Limb-specific thalamocortical tracts are impaired differently in hemiplegic and diplegic subtypes of cerebral palsy

Author:

Jaatela Julia1ORCID,Aydogan Dogu Baran12,Nurmi Timo13ORCID,Vallinoja Jaakko1ORCID,Mäenpää Helena4ORCID,Piitulainen Harri1345ORCID

Affiliation:

1. Aalto University School of Science Department of Neuroscience and Biomedical Engineering, , FI-02150 Espoo , Finland

2. University of Eastern Finland A. I. Virtanen Institute for Molecular Sciences, , FI-70211 Kuopio , Finland

3. University of Jyväskylä Faculty of Sport and Health Sciences, , FI-40014 Jyväskylä , Finland

4. Helsinki University Hospital Pediatric Neurology, New Children’s Hospital, , FI-00029 Helsinki , Finland

5. Aalto University Aalto NeuroImaging, , FI-02150 Espoo , Finland

Abstract

AbstractThalamocortical pathways are considered crucial in the sensorimotor functioning of children with cerebral palsy (CP). However, previous research has been limited by non-specific tractography seeding and the lack of comparison between different CP subtypes. We compared limb-specific thalamocortical tracts between children with hemiplegic (HP, N = 15) or diplegic (DP, N = 10) CP and typically developed peers (N = 19). The cortical seed-points for the upper and lower extremities were selected (i) manually based on anatomical landmarks or (ii) using functional magnetic resonance imaging (fMRI) activations following proprioceptive-limb stimulation. Correlations were investigated between tract structure (mean diffusivity, MD; fractional anisotropy, FA; apparent fiber density, AFD) and sensorimotor performance (hand skill and postural stability). Compared to controls, our results revealed increased MD in both upper and lower limb thalamocortical tracts in the non-dominant hemisphere in HP and bilaterally in DP subgroup. MD was strongly lateralized in participants with hemiplegia, while AFD seemed lateralized only in controls. fMRI-based tractography results were comparable. The correlation analysis indicated an association between the white matter structure and sensorimotor performance. These findings suggest distinct impairment of functionally relevant thalamocortical pathways in HP and DP subtypes. Thus, the organization of thalamocortical white matter tracts may offer valuable guidance for targeted, life-long rehabilitation in children with CP.

Funder

University of Jyväskylä

Emil Aaltonen Foundation

Academy of Finland

Jane and Aatos Erkko Foundation

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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