
neuroplasticity
Sign in to saveAlso known as neuronal plasticity, brain plasticity, neural plasticity
Neuroplasticity, also known as neural plasticity or just plasticity, is the medium of neural networks in the brain to change through growth and reorganization. Neuroplasticity refers to the brain's ability to reorganize and rewire its neural connections, enabling it to adapt and function in ways that differ from its prior state. This process can occur in response to learning new skills, experiencing environmental changes, recovering from injuries, or adapting to sensory or cognitive deficits. Such adaptability highlights the dynamic and ever-evolving nature of the brain, even into adulthood. T
Research
81,636 papers- Applied strategies of neuroplasticity.Handbook of clinical neurology · 2023
- Neuroplasticity in Parkinson's disease.Journal of neural transmission (Vienna, Austria : 1996) · 2024
- Neuroplasticity in the context of motor rehabilitation after stroke.Nature reviews. Neurology · 2011
- Molecular Mechanisms of Neuroplasticity: An Expanding Universe.Biochemistry. Biokhimiia · 2017
- Emerging mechanisms of psilocybin-induced neuroplasticity.Trends in pharmacological sciences · 2025
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Article
38 sectionsContents
- History
- Origin
- Research and discovery
- Neurobiology
- Types
- Structural neuroplasticity
- Functional neuroplasticity
- Homologous area adaptation
- Map expansion
- Cross-model reassignment
- Compensatory masquerade
- Applications and examples
- Addiction
- Treatment of brain damage
- Binocular vision
- Phantom limbs
- Chronic pain
- Meditation
- Artistic engagement and art therapy
- Music therapy
- Fitness and exercise
- Deafness and loss of hearing
- Cochlear implant
- Blindness
- Human echolocation
- Attention deficit hyperactivity disorder
- In early child development
- In animals
- Seasonal brain changes
- Traumatic brain injury research
- Aging
- Multilingualism
- Novel treatments of depression
- Nicotine
- See also
- References
- Further reading
- External links
Neuroplasticity, also known as neural plasticity or just plasticity, is the medium of neural networks in the brain to change through growth and reorganization. Neuroplasticity refers to the brain's ability to reorganize and rewire its neural connections, enabling it to adapt and function in ways that differ from its prior state. This process can occur in response to learning new skills, experiencing environmental changes, recovering from injuries, or adapting to sensory or cognitive deficits. Such adaptability highlights the dynamic and ever-evolving nature of the brain, even into adulthood. These changes range from individual neuron pathways making new connections, to systematic adjustments like cortical remapping or neural oscillation. Other forms of neuroplasticity include homologous area adaptation, cross modal reassignment, map expansion, and compensatory masquerade. Examples of neuroplasticity include circuit and network changes that result from learning a new ability, information acquisition, environmental influences, pregnancy, caloric intake, practice/training, and psychological stress.
Neuroplasticity was once thought by neuroscientists to manifest only during childhood, but research in the later half of the 20th century showed that many aspects of the brain exhibit plasticity through adulthood. The developing brain exhibits a higher degree of plasticity than the adult brain. Activity-dependent plasticity can have significant implications for healthy development, learning, memory, and recovery from brain damage.