Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Distributed Cortical Network Dynamics of Binocular Convergent Eye Movements in Humans

View through CrossRef
Neuroimaging studies in humans have localized brain functions to specific brain regions, but a recent shift toward distributed network-based models of brain function promises deeper insights into the network processes that generate brain functionality. Resting-state functional connectivity provides a rich mapping of the brain's network architecture, linking with both underlying structure and task-evoked responses across the whole brain. In this study, we utilized a model based on propagation of task-evoked activations over resting-state functional connectivity networks to identify cortical contributions to localized functional brain activations associated with binocular convergent eye movements. Binocular vision is crucial for daily routine activities, with its impairment leading to significant challenges in daily life. The distributed network-level mechanisms of binocular convergent eye movements remain unknown. Results showed that mapping activity flow over brain connections accurately generated actual brain activations associated with convergent eye movements, which were distinct from those observed during control tasks. The visual and dorsal attention networks dominated the propagation of activations through resting-state connections during convergent eye movements. Submodel analyses further revealed that restricting activity flow to individual networks, such as the visual or dorsal attention systems alone, substantially reduced model accuracy, underscoring the necessity of distributed, whole-brain contributions. In conclusion, highly distributed network pathways are involved in convergent eye movements, with some pathways contributing much more than others, providing important implications for future clinical models of binocular dysfunction.
Title: Distributed Cortical Network Dynamics of Binocular Convergent Eye Movements in Humans
Description:
Neuroimaging studies in humans have localized brain functions to specific brain regions, but a recent shift toward distributed network-based models of brain function promises deeper insights into the network processes that generate brain functionality.
Resting-state functional connectivity provides a rich mapping of the brain's network architecture, linking with both underlying structure and task-evoked responses across the whole brain.
In this study, we utilized a model based on propagation of task-evoked activations over resting-state functional connectivity networks to identify cortical contributions to localized functional brain activations associated with binocular convergent eye movements.
Binocular vision is crucial for daily routine activities, with its impairment leading to significant challenges in daily life.
The distributed network-level mechanisms of binocular convergent eye movements remain unknown.
Results showed that mapping activity flow over brain connections accurately generated actual brain activations associated with convergent eye movements, which were distinct from those observed during control tasks.
The visual and dorsal attention networks dominated the propagation of activations through resting-state connections during convergent eye movements.
Submodel analyses further revealed that restricting activity flow to individual networks, such as the visual or dorsal attention systems alone, substantially reduced model accuracy, underscoring the necessity of distributed, whole-brain contributions.
In conclusion, highly distributed network pathways are involved in convergent eye movements, with some pathways contributing much more than others, providing important implications for future clinical models of binocular dysfunction.

Related Results

COMPARISON OF BINOCULAR SPECTACLE PRESCRIPTION VERSUS PATCHING THERAPY IN REFRACTIVE AMBLYOPIA PATIENTS
COMPARISON OF BINOCULAR SPECTACLE PRESCRIPTION VERSUS PATCHING THERAPY IN REFRACTIVE AMBLYOPIA PATIENTS
Background: Amblyopia is the leading cause of visual impairment in children, adolescents, and middle-aged adults, characterized by a loss of binocularity and a significant reductio...
A binocular synaptic network supports interocular response alignment in visual cortical neurons
A binocular synaptic network supports interocular response alignment in visual cortical neurons
AbstractIn the visual system, signals from the two eyes are combined to form a coherent representation through the convergence of synaptic input populations onto individual cortica...
Retinitis Pigmentosa
Retinitis Pigmentosa
In studying the cases with typical and atypical pigmentary degeneration of the retina we strived to analyse in the clinical material all ophthalmoscopic and ocular changes together...
Reward-driven adaptation of movements requires strong recurrent basal ganglia-cortical loops
Reward-driven adaptation of movements requires strong recurrent basal ganglia-cortical loops
Abstract The basal ganglia (BG) are a collection of subcortical nuclei involved in motor control, sensorimotor integration, and procedural learning. They play a key...
Effects of binocularity and eye dominance on visually-driven ocular tracking
Effects of binocularity and eye dominance on visually-driven ocular tracking
IntroductionWe used 18 oculomotor performance metrics (oculometrics) to capture largely independent features of human ocular tracking. Our primary goal was to examine tracking eye ...
Binocular Imaging with The Conformal Eyes
Binocular Imaging with The Conformal Eyes
AbstractThe human eye possesses a natural asymmetry of its optical components and an inhomogeneous distribution of photoreceptors causing optical aberrations and providing high acu...
Prospective Evaluation of Outcomes in Patients Undergoing Treatment for Myopia Using the WaveLight Refractive Suite
Prospective Evaluation of Outcomes in Patients Undergoing Treatment for Myopia Using the WaveLight Refractive Suite
PURPOSE: To evaluate outcomes in patients with myopia up to −12.00 diopters (D), with or without astigmatism up to 6.00 D, who underwent LASIK with the WaveLight Refrac...

Back to Top