<div><p>The mammalian cochlea is a complex macroscopic structure due to its helical shape and the microscopic arrangements of the individual layers of cells. To improve the outcomes of hearing restoration in deaf patients, it is important to understand the anatomic structure and composition of the cochlea <i>ex vivo</i>. Hitherto, only one histological technique based on confocal laser scanning microscopy and optical clearing has been developed for <i>in toto</i> optical imaging of the murine cochlea. However, with a growing size of the specimen, e.g., human cochlea, this technique reaches its limitations. Here, we demonstrate scanning laser optical tomography (SLOT) as a valuable imaging technique to visualize the murine cochlea <i>in toto...
Imaging with hard X-rays allows visualizing cochlear structures while maintaining intrinsic qualitie...
Hearing loss affects millions of Americans and is of increasing concern to an aging population. It ...
The precise identification of intra-cochlear microstructures is an essential otorhinolaryngological ...
The mammalian cochlea is a complex macroscopic structure due to its helical shape and the microscopi...
The mammalian cochlea is a complex macroscopic structure due to its helical shape and the microscopi...
The present study focuses on the application of scanning laser optical tomography (SLOT) for visuali...
The present study focuses on the application of scanning laser optical tomography (SLOT) for visuali...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
The cochlea of our auditory system is an intricate structure deeply embedded in the temporal bone. C...
Imaging the inner ear microanatomy is of great importance for the assessment of the state of the cel...
The human cochlea is deeply embedded in the temporal bone and surrounded by a thick otic capsule, re...
Advancements in intracochlear diagnostics, as well as prosthetic and regenerative inner ear therapie...
Recent developments in imaging techniques, namely confocal laser scanning microscopy, offer new tool...
Objectives: The investigation of cochlear hair cells and lateral wall is a time-consuming and labor-...
Inner ear imaging is important for the assessment of hearing disorders. A major cause of hearing los...
Imaging with hard X-rays allows visualizing cochlear structures while maintaining intrinsic qualitie...
Hearing loss affects millions of Americans and is of increasing concern to an aging population. It ...
The precise identification of intra-cochlear microstructures is an essential otorhinolaryngological ...
The mammalian cochlea is a complex macroscopic structure due to its helical shape and the microscopi...
The mammalian cochlea is a complex macroscopic structure due to its helical shape and the microscopi...
The present study focuses on the application of scanning laser optical tomography (SLOT) for visuali...
The present study focuses on the application of scanning laser optical tomography (SLOT) for visuali...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
The cochlea of our auditory system is an intricate structure deeply embedded in the temporal bone. C...
Imaging the inner ear microanatomy is of great importance for the assessment of the state of the cel...
The human cochlea is deeply embedded in the temporal bone and surrounded by a thick otic capsule, re...
Advancements in intracochlear diagnostics, as well as prosthetic and regenerative inner ear therapie...
Recent developments in imaging techniques, namely confocal laser scanning microscopy, offer new tool...
Objectives: The investigation of cochlear hair cells and lateral wall is a time-consuming and labor-...
Inner ear imaging is important for the assessment of hearing disorders. A major cause of hearing los...
Imaging with hard X-rays allows visualizing cochlear structures while maintaining intrinsic qualitie...
Hearing loss affects millions of Americans and is of increasing concern to an aging population. It ...
The precise identification of intra-cochlear microstructures is an essential otorhinolaryngological ...