• DocumentCode
    1488359
  • Title

    Towards a Biomarker of Motor Adaptation: Integration of Kinematic and Neural Factors

  • Author

    Molteni, Erika ; Cimolin, Veronica ; Preatoni, Ezio ; Rodano, Renato ; Galli, Manuela ; Bianchi, Anna M.

  • Author_Institution
    Bioeng. Dept., Politec. di Milano, Milan, Italy
  • Volume
    20
  • Issue
    3
  • fYear
    2012
  • fDate
    5/1/2012 12:00:00 AM
  • Firstpage
    258
  • Lastpage
    267
  • Abstract
    We propose an experimental protocol for the integrated study of motor adaptation during target-based movements. We investigated how motor adaptation affects both cerebral activity and motor performance during the preparation and execution of a pointing task, under different conditions of external perturbation. Electroencephalography (EEG) and movement analysis were simultaneously recorded from 16 healthy subjects enrolled in the study. EEG signal was preprocessed by means of independent component analysis and empirical mode decomposition based Hilbert Huang transform, in order to extract event-related synchronization (ERS) and desynchronization (ERD) parameters. Movement analysis provided several kinematic indexes, such as movement durations, average jerk, and inter-quartile-ranges. Significant correlations between score, neural, and kinematic parameters were found. Specifically, the duration of the going phase of movement was found to correlate with synchronization in the beta brain rhythm, in both the planning and executive phases of movement. Inter-quartile ranges and average jerk showed correlations with executive brain parameters and ERS/ERDcueBeta, respectively. Results indicate the presence of links between the primary motor cortex and the farthest ending point of the upper limb. In the present study, we assessed significant relationship between neural and kinematic descriptors of motor adaptation, during a protocol requiring short-term learning, through the modulation of the external perturbations.
  • Keywords
    Hilbert transforms; electroencephalography; independent component analysis; kinematics; learning systems; neurophysiology; perturbation theory; planning; synchronisation; EEG signal; ERS-ERDcueBeta parameters; average jerk; beta brain rhythm; biomarker; cerebral activity; electroencephalography; empirical mode decomposition based Hilbert Huang transform; event-related desynchronization; event-related synchronization; external perturbation; independent component analysis; kinematic integration; motor adaptation affects; movement durations; neural factors; planning; pointing task execution; pointing task preparation; primary motor cortex; short-term learning protocol; target-based movements; Band pass filters; Biomedical engineering; Electroencephalography; Finite impulse response filter; Kinematics; Protocols; Time frequency analysis; Event-related synchronization/desynchronization; motor adaptation; motor kinematics; Adaptation, Physiological; Adult; Algorithms; Analysis of Variance; Biological Markers; Biomechanics; Brain; Data Interpretation, Statistical; Electroencephalography; Environment; Feedback, Physiological; Female; Humans; Male; Movement; Psychomotor Performance; Upper Extremity; Young Adult;
  • fLanguage
    English
  • Journal_Title
    Neural Systems and Rehabilitation Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1534-4320
  • Type

    jour

  • DOI
    10.1109/TNSRE.2012.2189585
  • Filename
    6179543