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July 15, 2004Annual Review of Biomedical Engineering423 citations

Robotics, Motor Learning, and Neurologic Recovery

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DRDavid J. ReinkensmeyerJEJ.L. EmkenSCSteven C. Cramer

Key Points

  • This research aims to understand how robotic devices influence motor control and recovery in individuals with neurologic injuries.
  • Investigators applied novel force fields to arms using robotic devices to study motor control mechanisms.
  • Robots were utilized for repetitive movement practice in individuals recovering from neurologic injury.
  • The study quantified training amounts and assessed sensorimotor performance with haptic feedback.
  • Robotic training significantly improved motor recovery compared to conventional techniques.
  • Internal models enhanced by robots were robust against environmental and neural disturbances.
  • Robotic interventions showed potential for widespread application in rehabilitation practices.

Abstract

Robotic devices are helping shed light on human motor control in health and injury. By using robots to apply novel force fields to the arm, investigators are gaining insight into how the nervous system models its external dynamic environment. The nervous system builds internal models gradually by experience and uses them in combination with impedance and feedback control strategies. Internal models are robust to environmental and neural noise, generalized across space, implemented in multiple brain regions, and developed in childhood. Robots are also being used to assist in repetitive movement practice following neurologic injury, providing insight into movement recovery. Robots can haptically assess sensorimotor performance, administer training, quantify amount of training, and improve motor recovery. In addition to providing insight into motor control, robotic paradigms may eventually enhance motor learning and rehabilitation beyond the levels possible with conventional training techniques.

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Cite This Study

Reinkensmeyer et al. (2004) studied this question.

synapsesocial.com/papers/69d7c44333ca018b39ae2af1https://doi.org/10.1146/annurev.bioeng.6.040803.140223
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