DocumentCode
3010905
Title
Quanti cation of movement regularity during internally generated and externally cued repetitive movements in patients with Parkinson´s disease.
Author
Myers, L.J. ; MacKinnon, C.D.
Author_Institution
Sensory Motor Performance Program, Rehabilitation Inst. of Chicago, IL
fYear
2005
fDate
16-19 March 2005
Firstpage
281
Lastpage
284
Abstract
Clinical tests used to rate the severity of bradykinesia in patients with Parkinson´s disease generally involve self-initiated and self-maintained repetitive movements (e.g. finger-tapping). This is based on evidence that movement impairment is exacerbated by the removal of external timing cues or performance feedback (i.e. internally generated movements). Typically performance is rated subjectively by a clinician and is based on observation. Currently no clear means of quantifying the performance of these types of repetitive movements exist. Here we evaluate candidate measures that assess the amount and structure of the variability in the movements respectively. These measures are the sample entropy, which quantifies the degree of irregularity in a signal and the standard deviation which quantifies the spread or variability in the signal. This was tested under three different conditions: (1) slow versus fast repetitive movements; (2) externally cued versus internally cued movements; and (3) movements performed before and after the administration of antiparkinsonian medications. Entropy and variability were calculated for both acceleration and EMG signals. The results suggest that internally cued movements are more irregular than externally cued movements and that both regularity and variability in amplitude increase with antiparkinsonian medications. We conclude that the sample entropy is an effective means of objectively quantifying the performance of repetitive movements
Keywords
biomechanics; diseases; electromyography; entropy; medical signal processing; Parkinson´s disease; antiparkinsonian medications; bradykinesia; entropy; externally cued repetitive movements; finger-tapping; internally generated; movement impairment; movement regularity; Acceleration; Automatic testing; Electromyography; Entropy; Feedback; Measurement standards; Medical tests; Parkinson´s disease; Performance evaluation; Timing;
fLanguage
English
Publisher
ieee
Conference_Titel
Neural Engineering, 2005. Conference Proceedings. 2nd International IEEE EMBS Conference on
Conference_Location
Arlington, VA
Print_ISBN
0-7803-8710-4
Type
conf
DOI
10.1109/CNE.2005.1419612
Filename
1419612
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