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Characteristics of hand tremor time series

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Abstract

Tremor is classified into physiological, essential, and parkinsonian tremor by means of clinical criteria. The aim of our work was to extract quantitative features from the measurements of the acceleration of human postural hand tremor. Different mathematical methods were adopted and modified in order to separate these three types of tremor. Best discrimination between physiological and pathological tremors has been achieved by methods distinguishing nonlinear from linear behavior. On the other hand, methods separating different forms of nonlinear behavior have been found to be superior in discriminating parkinsonian and essential tremor. By these methods physiological and pathological tremors can be separated with an error rate below 20% and essential and parkinsonian tremor with an error rate below 10%. This may help to classify tremor time series by objective mathematical criteria and may increase the understanding of the pathophysiological differences underlying these kinds of tremor.

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References

  • Brillinger D (1965) An introduction to polyspectra, Ann Math Stat 36:1351–1374

    Google Scholar 

  • Brockwell PJ, Davis RA (1987) Time series: theory and methods. Springer, Berlin Heidelberg New York

    Google Scholar 

  • Deuschl G, Blumberg H, Lücking CH (1991) Tremor in reflex sympathetic dystrophy. Arch Neurol 48:1247–1252

    Google Scholar 

  • Deuschl G, Timmer J, Genger H, Gantert C, Lücking CH, Honerkamp J (1992) Frequency, amplitude and waveform characteristics of physiologic and pathologic tremors. In: Clinical and instrumental assessment of extrapyramidal movement disorders. (Brain Research Series) Springer, Berlin Heidelberg New York (in press)

    Google Scholar 

  • Elble RJ, Koller WC (1990) Tremor. Johns Hopkins University Press, Baltimore

    Google Scholar 

  • Gantert C, Honerkamp J, Timmer J (1992) Analyzing the dynamics of hand tremor time series. Biol Cybern 66:479–484

    Google Scholar 

  • Hinich MJ (1982) Testing for gaussianity and linearity of a stationary time series. J Time Series Anal 3 (3):169–176

    Google Scholar 

  • Keenan DM (1985) A Tuckey nonadditivity-type test for time series nonlinearity. Biometrika 72(l):39–44

    Google Scholar 

  • Randall JE (1973) A stochastic time series model for hand tremor. J Appl Physiol 34:390–395

    Google Scholar 

  • Rietz RR, Stiles RN (1974) A viscoelastic mass mechanism as a basis for normal postural tremor. J Appl Physiol 37:852–860

    Google Scholar 

  • Robinson PM (1983) Nonparametric estimators for time series. J Time Series Anal 4(3):185–207

    Google Scholar 

  • Subba Rao T, Gabr MM (1980) A test for linearity of stationary time series. J Time Series Anal 1(1):145–158

    Google Scholar 

  • Tsay RS (1986) Nonlinearity test for time series. Biometrika 73(2):461–466

    Google Scholar 

Download references

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Timmer, J., Gantert, C., Deuschl, G. et al. Characteristics of hand tremor time series. Biol. Cybern. 70, 75–80 (1993). https://doi.org/10.1007/BF00202568

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  • DOI: https://doi.org/10.1007/BF00202568

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