Title of article :
A new method for evaluating motor control in gait under real-life environmental conditions. Part 1: The instrument
Author/Authors :
R. Moe-Nilssen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Pages :
8
From page :
320
To page :
327
Abstract :
Objective. To devise an instrument to measure linear acceleration of the trunk during gait under real-life environmental conditions. Design. A mathematical algorithm is suggested to transform data to a horizontal-vertical coordinate system. Calibration procedures are described. Background. A portable, low mass device to measure linear acceleration of the trunk in a horizontal-vertical coordinate system during prolonged walking is of clinical interest and has not been described previously. Method. Linear acceleration is registered by a triaxial, piezoresitant accelerometer, sampled at 512 Hz and collected by exchangeable 20 Mb memory cards of a body-mounted data-logger. Data are transformed to a horizontal-vertical coordinate system, utilising the accelerometerʹs capacity as an inclinometer. Calibration testing was done in a servohydraulic jig by measuring acceleration of 5 Hz, 16 mm vertical displacements, first along each of the sensing axis, then by a tilted accelerometer. Results. Precision testing of each axis and transformed data from all axes showed low variability for acceleration root mean square of sequences of 1000 samples (CV < 0.001). Accuracy testing by double integration of transformed data from the tilted accelerometer demonstrated a mean absolute difference of 0.04 mm (SD = 0.03 mm) from the programmed input. Conclusions. Data from the arbitrarily tilted accelerometer transformed to a horizontal-vertical coordinate system gave precise and accurate measurements of linear accelerations when tested in a servohydraulic jig. Procedures for applying the device in gait analysis are described in a companion article.
Keywords :
Motor control , Human locomotion , Gait analysis , balance , Accelerometry
Journal title :
Clinical Biomechanics
Serial Year :
1998
Journal title :
Clinical Biomechanics
Record number :
485652
Link To Document :
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