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Differential functional reorganization of ventral and dorsal visual pathways following childhood hemispherectomy
Vladislav Ayzenberg1,2, Michael C Granovetter2,3, Sophia Robert2
1Department of Psychology, University of Pennsylvania.
Insights
Pediatric brain surgery patients show remarkable visual pathway reorganization. The ventral visual pathway demonstrates greater plasticity than the dorsal pathway after hemispherectomy, suggesting differing developmental timelines.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Cognitive Neuroscience
Background:
- Hemispherectomy is a surgery for drug-resistant epilepsy, involving removal or disconnection of one brain hemisphere.
- Pediatric patients often retain significant perceptual abilities despite extensive brain tissue loss.
Conclusions:
- The ventral visual pathway exhibits more significant reorganization than the dorsal pathway following hemispherectomy in children.
- The dorsal pathway's earlier maturation may limit its developmental plasticity compared to the ventral pathway.
Abstract:
Hemispherectomy is a surgical procedure in which an entire hemisphere of a patient's brain is resected or functionally disconnected to manage seizures in individuals with drug-resistant epilepsy. Despite the extensive loss of input from both ventral and dorsal visual pathways of one hemisphere, pediatric patients who have undergone hemispherectomy show a remarkably high degree of perceptual function across many domains. In the current study, we sought to understand the extent to which functions of the ventral and dorsal visual pathways reorganize to the contralateral hemisphere following childhood hemispherectomy. To this end, we collected fMRI data from an equal number of left and right hemispherectomy patients who completed tasks that typically elicit lateralized responses from the ventral or the dorsal pathway, namely, word (left ventral), face (right ventral), tool (left dorsal), and global form (right dorsal) perception. Overall, there was greater evidence of functional reorganization in the ventral pathway than in the dorsal pathway. Importantly, because ventral and dorsal reorganization was tested in the very same patients, these results cannot be explained by idiosyncratic factors such as disease etiology, age at the time of surgery, or age at testing. These findings suggest that because the dorsal pathway may mature earlier, it may have a shorter developmental window of plasticity than the ventral pathway and, hence, be less malleable.
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