Haykel Snoussi, Julien Cohen-Adad, Benoît Combès, Élise Bannier, Slimane Tounekti, Anne Kerbrat, Christian Barillot and Emmanuel Caruyer
Article (2023)
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Abstract
Introduction Multiple sclerosis (MS) is an inflammatory disorder of the central nervous system. Although conventional magnetic resonance imaging (MRI) is widely used for MS diagnosis and clinical follow-up, quantitative MRI has the potential to provide valuable intrinsic values of tissue properties that can enhance accuracy. In this study, we investigate the efficacy of diffusion MRI in distinguishing MS lesions within the cervical spinal cord, using a combination of metrics extracted from diffusion tensor imaging and Ball-and-Stick models.
Methods We analyzed spinal cord data acquired from multiple hospitals and extracted average diffusion MRI metrics per vertebral level using a collection of image processing methods and an atlas-based approach. We then performed a statistical analysis to evaluate the feasibility of these metrics for detecting lesions, exploring the usefulness of combining different metrics to improve accuracy.
Results Our study demonstrates the sensitivity of each metric to underlying microstructure changes in MS patients. We show that selecting a specific subset of metrics, which provide complementary information, significantly improves the prediction score of lesion presence in the cervical spinal cord. Furthermore, the Ball-and-Stick model has the potential to provide novel information about the microstructure of damaged tissue.
Conclusion Our results suggest that diffusion measures, particularly combined measures, are sensitive in discriminating abnormal from healthy cervical vertebral levels in patients. This information could aid in improving MS diagnosis and clinical follow-up. Our study highlights the potential of the Ball-and-Stick model in providing additional insights into the microstructure of the damaged tissue.
Uncontrolled Keywords
diffusion MRI; multiple sclerosis; spinal cord; statistical analysis
Department: |
Department of Electrical Engineering Institut de génie biomédical |
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Research Center: | NeuroPoly - Laboratoire de Recherche en Neuroimagerie |
Funders: | EMISEP PHRC, MITACS-Inria Globalink travel grant, Brittany region |
PolyPublie URL: | https://publications.polymtl.ca/56583/ |
Journal Title: | Brain and Behavior (vol. 13, no. 11) |
Publisher: | Wiley Periodicals LLC. |
DOI: | 10.1002/brb3.3159 |
Official URL: | https://doi.org/https://doi.org/10.1002/brb3.3159 |
Date Deposited: | 02 Nov 2023 15:35 |
Last Modified: | 01 Oct 2024 21:28 |
Cite in APA 7: | Snoussi, H., Cohen-Adad, J., Combès, B., Bannier, É., Tounekti, S., Kerbrat, A., Barillot, C., & Caruyer, E. (2023). Effectiveness of regional diffusion MRI measures in distinguishing multiple sclerosis abnormalities within the cervical spinal cord. Brain and Behavior, 13(11), e3159 (12 pages). https://doi.org/https://doi.org/10.1002/brb3.3159 |
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