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一种用于模拟生理性震颤的四元数加权傅里叶线性组合器。

A Quaternion Weighted Fourier Linear Combiner for Modeling Physiological Tremor.

作者信息

Adhikari Kabita, Tatinati Sivanagaraja, Ang Wei Tech, Veluvolu Kalyana C, Nazarpour Kianoush

出版信息

IEEE Trans Biomed Eng. 2016 Nov;63(11):2336-2346. doi: 10.1109/TBME.2016.2530564. Epub 2016 Feb 15.

Abstract

GOAL

This paper offers a new approach to model physiological tremor aiming at attenuating undesired vibrations of the tip of microsurgical instruments.

METHOD

Several tremor modeling algorithms, such as the weighted Fourier linear combiner (wFLC), have proved effective. They, however, treat the three-dimensional (3-D) tremor signal as three independent 1-D signals in the x-, y-, and z-axes. In addition, the force f by which a surgeon holds the instrument has never been taken into account in modeling. Hence, conventional algorithms are inherently blind to any potential multidimensional couplings.

RESULTS

We first show that there exists statistically significant subject- and task-dependent coherence between data in the x-, y-, z -, and f-axes. We hypothesize that a filter that models the tremor in 4-D ( x , y, z, and f ) yields a more accurate model of tremor. We, therefore, developed a quaternion version of the wFLC algorithm and termed it QwFLC. We tested the proposed QwFLC algorithm with real physiological tremor data that were recorded from five novice subjects and four experienced microsurgeons. Although compared to wFLC, QwFLC requires six times larger computational resources, we showed that QwFLC can improve the modeling by up to 67% and that the improvement is proportional to the total coherence between the tremor in xyz and the force signal.

CONCLUSION

By taking into account interactions of the 3-D tremor and the force data, the tremor modeling performance enhances significantly.

摘要

目标

本文提出一种对生理震颤进行建模的新方法,旨在减弱显微外科手术器械尖端的不必要振动。

方法

几种震颤建模算法,如加权傅里叶线性组合器(wFLC),已被证明是有效的。然而,它们将三维(3-D)震颤信号视为x、y和z轴上的三个独立一维信号。此外,外科医生握持器械的力f在建模中从未被考虑在内。因此,传统算法本质上对任何潜在的多维耦合视而不见。

结果

我们首先表明,在x、y、z和f轴的数据之间存在统计学上显著的受试者和任务相关的相关性。我们假设,一个对四维(x、y、z和f)震颤进行建模的滤波器会产生一个更准确的震颤模型。因此,我们开发了wFLC算法的四元数版本,并将其称为QwFLC。我们用从五名新手受试者和四名经验丰富的显微外科医生记录的真实生理震颤数据测试了所提出的QwFLC算法。尽管与wFLC相比,QwFLC需要六倍大的计算资源,但我们表明QwFLC可以将建模提高多达67%,并且这种提高与xyz方向的震颤和力信号之间的总相关性成正比。

结论

通过考虑三维震颤和力数据的相互作用,震颤建模性能显著提高。

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