Brain Network Modulation

Brain network modulation is the deliberate alteration of communication and activity across interconnected brain regions, a core concept in neuroscience for understanding and influencing brain function. It works by changing the excitability, timing, or connectivity of neural circuits through approaches such as electrical or magnetic stimulation, pharmacological intervention, or targeted behavioral activity; these changes can strengthen, weaken, or reorganize network interactions. Researchers use brain network modulation to investigate cognition, emotion, and behavior, while clinical studies assess its potential to improve abnormal circuit function in neurological and psychiatric disorders. Network-based approaches also support more precise, personalized interventions as brain activity and connectivity can be monitored during treatment.

Brain Network Modulation - Related Videos

Research

JoVE Journal - Engineering

Soft Pneumatic Robot Modulates Graph Theory Metrics of Brain Network for Hand Rehabilitation After Stroke

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2025

This study explores the effects of a configurable soft pneumatic robot on enhancing whole-brain network topology post-stroke. Graph theory analysis indicates significant improvements in clustering coefficient, path length, and global efficiency. Findings highlight the potential of programmable robotic protocols to modulate neuroplasticity and optimize functional recovery in stroke rehabilitation.

Non-Invasive Electrical Brain Stimulation Montages for Modulation of Human Motor Function

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Cited by 4 •

2016

Non-invasive electrical brain stimulation can modulate cortical function and behavior, both for research and clinical purposes. This protocol describes different brain stimulation approaches for modulation of the human motor system.

Histochemical Imaging of Cortical Modules in Flattened Brain Sections

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2025

Source: Lauer, S. M., et al. Visualization of Cortical Modules in Flattened Mammalian Cortices. J. Vis. Exp. (2018) This video demonstrates a method to visualize the cortical modules in flattened brain sections using histochemical staining. Pre-fixed sections are treated with a straining reagent that highlights active neural clusters, forming dark, high-contrast regions. After mounting and dehydration, cortical modules appear under a bright-field microscope as dark, patchy patterns.

Anatomically Inspired Three-dimensional Micro-tissue Engineered Neural Networks for Nervous System Reconstruction, Modulation, and Modeling

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Cited by 40 •

2017

This manuscript details the fabrication of micro-tissue engineered neural networks: three-dimensional micron-sized constructs comprised of long aligned axonal tracts spanning aggregated neuronal population(s) encased in a tubular hydrogel. These living scaffolds can serve as functional relays to reconstruct or modulate neural circuitry or as biofidelic test-beds mimicking gray-white matter neuroanatomy.

Non-Invasive Electrical Brain Stimulation for Modulating Human Motor Neuron Activity

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2025

Source: Curado, M. et. al., Non-Invasive Electrical Brain Stimulation Montages for Modulation of Human Motor Function. J. Vis. Exp. (2016)This video demonstrates the setup and mechanism of transcranial direct current stimulation (tDCS) for modulating human motor function. By placing the anode over the primary motor cortex and the cathode over the contralateral supraorbital area, the targeted electrical stimulation increases cortical excitability, enhancing motor neuron activity and improving...

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