• DocumentCode
    22436
  • Title

    Mechanisms of Motor Recovery in Chronic and Subacute Stroke Patients Following a Robot-Aided Training

  • Author

    Mazzoleni, S. ; Puzzolante, L. ; Zollo, Loredana ; Dario, P. ; Posteraro, F.

  • Author_Institution
    Biorobotics Inst., Scuola Superiore Sant´Anna, Pisa, Italy
  • Volume
    7
  • Issue
    2
  • fYear
    2014
  • fDate
    April-June 2014
  • Firstpage
    175
  • Lastpage
    180
  • Abstract
    The aim of this article is to propose a methodology for analyzing different recovery mechanisms in subacute and chronic patients through evaluation of biomechanical parameters. Twenty-five post-stroke subjects, eight subacute and seventeen chronic, participated in the study. A 2-DoF robotic system was used for upper limb training. Two clinical scales were used for assessment. Forces and velocities at the robot´s end-effector during the execution of upper limb planar reaching movements were measured. Clinical outcome measures show a significant decrease in motor impairment after the treatment both in chronic and subacute patients (MSS-SE, p<;0.001; FM, p<;0.05). Movement velocity increases after the robot-aided treatment in both groups. Mean values of forces exerted by subacute patients are lower than those observed in chronic patients, both at the beginning and at the end of robotic treatment, as in the latter the pathological pattern is already structured. Our results demonstrate that the monitoring of the forces exerted on the end-effector during robot-aided treatment can identify the specific motor recovery mechanisms at different stages. If the pathological pattern is not yet structured, rehabilitative interventions should be addressed toward the use of motor re-learning procedures; on the other hand, if the force analysis shows a strong pathological pattern, mechanisms of compensation should be encouraged.
  • Keywords
    artificial limbs; biomechanics; compensation; medical robotics; mobile robots; patient rehabilitation; patient treatment; 2DoF robotic system; biomechanical parameter; chronic stroke patient; clinical scales; compensation; force analysis; motor impairment; motor recovery mechanism; motor relearning procedure; movement velocity; pathological pattern; rehabilitative intervention; robot end-effector; robot-aided training; robot-aided treatment; robotic treatment; subacute stroke patient; upper limb planar reaching movement; upper limb training; Biomechanics; Force; Frequency modulation; Medical treatment; Robot kinematics; Training; Robotics; assessment; rehabilitation; stroke; upper limb;
  • fLanguage
    English
  • Journal_Title
    Haptics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1939-1412
  • Type

    jour

  • DOI
    10.1109/TOH.2013.73
  • Filename
    6682898