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Contribution of Step Length to Increase Walking and Turning Speed as a Marker of Parkinson’s Disease Progression

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Listed:
  • Nicolas Bayle
  • Amar S Patel
  • Diana Crisan
  • Lanjun J Guo
  • Emilie Hutin
  • Donald J Weisz
  • Steven T Moore
  • Jean-Michel Gracies

Abstract

When increasing ambulation speed in Parkinson’s disease, step cadence increases more than stride length, indicating movement scaling difficulties that affect step generation in particular. We investigated whether step length variation when increasing ambulation speed was related to disease progression. Patients with Parkinson’s disease (N = 39) and controls (N = 152) performed two timed ambulation tasks: at a 'free' (self-selected) pace and then at 'maximal' speed. The total number of steps (including during turns) and time to complete the task were clinically measured. The relative contribution of step length and cadence to increased ambulation speed was determined using two methods: the ratios of change in step length or in cadence to the change in ambulation speed, and the step length index. While the relative contribution of step length and cadence to increased ambulation speed was independent of age in both control and patient groups, in Parkinson’s disease there was a negative correlation between time from diagnosis and the ratio of change in step length to change in ambulation speed (R = 0.54; p = 0.0004) and the step length index (R = 0.56, p = 0.0002). In parallel, there was a positive correlation between time since diagnosis and the ratio of change in cadence to change in ambulation speed (R = 0.57; p = 0.0002). The relative contribution of step length and cadence to increased ambulation speed is age invariant but a marker of Parkinson's disease advancement, and can be easily determined in the clinical setting.

Suggested Citation

  • Nicolas Bayle & Amar S Patel & Diana Crisan & Lanjun J Guo & Emilie Hutin & Donald J Weisz & Steven T Moore & Jean-Michel Gracies, 2016. "Contribution of Step Length to Increase Walking and Turning Speed as a Marker of Parkinson’s Disease Progression," PLOS ONE, Public Library of Science, vol. 11(4), pages 1-13, April.
  • Handle: RePEc:plo:pone00:0152469
    DOI: 10.1371/journal.pone.0152469
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    Cited by:

    1. Shaghayegh Zihajehzadeh & Edward J Park, 2016. "Regression Model-Based Walking Speed Estimation Using Wrist-Worn Inertial Sensor," PLOS ONE, Public Library of Science, vol. 11(10), pages 1-16, October.
    2. Seonjeong Byun & Hyang Jun Lee & Ji Won Han & Jun Sung Kim & Euna Choi & Ki Woong Kim, 2019. "Walking-speed estimation using a single inertial measurement unit for the older adults," PLOS ONE, Public Library of Science, vol. 14(12), pages 1-16, December.

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