Task-specific changes in representation and connectivity between parietal and occipito-temporal areas following left hemisphere stroke
Zhang, Z.; Halai, A.; Bracci, S.; Pizzamiglio, G.; Lambon Ralph, M.; Rounis, E.
Show abstract
Recent studies highlight a critical role of the human lateral occipitotemporal cortex (LOTC) in action understanding, particularly in how we perceive and interpret movements and interactions with tools and bodies. This region, along with connected fronto-parietal areas, has been implicated in limb apraxia, a disorder that affects skilled movement after stroke. In this study, we focused on whether there were any changes in brain activity or connectivity in areas involving the LOTC and its interconnected perceptuo-motor network after left hemisphere stroke, a common cause of limb apraxia. We recruited 29 stroke patients and 19 age-matched healthy participants. Using functional neuroimaging, we asked participants to observe static photographs of familiar tools, bodies, non-tool objects, and scrambled images while performing a simple attention task (1-back task). The goal was to map the brain areas specifically involved in tool-related and body-related visual processing. Whole-brain analysis revealed activity changes related to tool and body stimuli in the LOTC and fronto-parietal regions. Interestingly, there were no significant differences in activation between stroke patients and controls based on the overall whole-brain analysis. However, deeper analyses revealed critical group-related differences. Using representational similarity analysis (RSA), we found that stroke patients showed reduced ability to discriminate between tools and non-tools within the right LOTC. Psychophysiological interactions (PPI) analysis further indicated increased connectivity between the left inferior parietal sulcus (IPS) and the left LOTC in stroke patients during tool-related tasks, a finding that correlated with their performance on meaningless imitation apraxia task. Our findings suggest that limb apraxia after stroke is associated with altered representation of tools and functional connectivity in the perceptuo-motor network, particularly involving parietal and occipitotemporal regions. These results suggest perceptual deficits may be more relevant than previously reported in limb apraxia after stroke. HighlightsO_LIConsistent activations in the lateral occipitotemporal cortex (LOTC) were identified during tool and body localizer tasks in both stroke patients and healthy controls. C_LIO_LIRepresentational similarity analysis (RSA) revealed reduced discrimination between tools and non-tools in the right LOTC of stroke patients. C_LIO_LIDifferential task-related functional connectivity was observed between the LOTC and intraparietal sulcus (IPS) regions in stroke patients compared to controls during the tools localizer task. C_LI These findings provide insights into altered neural representations and connectivity underlying limb apraxia following left hemisphere stroke.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Evaluating the granularity and statistical structure of lesions and behaviour in post-stroke aphasia 97%
- Two cortical representations of voice control are differentially involved in speech fluency 95%
- No Evidence of Altered Language Laterality in People Who Stutter across Different Brain Imaging Studies of Speech and Language 95%
Similar papers in this journal
- Reshaped functional connectivity gradients in acute ischemic stroke 95%
- Post-stroke changes in brain structure and function can both influence acute upper limb function and subsequent recovery 95%
- Motor Function and White Matter Connectivity in Children Treated with Therapeutic Hypothermia for Neonatal Encephalopathy 95%
Similar papers in this journal
- Single-Case Disconnectome Lesion-symptom Mapping: Identifying Two Subtypes of Limb Apraxia 97%
- Seeing through the Static: Reduced Imagery Vividness in Aphantasia is Associated with Impaired Temporal Lobe Signal Complexity 96%
- Frontal language areas do not emerge in the absence of temporal language areas: A case study of an individual born without a left temporal lobe 95%
"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.