Javascript must be enabled to continue!
Ca functional imaging from the cerebellum to the vestibular end‐organs
View through CrossRef
Objectives
The calcium ion plays a major role in the inner ear and the cerebellum. But in vivo calcium metabolism is still unknown problems in these areas. Though, it is said that the endolymphatic sac and the cerebellum have the functions of calcium metabolism, no one directly detects them in vivo. The purpose of this study is to create in vivo functional Ca imaging of calcium metabolism in the cerebellum and the vestibular end‐organs.
Subjects and Method
High‐resolution temporal bone CT data were used as follows; 5 normal subjects, 5 Meniere’s diseases (MD), and 5 woozy subjects. The 3D imaging technique was employed in the specific volume rendering based on the bone algorithms combining thresholding with a texture synthesis algorithm. This created algorithm can reconstruct images of calcium carbonate and calcium phosphate in the temporal bone region and the cerebellum.
Results
The cerebellum showed two kinds of calcification spots. One was the same color as calcium carbonate of the otolith organs, and the other main component showed calcium phosphate like the color of the temporal bone. In the normal inner ear, both the otolith organs were created to normal size and shape from calcium carbonate images. The calcium carbonate spots in the cerebellum were increased in the normal aging subjects and the patients with MD and woozy. The endolymphatic sac function was activated in the woozy period. In MD, during the attack period, the calcium carbonate spots were increased in the cerebellum. In the recovery period, they were decreased. During the attack period, the saccular otolith organ was increased in volume, and the utricular otolith organ decreased. In the recovery period, the volume and shape of the saccular otolith organ decreased, and that of utricle was increased. However, in the age‐related changes, the calcium phosphate spots were increased in the cerebellum.
Conclusions
The 3D reconstructed images of calcium compounds in which the internal state of an in vivo subject can be observed in detail using bioinformation associated with CaCO
3
and CaP. The in vivo internal state of the cerebellum and the vestibular end‐organs can be observed in detail using bioinformation related to calcium carbonate and calcium phosphate. To maintain balance, the cerebellar function seems to be active to compensate for the deterioration of the vestibular function. The researchers will be able to utilize this tool to analyze calcium metabolism at the temporal bone region and the cerebellum to enhance the understanding of the role they play in disease.
Support or Funding Information
Conflict of Interest
All authors of this study declare no relationship with any companies, whose products or services may be related to the subject matter of the article.
Funding:
All authors state that this work has not received any funding.
The affected cerebellum shows multiple gray and white spots. However, the non‐affected side represents fewer than the affected side.
Figure 1
The both cerebellar hemispheres show a decreased in spots, and the affected utricular otolith organ increases in volume and shape.
Figure 2
Title: Ca functional imaging from the cerebellum to the vestibular end‐organs
Description:
Objectives
The calcium ion plays a major role in the inner ear and the cerebellum.
But in vivo calcium metabolism is still unknown problems in these areas.
Though, it is said that the endolymphatic sac and the cerebellum have the functions of calcium metabolism, no one directly detects them in vivo.
The purpose of this study is to create in vivo functional Ca imaging of calcium metabolism in the cerebellum and the vestibular end‐organs.
Subjects and Method
High‐resolution temporal bone CT data were used as follows; 5 normal subjects, 5 Meniere’s diseases (MD), and 5 woozy subjects.
The 3D imaging technique was employed in the specific volume rendering based on the bone algorithms combining thresholding with a texture synthesis algorithm.
This created algorithm can reconstruct images of calcium carbonate and calcium phosphate in the temporal bone region and the cerebellum.
Results
The cerebellum showed two kinds of calcification spots.
One was the same color as calcium carbonate of the otolith organs, and the other main component showed calcium phosphate like the color of the temporal bone.
In the normal inner ear, both the otolith organs were created to normal size and shape from calcium carbonate images.
The calcium carbonate spots in the cerebellum were increased in the normal aging subjects and the patients with MD and woozy.
The endolymphatic sac function was activated in the woozy period.
In MD, during the attack period, the calcium carbonate spots were increased in the cerebellum.
In the recovery period, they were decreased.
During the attack period, the saccular otolith organ was increased in volume, and the utricular otolith organ decreased.
