bioRxiv · 10.1101/2025.02.16.638524
No Disconnection Syndrome after Near-Complete Callosotomy
Abstract
Sensorimotor processing in the human brain is largely lateralized, with the corpus callosum integrating these processes into a unified experience. Following complete callosotomy, this integration breaks down, resulting in disconnection syndromes. We asked how much of the corpus callosum is sufficient to support functional unity--the absence of disconnection syndrome--by comparing three complete callosotomy patients with one retaining only the splenium. Using lateralized tasks across visual, tactile, visuospatial, and language domains, we predicted domain-specific deficits in the splenium-only patient based on established anatomical models of callosal topography. Strikingly, while complete callosotomy patients exhibited disconnection syndromes, the splenium patient demonstrated functional unity across all domains--as if his entire corpus callosum were intact. Our findings highlight the brains remarkable capacity to maintain behavioral integration through minimal preserved pathways, highlighting how the structure-dependent reorganizational capacity of the human brain allows to preserve functional unity.
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Bekir, S., Hopf, J. L., Paul, T., Wiemer, V. M., Santander, T., Skinner, H. E., Rada, A., Woermann, F. G., Kalbhenn, T., Giesbrecht, B., Bien, C. G., Sporns, O., Gazzaniga, M. S., Volz, L. J., Miller, M. B.. 2025-02-18. No Disconnection Syndrome after Near-Complete Callosotomy. https://doi.org/10.1101/2025.02.16.638524
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