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Hearing research, ISSN 0378-5955, 06/2017, Volume 349, pp. 138 - 147
Cochlear neuropathy | Cochlear synaptopathy | Hidden hearing loss | Auditory nerve | Noise-induced hearing loss | Audiology & Speech-Language Pathology | Neurosciences | Otorhinolaryngology | Neurosciences & Neurology | Life Sciences & Biomedicine | Science & Technology | Cochlear Nerve - physiopathology | Humans | Hearing Loss, Noise-Induced - psychology | Synapses - pathology | Hearing Loss, Sensorineural - psychology | Synaptic Transmission | Cochlear Nerve - metabolism | Synapses - metabolism | Cochlear Nerve - pathology | Hearing Loss, Noise-Induced - physiopathology | Hearing Loss, Sensorineural - metabolism | Hearing Loss, Noise-Induced - metabolism | Risk Factors | Hearing Loss, Sensorineural - pathology | Auditory Threshold | Hair Cells, Auditory, Inner - pathology | Hearing | Animals | Hair Cells, Auditory, Inner - metabolism | Hearing Loss, Noise-Induced - pathology | Glutamic Acid - metabolism | Noise - adverse effects | Auditory Perception | Nerve Degeneration | Hearing Loss, Sensorineural - physiopathology | Analysis | Hearing loss | Index Medicus
Journal Article
Hearing research, ISSN 0378-5955, 12/2015, Volume 330, Issue Pt B, pp. 191 - 199
Audiology & Speech-Language Pathology | Neurosciences | Otorhinolaryngology | Neurosciences & Neurology | Life Sciences & Biomedicine | Science & Technology | Cochlear Nerve - physiopathology | Hair Cells, Auditory - pathology | Hearing Loss, Noise-Induced - physiopathology | Guinea Pigs | Acoustic Stimulation | Humans | Hearing Loss, Sensorineural - pathology | Cochlea - innervation | Auditory Threshold | Hearing Loss, Sensorineural - psychology | Synaptic Transmission | Auditory Pathways - pathology | Hearing | Animals | Evoked Potentials, Auditory, Brain Stem | Cochlear Nerve - pathology | Hearing Loss, Noise-Induced - pathology | Auditory Pathways - physiopathology | Mice | Noise - adverse effects | Auditory Perception | Nerve Degeneration | Disease Models, Animal | Hearing Loss, Sensorineural - physiopathology | Physiological aspects | Hearing loss | Index Medicus
Journal Article
Hearing research, ISSN 0378-5955, 05/2016, Volume 335, pp. 138 - 148
Unilateral sudden sensorineural hearing loss | Resting-state fMRI | Graph theory | Connectome | Audiology & Speech-Language Pathology | Neurosciences | Otorhinolaryngology | Neurosciences & Neurology | Life Sciences & Biomedicine | Science & Technology | Audiometry | Hearing Loss, Sudden - physiopathology | Brain - physiopathology | Humans | Middle Aged | Male | Magnetic Resonance Imaging | Hearing | Tinnitus - complications | Auditory Cortex - physiopathology | Limbic System - physiopathology | Adult | Audiometry, Pure-Tone | Female | Vertigo - physiopathology | Hearing Loss, Sensorineural - physiopathology | Tinnitus - physiopathology | Brain | Brain research | Hearing loss | Index Medicus
Journal Article
Hearing research, ISSN 0378-5955, 06/2014, Volume 312, pp. 48 - 59
RESPONSES | SOUND-LEVEL | HUMAN BRAIN | STIMULATION | AUDITORY-CORTEX | HYPERACUSIS | FMRI ACTIVATION | CEREBELLUM | NOISE | LATERALIZATION | Audiology & Speech-Language Pathology | Neurosciences | Otorhinolaryngology | Neurosciences & Neurology | Life Sciences & Biomedicine | Science & Technology | Hyperacusis - physiopathology | Severity of Illness Index | Inferior Colliculi - physiopathology | Humans | Middle Aged | Linear Models | Geniculate Bodies - physiopathology | Acoustic Stimulation - methods | Tinnitus - complications | Auditory Cortex - physiopathology | Cochlear Nucleus - physiopathology | Aged, 80 and over | Adult | Auditory Pathways - physiopathology | Aged | Functional Laterality - physiology | Hearing Loss, Sensorineural - complications | Hearing Loss, Sensorineural - physiopathology | Tinnitus - physiopathology | Tinnitus | Hearing loss | Index Medicus
Journal Article
Trends in amplification, ISSN 1084-7138, 9/2011, Volume 15, Issue 3, pp. 91 - 105
evaluation | treatment | hearing loss | idiopathic sudden sensorineural hearing loss | sudden sensorineural hearing loss | Predictive Value of Tests | Hearing Loss, Sudden - diagnosis | Audiometry | Acoustic Stimulation | Hearing Loss, Sudden - physiopathology | Hearing Loss, Sudden - epidemiology | Humans | Risk Factors | Treatment Outcome | Hearing Loss, Sensorineural - epidemiology | Auditory Threshold | Recovery of Function | Hearing Loss, Sudden - therapy | Magnetic Resonance Imaging | Hearing | Hearing Loss, Sensorineural - diagnosis | Hearing Loss, Sensorineural - therapy | Steroids - therapeutic use | Hearing Loss, Sensorineural - physiopathology | Care and treatment | Usage | Steroids (Drugs) | Causes and theories of causation | Hearing loss | Diseases | Index Medicus
Journal Article
The Laryngoscope, ISSN 0023-852X, 02/2021, Volume 131, Issue 2, pp. 425 - 434
sudden hearing loss | deafness | tinnitus | Sensorineural hearing loss | child | Otorhinolaryngology | Life Sciences & Biomedicine | Medicine, Research & Experimental | Science & Technology | Research & Experimental Medicine | Prognosis | Hearing Loss, Sudden - physiopathology | Humans | Child, Preschool | Infant | Male | Treatment Outcome | Young Adult | Hearing Loss, Sudden - therapy | Hearing Loss, Sensorineural - therapy | Adolescent | Female | Disease Management | Outcome Assessment, Health Care | Child | Infant, Newborn | Hearing Loss, Sensorineural - physiopathology | Pediatrics | Ears & hearing | Hearing impairment | Patients | Index Medicus
Journal Article