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Disembodied Mind: Cortical Changes Following Brainstem Injury in Patients with Locked-in Syndrome

Authors :
Carlo Cosimo Quattrocchi
Carlo Augusto Mallio
Olivia Gosseries
Marco Sarà
Riccardo Cornia
Cristina Iani
Antonio Carolei
Simona Sacco
Debora Di Mambro
Massimiliano Conson
Francesca Pistoia
Pistoia, F
Cornia, R
Conson, Massimiliano
Gosseries, O
Carolei, A
Sacco, S
Quattrocchi, Cc
Mallio, Ca
Iani, C
Mambro, Dd
Sarà, M. 7.
Source :
The Open Neuroimaging Journal
Publication Year :
2016

Abstract

Locked-in syndrome (LIS) following ventral brainstem damage is the most severe form of motor disability. Patients are completely entrapped in an unresponsive body despite consciousness is preserved. Although the main feature of LIS is this extreme motor impairment, minor non-motor dysfunctions such as motor imagery defects and impaired emotional recognition have been reported suggesting an alteration of embodied cognition, defined as the effects that the body and its performances may have on cognitive domains. We investigated the presence of structural cortical changes in LIS, which may account for the reported cognitive dysfunctions. For this aim, magnetic resonance imaging scans were acquired in 11 patients with LIS (6 males and 5 females; mean age: 52.3±5.2SD years; mean time interval from injury to evaluation: 9±1.2SD months) and 44 healthy control subjects matching patients for age, sex and education. Freesurfer software was used to process data and to estimate cortical volumes in LIS patients as compared to healthy subjects. Results showed a selective cortical volume loss in patients involving the superior frontal gyrus, the pars opercularis and the insular cortex in the left hemisphere, and the superior and medium frontal gyrus, the pars opercularis, the insular cortex, and the superior parietal lobule in the right hemisphere. As these structures are typically associated with the mirror neuron system, which represents the neural substrate for embodied simulation processes, our results provide neuroanatomical support for potential disembodiment in LIS.

Details

Language :
English
Database :
OpenAIRE
Journal :
The Open Neuroimaging Journal
Accession number :
edsair.doi.dedup.....1a2e609f52b404effa49c81f197f39b1