By T. Goswami

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Weinstein SL, Ponseti IV. Curve progression in idiopathic scoliosis. J Bone Joint Surg Am. 65 (1983), 447–455. Weinstein SL, Zavala DC, Ponseti IV. Idiopathic scoliosis: long-term follow-up and prognosis in untreated patients. J Bone Joint Surg Am. 63 (1981), 702–712. Weiss HR, Hawes MC (2004): Adolescent idiopathic scoliosis, bracing and the HueterVolkmann principle. Spine J 2004, 4(4):484-485. Weiss HR, Werkmann M, Stephan C. Correction effects of the ScoliOlogiC® "Chêneau light" brace in patients with scoliosis.

This is accomplished through the prediction of motor intent, based on inference from neuroimaging data, and subsequent realization of that intent through a robotic prosthesis. This inference involves decoding the neural encoding manifested in the neuroimaging data. As referenced earlier, current research suggests a task-oriented spatial encoding of motor intent. Based on this premise exciting work has been done to control robotic devices by decoding motor intent. Current breakthroughs in motor-based brain-computer interfaces can be furthered by the implementation of more sophisticated control theoretic algorithms.

Grivas Orthopaedic and Spinal Surgeon, Director of Orthopaedics and Trauma Department, “Tzanio” General Hospital of Piraeus, Piraeus Greece 1. Introduction Several published articles suggest that an untreated progressive idiopathic scoliosis (IS) curve may present a poor prognosis into adulthood including back pain, pulmonary compromise, cor pulmonale, psychosocial effects, and even death [Rowe 1998, Danielsson et al 2006, Danielsson et al. 2007, Weinstein et al. 1981, Weinstein and Ponsetty 1983, Weinstein et al 2003].

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