Results 161 to 170 of about 582,638 (386)
This study shows that gene replacement therapy using the AAV2/Anc80L65 virus can successfully restore hearing and balance in Ush1c knockout mice. The treatment leads to lasting improvements in both auditory and vestibular functions, highlighting its potential as a therapeutic approach for genetic hearing loss and vestibular disorders in humans ...
Weinan Du+13 more
wiley +1 more source
Two SOX11 variants cause Coffin–Siris syndrome with a new feature of sensorineural hearing loss
Abstract Coffin‐Siris syndrome (CSS, OMIM#135900) is a rare congenital disorder associated with neurodevelopmental and dysmorphic features. The primary cause of CSS is pathogenic variants in any of 9 BAF chromatin‐remodeling complex encoding genes or the genes SOX11 and PHF6. Herein, we performed whole‐exome sequencing (WES) and a series of analyses of
Qiuquan Wang+5 more
wiley +1 more source
Anatomic Variations of the Auditory Canal Pertaining to the Fit of Stethoscope Earpieces [PDF]
D Groom, WADDY CHAPMAN
openalex +1 more source
The Reconstruction of Peripheral Auditory Circuit: Recent Advances and Future Challenges
This paper summarizes the potential of biomaterials, stem cells, and gene editing technologies in the regeneration of inner ear hair cells, spiral ganglion neurons, and inner ear organoids. Challenges and potential developments are discussed and explored.
Zhe Li+3 more
wiley +1 more source
State of the Art of Low‐Frequency Acoustic Modulation: Intensity Enhancement and Directional Control
High intensity low‐frequency sound sources hold significant value in many fields. However, their long wavelength, strong penetrability, and tendency to diffract make direction control and intensity enhancement challenging. Acoustic generators and metamaterial‐based acoustic devices still face issues such as low energy efficiency, poor directional ...
Jingsong Xu+13 more
wiley +1 more source
Bridging Auditory Perception and Language Comprehension through MEG-Driven Encoding Models [PDF]
Understanding the neural mechanisms behind auditory and linguistic processing is key to advancing cognitive neuroscience. In this study, we use Magnetoencephalography (MEG) data to analyze brain responses to spoken language stimuli. We develop two distinct encoding models: an audio-to-MEG encoder, which uses time-frequency decompositions (TFD) and ...
arxiv
The Diagnosis and Treatment of Auditory Nerve Vertigo [PDF]
W. R. Gowers
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By investigating auditory hyperexcitability in a mouse model for hereditary deafness, this study identified a subpopulation of afferent neurons of the auditory nerve marked by Otogl expression. Despite their apparently normal hearing, Otogl+/− mice display poor activation of afferent neurons processing loud sounds and an elevation of the middle the ear
Mathilde Gagliardini+24 more
wiley +1 more source