The Experts below are selected from a list of 1737 Experts worldwide ranked by ideXlab platform

Nobuyasu Ichinose - One of the best experts on this subject based on the ideXlab platform.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

Shinji Naganawa - One of the best experts on this subject based on the ideXlab platform.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

Tsutomu Nakashima - One of the best experts on this subject based on the ideXlab platform.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

Takeo Ishigaki - One of the best experts on this subject based on the ideXlab platform.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

Eriko Iwayama - One of the best experts on this subject based on the ideXlab platform.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the enlarged endolymphatic duct and sac syndrome by use of a 3d fast asymmetric spin echo sequence volume and signal intensity measurement of the endolymphatic duct and sac and area measurement of the cochlear Modiolus
    American Journal of Neuroradiology, 2000
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Tokiko Koshikawa, Takeo Ishigaki, Tsutomu Nakashima, Mitsuru Ikeda, Tsuneo Ishiguchi, Nobuyasu Ichinose
    Abstract:

    BACKGROUND AND PURPOSE: In enlarged endolymphatic duct (EED) and sac (EES) syndrome, deformity of the EED and EES is congenital; however, hearing loss is acquired. To investigate the pathophysiology of progressive sensorineural hearing loss in EED and EES syndrome, we measured the volume of the EED and EES, the diameter of the EED and EES, the area of the cochlear Modiolus, and the signal intensity of the EES and compared our findings against degree of hearing loss. METHODS: Thin-section MR images of 33 ears in 17 patients with EED and EES syndrome were studied. All studies were obtained on a 1.5-T MR unit using a quadrature surface phased-array coil. Heavily T2-weighted 3D fast asymmetric spin-echo images were obtained with a voxel size of 0.3 x 0.3 x 0.8 mm without zero-fill interpolation. Two radiologists traced the areas of the EED and EES manually, and the volume was calculated. The area of the cochlear Modiolus, diameter of the EED and EES, and signal intensity of the EES were also measured by drawing regions of interest manually. The signal intensity ratio of EES/CSF was calculated. These measured values were compared against audiographic data, and the degree of linear correlation was determined. RESULTS: The volume of the EED and EES, the area of the Modiolus, the diameter of the EED and EES, and the signal intensity of the EES did not show significant correlation with degree of hearing loss. CONCLUSION: These findings suggest that there is a microscopic area of damage or fragility in the inner ear not visible even with thin-section heavily T2-weighted MR imaging.

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...

  • mr imaging of the cochlear Modiolus area measurement in healthy subjects and in patients with a large endolymphatic duct and sac
    Radiology, 1999
    Co-Authors: Shinji Naganawa, Eriko Iwayama, Hiroshi Fukatsu, Takeo Ishigaki, Tsutomu Nakashima, Nobuyasu Ichinose
    Abstract:

    PURPOSE: To evaluate the cochlear Modiolus with thin-section magnetic resonance (MR) imaging in healthy subjects and patients with a large endolymphatic duct and sac, and to assess whether the cochlea is normal or abnormal in patients with a large endolymphatic duct and sac. MATERIALS AND METHODS: MR images were obtained in 10 ears in five volunteers (group 1), 40 ears in 20 patients with bilateral sensory hearing loss (group 2), three ears in two patients with Mondini malformation (group 3), and 12 ears in seven patients with a large endolymphatic duct and sac (group 4). RESULTS: In groups 1 and 2, all modiolar areas were larger than 4.0 mm2. In group 3, each Modiolus was smaller than 2.0 mm2. In group 4, modiolar areas were smaller than 2.0 mm2 in eight ears and were larger than 4.0 mm2 in four ears. CONCLUSION: Findings in this study confirm that a large endolymphatic duct and sac is frequently associated with modiolar deficiency, but the modiolar area is normal in some cases. This result does not supp...