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Journal Article

Citation

Stafford CA, Owen AM, Fernández-Espejo D. Neuroimage (Amst) 2019; 22: e101791.

Affiliation

School of Psychology, The University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom; Centre for Human Brain Health, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom. Electronic address: D.Fernandez-Espejo@bham.ac.uk.

Copyright

(Copyright © 2019, Elsevier Publishing)

DOI

10.1016/j.nicl.2019.101791

PMID

30991612

Abstract

OBJECTIVE: To investigate the structural integrity of fibre tracts underlying overt motor behaviour in PDOC.

METHODS: This cross-sectional study examined 15 PDOC patients and 22 healthy participants. Eight PDOC patients met the criteria for the vegetative state, 5 met the criteria for the minimally conscious state and 2 met the criteria for emerging from the minimally conscious state. We used fibre tractography to reconstruct the white matter fibres known to be involved in voluntary motor execution (i.e., those connecting thalamus with M1, M1 with cerebellum, and cerebellum with thalamus) and used fractional anisotropy (FA) as a measure of their integrity.

RESULTS: PDOC patients showed significantly reduced FA relative to controls on the fibres connecting thalamus and M1. This went above and beyond a widespread injury to the white matter and correlated with clinical severity. In a subset of patients, we also identified a similar pattern of injury in the fibres connecting M1 and cerebellum but a relative preservation of those connecting cerebellum and thalamus.

CONCLUSIONS: Our results suggest that structural damage to motor fibres may lead to reduced responsiveness in PDOC patients across all diagnostic sub-categories, and therefore behavioural assessments may underestimate the level of retained cognitive function and awareness across the PDOC spectrum.

Copyright © 2019 The Authors. Published by Elsevier Inc. All rights reserved.


Language: en

Keywords

Brain trauma; Coma; Diffusion tensor imaging; Disorders of consciousness; Motor control

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