Brain Adaptation

Brain adaptation is the nervous system’s ability to change its structure, function, and responses in reaction to experience, learning, development, or injury. This process, often called neuroplasticity, occurs as neural connections strengthen or weaken, synapses are formed or eliminated, and brain regions can reorganize their activity in response to changing demands. In psychology, studying brain adaptation helps explain how people acquire skills, adjust to stressful environments, and recover functions after neurological damage. Research in this area informs education, rehabilitation, mental health interventions, and strategies for supporting cognitive and behavioral change across the lifespan.

Brain Adaptation - Related Videos

Research

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Controlling Parkinson's Disease With Adaptive Deep Brain Stimulation

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Cited by 27 •

2014

Adaptive deep brain stimulation (aDBS) is effective for Parkinson’s disease, improving symptoms and reducing power consumption compared to conventional deep brain stimulation (cDBS). In aDBS we track a local field potential biomarker (beta oscillatory amplitude) in real time and use this to control the timing of stimulation.

Research

JoVE EoE - Cancers of the Nervous System

Blood-Brain Tumor Barrier or BBTB Model: An Adaption of the Blood-Brain Barrier or BBB Model to Evaluate Delivery of Therapeutics to the Tumor

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2023

In this video, we describe a comprehensive protocol to establish an in vitro model mimicking the blood-brain tumor barrier. The model holds promise to understand the delivery of therapeutic agents for the treatment of brain tumors.

Neuronal Adaptation to Repetitive Hypoxic Preconditioning in Mice

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2025

Source: Poinsatte, K., et al., Quantification of Neurovascular Protection Following Repetitive Hypoxic Preconditioning and Transient Middle Cerebral Artery Occlusion in Mice. J. Vis. Exp. (2015)This video demonstrates the method of repetitive hypoxic preconditioning (RHP) by exposing a mouse to controlled hypoxia cycles before inducing an ischemic stroke. The experiment evaluates its effects on blood-brain barrier stability, neuronal adaptation, and inflammation.

Adaptation of a Haptic Robot in a 3T fMRI

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Cited by 2 •

2011

The adaptation and use of a haptic robot in a 3T fMRI is described.

A Molecular Readout of Long-term Olfactory Adaptation in C. elegans

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Cited by 2 •

2012

Here we describe a molecular readout of long-term olfactory adaptation in Caenorhabditis elegans. The Protein Kinase G, EGL-4, is necessary for stable adaptation responses in the primary sensory neuron pair called AWC. During prolonged odor exposure EGL-4 translocates from the cytosol to nucleus of the AWC.

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