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This comprehensive guide explores the science of motor learning and its critical role in neurorehabilitation. Grounded in dynamic systems theory, it examines how the brain relearns movement after stroke, TBI, and other neurological injuries. Key topics include:Task-oriented approaches that use meaningful activities to drive recoveryConstraint-Induced Movement Therapy (CIMT) to overcome "learned nonuse"Cutting-edge interventions like robotics and virtual realityBilateral training techniques that harness neural plasticityWith evidence-based strategies and clinical case studies, this book equips…mehr

Produktbeschreibung
This comprehensive guide explores the science of motor learning and its critical role in neurorehabilitation. Grounded in dynamic systems theory, it examines how the brain relearns movement after stroke, TBI, and other neurological injuries. Key topics include:Task-oriented approaches that use meaningful activities to drive recoveryConstraint-Induced Movement Therapy (CIMT) to overcome "learned nonuse"Cutting-edge interventions like robotics and virtual realityBilateral training techniques that harness neural plasticityWith evidence-based strategies and clinical case studies, this book equips therapists to optimize rehabilitation outcomes while helping survivors regain functional independence. Essential reading for rehabilitation professionals seeking to translate motor learning principles into effective practice.
Autorenporträt
As a practising pediatric physiotherapist and former academic topper, I combine clinical precision with cutting-edge research to transform outcomes for children with neurological challenges. My work focuses on: Bridging motor learning theory with pediatric practice, Innovating play-based therapeutic interventions.