In the recovery period, the volume and shape of the saccular otolith organ decreased, and that of utricle was increased.
However, in the age‐related changes, the calcium phosphate spots were increased in the cerebellum.
Conclusions
The 3D reconstructed images of calcium compounds in which the internal state of an in vivo subject can be observed in detail using bioinformation associated with CaCO
3
and CaP.
The in vivo internal state of the cerebellum and the vestibular end‐organs can be observed in detail using bioinformation related to calcium carbonate and calcium phosphate.
To maintain balance, the cerebellar function seems to be active to compensate for the deterioration of the vestibular function.
The researchers will be able to utilize this tool to analyze calcium metabolism at the temporal bone region and the cerebellum to enhance the understanding of the role they play in disease.
Support or Funding Information
Conflict of Interest
All authors of this study declare no relationship with any companies, whose products or services may be related to the subject matter of the article.
Funding:
All authors state that this work has not received any funding.
The affected cerebellum shows multiple gray and white spots.
However, the non‐affected side represents fewer than the affected side.
Figure 1
The both cerebellar hemispheres show a decreased in spots, and the affected utricular otolith organ increases in volume and shape.
Figure 2.
Related Results
Persistent Dizziness and Time-Domain Dissociation in Vestibular Function: A Hypothesis-Generating Case Series and Spatiotemporal Framework for Targeted Vestibular Rehabilitation
Persistent Dizziness and Time-Domain Dissociation in Vestibular Function: A Hypothesis-Generating Case Series and Spatiotemporal Framework for Targeted Vestibular Rehabilitation
Background/Objectives: Persistent dizziness after the apparent resolution of an acute or episodic vestibular disorder remains a frequent and clinically challenging condition. In ma...
Identification of vestibular loss in children with sensorineural hearing loss using the balance subset of the BOT-2 test
Identification of vestibular loss in children with sensorineural hearing loss using the balance subset of the BOT-2 test
Abstract
Background
Vestibular loss in children with sensorineural hearing loss (SNHL) is quite high. Despite the high prevalence of vestibular loss...
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Abstract
Introduction
Immunoglobulin G4-related disease (IgG4-RD) is a recently identified immune-mediated condition that is debilitating and often overlooked. While IgG4-RD has be...
Bithermal caloric test results and vestibular evoked myogenic potentials in patients with vestibular migraine
Bithermal caloric test results and vestibular evoked myogenic potentials in patients with vestibular migraine
Objectives:
The aim of this study was to study the ocular vestibular evoked myogenic potentials, cervical vestibular evoked myogenic potentials, and bithermal c...
Vestibular-Evoked Cerebral Potentials
Vestibular-Evoked Cerebral Potentials
The human vestibular cortex has mostly been approached using functional magnetic resonance imaging and positron emission tomography combined with artificial stimulation of the vest...
Impaired reaching adaptation links to vestibular symptoms
Impaired reaching adaptation links to vestibular symptoms
Abstract
About 30% of adults suffer from some mild to severe vestibular dysfunction. Vestibular disorders can be expressed as acute vestibular syndrome (AVS), episo...
FIVE-YEARS PREVALENCE OF VESTIBULAR DISORDERS, AS SEEN IN A TERTIARY CARE HOSPITAL
FIVE-YEARS PREVALENCE OF VESTIBULAR DISORDERS, AS SEEN IN A TERTIARY CARE HOSPITAL
Vestibular disorders can affect the peripheral or central vestibular systems, controlling and maintaining balance. Several studies have confirmed the high prevalence rate of vestib...
VESTIBULAR REHABILITATION EXERCISES SHOULD BE EFFECTIVE FIRST LINE TREATMENT INSTEAD OF MEDICATIONS IN PAKISTAN FOR BENIGN PAROXYSMAL POSITIONAL VERTIGO (BPPV)
VESTIBULAR REHABILITATION EXERCISES SHOULD BE EFFECTIVE FIRST LINE TREATMENT INSTEAD OF MEDICATIONS IN PAKISTAN FOR BENIGN PAROXYSMAL POSITIONAL VERTIGO (BPPV)
Dear Editor,
Let me divert your kind attention to the effectiveness of vestibular rehabilitation exercises (VRE) as the first-line treatment for benign paroxysmal positional vertig...

