Design and implantation of bionic implants for restoring impaired hair cell function relies on accurate knowledge about the microanatomy and nerve fiber pathways of the human inner ear and its variation. Non-destructive isotropic imaging of soft tissues of the inner ear with lab-based microscopic X-ray computed tomography (microCT) offers high resolution but requires contrast enhancement using compounds with high X-ray attenuation. We evaluated different contrast enhancement techniques in mice, cat, and human temporal bones to differentially visualize the membranous labyrinth, sensory epithelia, and their innervating nerves together with the facial nerve and middle ear. Lugol’s iodine potassium iodine (I2KI) gave high soft tissue contrast i...
Imaging the inner ear microanatomy is of great importance for the assessment of the state of the cel...
The human inner ear contains minute three-dimensional neurosensory structures that are deeply embedd...
Objective: To evaluate the ability of ultra-high-field magnetic resonance imaging (UHF-MRI) at 11.7 ...
<p>Design and implantation of bionic implants for restoring impaired hair cell function relies on ac...
<p>Design and implantation of bionic implants for restoring impaired hair cell function relies on ac...
Abstract: Objective: Imaging cochlear, vestibular, and 8th cranial nerve abnormalities remains a cha...
Introduction: Knowledge of the neuro-anatomical architecture of the inner ear contributes to the imp...
The inner ear is a complex organ housed within the petrous bone of the skull. Its intimate relations...
Stable posture and body movement in humans is dictated by the precise functioning of the ampulla org...
Background: The Uppsala collection of human temporal bones and molds is a unique resource for educat...
Background: The Uppsala collection of human temporal bones and molds is a unique resource for educat...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
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...
Introduction: Visualization of inner ear structures is a valuable strategy for researchers and clini...
Imaging the inner ear microanatomy is of great importance for the assessment of the state of the cel...
The human inner ear contains minute three-dimensional neurosensory structures that are deeply embedd...
Objective: To evaluate the ability of ultra-high-field magnetic resonance imaging (UHF-MRI) at 11.7 ...
<p>Design and implantation of bionic implants for restoring impaired hair cell function relies on ac...
<p>Design and implantation of bionic implants for restoring impaired hair cell function relies on ac...
Abstract: Objective: Imaging cochlear, vestibular, and 8th cranial nerve abnormalities remains a cha...
Introduction: Knowledge of the neuro-anatomical architecture of the inner ear contributes to the imp...
The inner ear is a complex organ housed within the petrous bone of the skull. Its intimate relations...
Stable posture and body movement in humans is dictated by the precise functioning of the ampulla org...
Background: The Uppsala collection of human temporal bones and molds is a unique resource for educat...
Background: The Uppsala collection of human temporal bones and molds is a unique resource for educat...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
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...
Introduction: Visualization of inner ear structures is a valuable strategy for researchers and clini...
Imaging the inner ear microanatomy is of great importance for the assessment of the state of the cel...
The human inner ear contains minute three-dimensional neurosensory structures that are deeply embedd...
Objective: To evaluate the ability of ultra-high-field magnetic resonance imaging (UHF-MRI) at 11.7 ...