Loss, Noise-Induced - psychology | Young Adult | Evoked Potentials, Auditory, Brain Stem | Adult | Female | Surveys and Questionnaires | Hearing Loss, Noise-Induced - physiopathology | Hearing Loss, Noise-Induced - diagnosis | Acoustic Stimulation | Risk Factors | Cochlea - physiopathology | Auditory Threshold | Evoked Potentials, Auditory | Hearing | Adolescent | Sex Factors | Audiometry, Pure-Tone | Noise - adverse effects | Otoacoustic Emissions, Spontaneous | Auditory Perception | Synapses | Deafness | Youth | Teenagers | Noise control | Analysis | Medical research | Medicine, Experimental | NIHL, Noise-induced hearing loss | OHC, outer hair cell | ABR, auditory brainstem response | FFR, frequency following response | AN, auditory nerve | TEOAE, transient-evoked otoacoustic emission | IHC, inner hair cell | Research Paper | SR, spontaneous rate
Journal Article