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Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
A better characterization of spinal cord damage in multiple sclerosis: a diffusional kurtosis imaging study
1Department of Radiology, New York University School of Medicine, New York, New York.
Background And Purpose:
The spinal cord is a site of predilection for MS lesions. While diffusion tensor imaging is useful for the study of anisotropic systems such as WM tracts, it is of more limited utility in tissues with more isotropic microstructures (on the length scales studied with diffusion MR imaging) such as gray matter. In contrast, diffusional kurtosis imaging, which measures both Gaussian and non-Gaussian properties of water diffusion, provides more biomarkers of both anisotropic and isotropic structural changes. The aim of this study was to investigate the cervical spinal cord of patients with MS and to characterize lesional and normal-appearing gray matter and WM damage by using diffusional kurtosis imaging.
Materials And Methods:
Nineteen patients (13 women, mean age = 41.1 ± 10.7 years) and 16 controls (7 women, mean age = 35.6 ± 11.2-years) underwent MR imaging of the cervical spinal cord on a 3T scanner (T2 TSE, T1 magnetization-prepared rapid acquisition of gradient echo, diffusional kurtosis imaging, T2 fast low-angle shot). Fractional anisotropy, mean diffusivity, and mean kurtosis were measured on the whole cord and in normal-appearing gray matter and WM.
Results:
Spinal cord T2-hyperintense lesions were identified in 18 patients. Whole spinal cord fractional anisotropy and mean kurtosis (P = .0009, P = .003), WM fractional anisotropy (P = .01), and gray matter mean kurtosis (P = .006) were significantly decreased, and whole spinal cord mean diffusivity (P = .009) was increased in patients compared with controls. Mean spinal cord area was significantly lower in patients (P = .04).
Conclusions:
Diffusional kurtosis imaging of the spinal cord can provide a more comprehensive characterization of lesions and normal-appearing WM and gray matter damage in patients with MS. Diffusional kurtosis imaging can provide additional and complementary information to DTI on spinal cord pathology.
Insights
Diffusional kurtosis imaging reveals significant spinal cord damage in multiple sclerosis (MS) patients, including gray and white matter changes. This advanced MRI technique offers a more detailed understanding of MS pathology compared to traditional diffusion tensor imaging.
Area of Science:
- Neuroimaging
- Biomedical Engineering
- Radiology
Background:
- Multiple Sclerosis (MS) commonly affects the spinal cord.
- Diffusion Tensor Imaging (DTI) has limitations in assessing gray matter microstructure.
- Diffusional Kurtosis Imaging (DKI) offers advanced biomarkers for both anisotropic and isotropic tissue changes.
Purpose of the Study:
- To investigate cervical spinal cord damage in MS patients using DKI.
- To characterize lesional and normal-appearing gray matter and white matter (WM) damage.
- To compare DKI findings with traditional DTI metrics.
Main Methods:
- 19 MS patients and 16 healthy controls underwent cervical spinal cord MRI at 3T.
- DKI, alongside conventional MRI sequences, was employed.
- Quantitative metrics including fractional anisotropy, mean diffusivity, and mean kurtosis were measured in the whole cord, gray matter, and WM.
Main Results:
- MS patients showed significantly decreased whole spinal cord fractional anisotropy and mean kurtosis, and increased mean diffusivity compared to controls.
- Significant reductions in white matter fractional anisotropy and gray matter mean kurtosis were observed in MS patients.
- Spinal cord area was significantly smaller in MS patients.
Conclusions:
- DKI provides a comprehensive characterization of spinal cord lesions and normal-appearing gray and white matter damage in MS.
- DKI offers complementary information to DTI for assessing spinal cord pathology in MS.
- DKI enhances the understanding of microstructural changes in the MS spinal cord.
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