The Challenge of Diffusion Magnetic Resonance Imaging in Cerebral Palsy: A Proposed Method to Identify White Matter Pathways

Author:

Martinie Ophélie12ORCID,Karan Philippe3ORCID,Traverse Elodie12,Mercier Catherine12ORCID,Descoteaux Maxime3,Robert Maxime T.12

Affiliation:

1. Centre for Interdisciplinary Research in Rehabilitation and Social Integration, Québec, QC G1M 2S8, Canada

2. Department of Rehabilitation, Université Laval, Québec, QC G1V 0A6, Canada

3. Department of Computer Sciences, Université de Sherbrooke, Sherbrooke, QC J1K 2R1, Canada

Abstract

Cerebral palsy (CP), a neuromotor disorder characterized by prenatal brain lesions, leads to white matter alterations and sensorimotor deficits. However, the CP-related diffusion neuroimaging literature lacks rigorous and consensual methodology for preprocessing and analyzing data due to methodological challenges caused by the lesion extent. Advanced methods are available to reconstruct diffusion signals and can update current advances in CP. Our study demonstrates the feasibility of analyzing diffusion CP data using a standardized and open-source pipeline. Eight children with CP (8–12 years old) underwent a single diffusion magnetic resonance imaging (MRI) session on a 3T scanner (Achieva 3.0T (TX), Philips Healthcare Medical Systems, Best, The Netherlands). Exclusion criteria were contraindication to MRI and claustrophobia. Anatomical and diffusion images were acquired. Data were corrected and analyzed using Tractoflow 2.3.0 version, an open-source and robust tool. The tracts were extracted with customized procedures based on existing atlases and freely accessed standardized libraries (ANTs, Scilpy). DTI, CSD, and NODDI metrics were computed for each tract. Despite lesion heterogeneity and size, we successfully reconstructed major pathways, except for a participant with a larger lesion. Our results highlight the feasibility of identifying and quantifying subtle white matter pathways. Ultimately, this will increase our understanding of the clinical symptoms to provide precision medicine and optimize rehabilitation.

Funder

the University Laval Research Chair in Cerebral Palsy, the Réseau provincial de recherche en adaptation-réadaptation

the Fonds de recherche Québec Santé

the NSERC

the University Laval Research Chair in Cerebral Palsy

the Canada Research Chair in Pain and Sensorimotor Rehabilitation

the NSERC Discovery Grant

the USherbrooke institutional research chair in neuroinformatics

the Réseau de Bio-Imagerie du Québec

the FRQS

Publisher

MDPI AG

Subject

General Neuroscience

Reference84 articles.

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