Spontaneous behavioural recovery following stroke relates to the integrity of sensory and association cortices
Nashed, J. Y.; Shearer, K. T.; Wang, J. Z.; Chen, Y.; Cook, E. E.; Champagne, A. A.; Coverdale, N. S.; Frenandez-Ruiz, J.; Gallivan, J. P.; Cook, D. J.
Show abstract
Stroke is a devastating disease that results in neurological deficits and represents a leading cause of death and disability worldwide. Following a stroke, there is a degree of spontaneous recovery of function, the neural basis of which is of great interest among clinicians in their efforts to reduce disability following stroke and enhance rehabilitation. Conventionally, work on spontaneous recovery has tended to focus on the neural reorganization of motor cortical regions, with comparably little attention being paid to changes in non-motor regions and how these relate to recovery. Here we show, using structural neuroimaging in a macaque stroke model and by exploiting individual differences in spontaneous behavioural recovery, that the preservation of regions in the sensory and association cortices predict animal recovery. To characterize recovery, we performed a clustering analysis using Non-Human Primate Stroke Scale (NHPSS) scores and identified a good versus poor recovery group. By comparing the preservation of brain volumes in the two groups, we found that brain areas in integrity of brain areas in parietal, temporal and somatosensory cortex were associated with better recovery. In addition, a decoding approach performed across all subjects revealed that the preservation of specific brain regions in the parietal, somatosensory and medial frontal cortex predicted recovery. Together, these findings highlight the importance of the sensory and association regions in spontaneous behavioural recovery, supporting the notion that the sensory retraining of impairments following stroke is critical to recovery and motor function.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Thalamo-Prefrontal Connectivity Correlates with Early Command-Following After Severe Traumatic Brain injury 94%
- Towards individualized Medicine in Stroke – the TiMeS project: protocol of longitudinal, multi-modal, multi-domain study in stroke 93%
- Left Hemisphere Bias of NIH Stroke Scale is Most Severe for Middle Cerebral Artery Strokes 93%
Similar papers in this journal
- The gliopeptide ODN, a ligand for the benzodiazepine site of GABAA receptors, boosts functional recovery after stroke 93%
- Pathological slow-wave activity and impaired working memory binding in post-traumatic amnesia 92%
- Microglial depletion with CSF1R inhibitor during chronic phase of experimental traumatic brain injury reduces neurodegeneration and neurological deficits 91%
Similar papers in this journal
- Right hemispheric white matter hyperintensities improve the prediction of spatial neglect severity in acute stroke 95%
- Progressive lesion necrosis is related to increasing aphasia severity in chronic stroke 95%
- Post-stroke changes in brain structure and function can both influence acute upper limb function and subsequent recovery 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.