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首页> 外文期刊>Journal of Biomechanics >A simple and rapid method for electromagnetic field distortion correction when using two Fastrak sensors for biomechanical studies.
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A simple and rapid method for electromagnetic field distortion correction when using two Fastrak sensors for biomechanical studies.

机译:使用两个Fastrak传感器进行生物力学研究时,一种简单快速的电磁场畸变校正方法。

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摘要

The article presents a simple and rapid method for the correction of electromagnetic distortions when using electromagnetic Fastrak (Polhemus, USA) sensors. It is based on the minimization of objective functions composed of derivative polynomial functions, hence estimating the distortion of the electromagnetic field. The polynomial functions composing the objective function each contain 35 deformation coefficients. These coefficients are then used to correct the electromagnetic measures in position and orientation. Preliminary results on the efficacy of the method are presented for two subjects who walked on a treadmill, and for whom relative movement of the lower leg with respect to the thigh was recorded using two Fastrak sensors. The corrected Fastrak measurements were compared with optoelectronic measurements (Vicon, USA), which are not affected by distortions as electromagnetic sensors are. Results showed that after 3min of calibrating a volume of approximately 1m(3), the method proved to be efficient in correcting errors in orientation (56% (2.72-1.12 degrees ), 78% (4.4-0.89 degrees ), and 56% (2.25-0.90 degrees ) of error reduction in the respective flexion/extension, ab/adduction and tibial internal/external rotation) and position (53% (18.9-8.9mm), 21% (6.6-4.6mm), and 48% (15.9-8.1mm) of error reduction in the respective medial/lateral, anterior/posterior and proximal/distal translations) (values are overall means for two subjects and four calibration procedures). That amount of correction compared favorably with values presented in the literature.
机译:本文介绍了一种使用电磁Fastrak(美国Polhemus)传感器时校正电磁畸变的简单而快速的方法。它基于由导数多项式函数组成的目标函数的最小化,从而估算了电磁场的失真。组成目标函数的多项式函数每个包含35个变形系数。这些系数然后用于校正位置和方向上的电磁测量。对于两个在跑步机上行走的受试者,使用两个Fastrak传感器记录了小腿相对于大腿的相对运动,介绍了该方法的有效性的初步结果。将校正后的Fastrak测量值与光电测量值(美国Vicon)进行比较,光电测量值不受电磁传感器的影响。结果表明,在校准约1m(3)的体积3分钟后,该方法被证明可有效地校正方向​​误差(56%(2.72-1.12度),78%(4.4-0.89度)和56%(各自的屈曲/伸展,外展/内收和胫骨内/外旋转的误差减少2.25-0.90度)(53%(18.9-8.9mm),21%(6.6-4.6mm)和48%( 15.9-8.1mm)的内/外侧,前/后和近端/远端平移的误差减小(数值是两个受试者和四个校准程序的总体平均值)。该校正量与文献中给出的值相比具有优势。

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