Disrupted integration–segregation balance in the intact hemisphere in chronic spatial neglect. Takamura, Y., Lunven, M., Serhan, Y., Bourlon, C., Ovadia-Caro, S., & Bartolomeo, P. Brain Structure and Function, 231(6):82, June, 2026.
Disrupted integration–segregation balance in the intact hemisphere in chronic spatial neglect [link]Paper  doi  abstract   bibtex   
Spatial neglect is a common and disabling consequence of right hemisphere stroke, characterized by a failure to attend to the contralesional left space, and frequently persists into the chronic stage. There is robust evidence on the role of right-hemisphere frontoparietal dysfunction, interhemispheric structural disconnection and maladaptive activity in the left hemisphere in the persistence of neglect. However, the specific impact of right frontoparietal dysfunction on the functional (re)organization of the left, non-lesioned hemisphere remains poorly understood. In this study, we introduce a novel application of functional connectivity gradient analysis to investigate macroscale functional reorganization in the non-lesioned left hemisphere of patients with chronic left spatial neglect. Focusing on resting-state fMRI data, we demonstrate that abnormal segregation patterns in the left frontoparietal and default mode networks are robustly associated with neglect severity and spatial attentional bias. Notably, the gradient capturing the unimodal-to-transmodal hierarchy was associated with neglect severity, and gradients related to the frontoparietal control network were altered in neglect patients. Single-subject analyses confirmed the presence of this pattern in 11 of the 13 patients included in the study. We also show that greater structural integrity of the left inferior fronto-occipital fasciculus (IFOF) is positively associated with these functional dynamics. These findings reveal a previously overlooked aspect of neglect pathophysiology: the maladaptive dominance of the non-lesioned hemisphere’s intrinsic architecture. By combining innovative gradient-based metrics with classical lesion approaches, our study offers a new framework for understanding neglect as an emergent property of large-scale network imbalance, with clinical implications for diagnosis and intervention, and theoretical consequences for models of hemispheric asymmetries and conscious access.
@article{takamuraDisruptedIntegrationSegregation2026a,
	title = {Disrupted integration–segregation balance in the intact hemisphere in chronic spatial neglect},
	volume = {231},
	issn = {1863-2661},
	url = {https://doi.org/10.1007/s00429-026-03137-1},
	doi = {10.1007/s00429-026-03137-1},
	abstract = {Spatial neglect is a common and disabling consequence of right hemisphere stroke, characterized by a failure to attend to the contralesional left space, and frequently persists into the chronic stage. There is robust evidence on the role of right-hemisphere frontoparietal dysfunction, interhemispheric structural disconnection and maladaptive activity in the left hemisphere in the persistence of neglect. However, the specific impact of right frontoparietal dysfunction on the functional (re)organization of the left, non-lesioned hemisphere remains poorly understood. In this study, we introduce a novel application of functional connectivity gradient analysis to investigate macroscale functional reorganization in the non-lesioned left hemisphere of patients with chronic left spatial neglect. Focusing on resting-state fMRI data, we demonstrate that abnormal segregation patterns in the left frontoparietal and default mode networks are robustly associated with neglect severity and spatial attentional bias. Notably, the gradient capturing the unimodal-to-transmodal hierarchy was associated with neglect severity, and gradients related to the frontoparietal control network were altered in neglect patients. Single-subject analyses confirmed the presence of this pattern in 11 of the 13 patients included in the study. We also show that greater structural integrity of the left inferior fronto-occipital fasciculus (IFOF) is positively associated with these functional dynamics. These findings reveal a previously overlooked aspect of neglect pathophysiology: the maladaptive dominance of the non-lesioned hemisphere’s intrinsic architecture. By combining innovative gradient-based metrics with classical lesion approaches, our study offers a new framework for understanding neglect as an emergent property of large-scale network imbalance, with clinical implications for diagnosis and intervention, and theoretical consequences for models of hemispheric asymmetries and conscious access.},
	language = {en},
	number = {6},
	urldate = {2026-06-09},
	journal = {Brain Structure and Function},
	author = {Takamura, Yusaku and Lunven, Marine and Serhan, Yvonne and Bourlon, Clémence and Ovadia-Caro, Smadar and Bartolomeo, Paolo},
	month = jun,
	year = {2026},
	keywords = {Functional Connectivity Gradients, Inferior Fronto-Occipital Fasciculus (IFOF), Left Hemisphere Reorganization, Network Integration and Segregation, Spatial Neglect},
	pages = {82},
}

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