Adaptive and maladaptive brain plasticity
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AI plain-English summaryAmputees often feel vivid sensations of a missing hand decades after losing it, and researchers want to know why—and how to turn that brain plasticity from a source of pain into a tool for recovery. This matters because hand function is essential for daily life, yet the brain’s ability to rewire itself after injury or amputation can be both helpful and harmful. The team studies how the brain reorganises the cortical territories that once controlled a hand, and how that process affects learning to use a prosthetic limb or augmentative devices like the Third Thumb—a wearable extra digit. They also aim to understand phantom limb pain, a common and poorly treated consequence of amputation. If successful, this work could improve rehabilitation strategies for amputees and people with hand dysfunction, helping them adapt more quickly to prosthetics or assistive technologies. It may also lead to new ways to prevent or reduce phantom limb pain. While much of the research is fundamental—exploring how the brain adapts to changed experience—it builds on decades of plasticity research that has already informed stroke recovery and motor learning. Deeper understanding here could eventually reshape how clinicians design training programmes for patients relying on motor augmentation.
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