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3D hand modelling and analysis using data-gloves: theory and its applications in Parkinson's disease

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this application, 3D electromagnetic sensors have been integrated into a data-glove to accurately model and capture the motion of the human hand. By modelling the movement of the human hand, this system has been shown to accurately measure the rest tremor evident in subjects with Parkinson's disease. It was found that 11 sensors were sufficient to model the human hand, including all the phalanges. A capture rate of 10 measurements per 1 s was achieved. A discrete Fourier analysis has been applied to extract the tremor frequency from the sensor data time series. Further an analysis of the instantaneous speed of hand motion has been used to extract clinically significant diagnosis. The technique described is seen to provide an objective and quantitative method for the analysis of clinic conditions such as Parkinson's disease (PD) and essential tremor (ET) as a way to asscss the eflect of therapeutic interventions.
Rocznik
Strony
3--30
Opis fizyczny
Bibliogr. 15 poz., rys., wykr.
Twórcy
autor
  • University of Newcastle upon Tyne, Department of Electrical and Electronic Engineering, Newcastle upon Tyne, UK
autor
  • University of Newcastle upon Tyne, Department of Electrical and Electronic Engineering, Newcastle upon Tyne, UK
autor
autor
Bibliografia
  • [1] BAIN P., Clinical measurement of tremor, Mov Disord., 1998, 13, 77-80.
  • [2] WARNER D.J., WILL A.D., PETERSON G. W., PRICE S.H., SALE E.J., LOMA LINDA C.A., The VPL Data Glove as a Tool for Hand Rehabilitation and Communication, Annals of Neurology, 1990, 28, 272.
  • [3] WILL A.D., WARNER D.J., PETERSON G.W., PRICE S.H., SALE E.J., LOMA LINDA C. A., Quantitativet Analysis of Tremor and Chorea Using the VPL Data Glove , Annals of Neurology, 1990, 28, 299.
  • [4] BLADEN J.S., ANDERSON A.P., BELL G.D., RAMEH 8., EVANS B., HEATLEY D.J .T., Non-radiological imaging of endoscopes, Lancet, 1993,341,719-722.
  • [5] BLADEN J.S., Electromagnetic imaging system for colonoscopy, Ph.D. thesis, Sheffield University, 1995.
  • [6] ROWLAND R.S., BELL G.D., Non-radiological technique for 3D imaging of intestinal endoscopes: computerised graphical 3D representation of endoscope and skeleton, Med. Biol. Eng. Comput., 1998, 36, 285-290.
  • [7] GIBB W.R.G., LEES A.J., The relevance of the Lewy body to the pathogenesis of idiopathic Parkinson's disease, Journal of Neurology, Neurosurgery and Psychiatry, 1988, 51, 745-752.
  • [8] DEUSCHL G., ZIMMERMAN R., GENGER H., LUCKING C.H., Physiologic classification of essential tremor, [In:] Findley L.J. and Koller W.C. (eds.), Handbook of tremor disorders, New York, NY, Marcel Dekker, 1995, 195-208.
  • [9] PIMENTAL K., TEIXEIRA K., Virtual reality through the new looking glass, Windcrest McGraw Hill,1992.
  • [10] AMMERAAL L., Programming Principles in Computer Graphics, 2nd edition, Wiley Professional Computing, 1992.
  • [11] SMITH S.W., The Scientist and Engineer's Guide to Digital Signal Processing, California Technical Publishing, 1997.
  • [12] STANLEY W.O., Digital Signal Processing, Reston Publishers, 1975.
  • [13] YOUNG R., Update on Parkinson's disease , Am. Fam. Physician., 1999, Apr. 15, 59(8), 2155-2167, 2169-2170.
  • [14] SCHIM, CMEA Medicine Lecture, 2001, San Diego //for rigidity if involved.
  • [15] ALLEN C.R., KARAM Z.K., LeCAM P., In-situ quantification of manual assembly forces and postures during the manufacture of TV deflection coils, Mechatronics, 1997,7, 141-157.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB1-0014-0009
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