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Postural Stability Evaluation of Patients Undergoing Vestibular Schwannoma Microsurgery Employing the Inertial Measurement Unit

机译:使用惯性测量单元的前庭神经鞘瘤显微外科手术患者的姿势稳定性评估

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摘要

The article focuses on a noninvasive method and system of quantifying postural stability of patients undergoing vestibular schwannoma microsurgery. Recent alternatives quantifying human postural stability are rather limited. The major drawback is that the posturography system can evaluate only two physical quantities of body movement and can be measured only on a transverse plane. A complex movement pattern can be, however, described more precisely while using three physical quantities of 3-D movement. This is the reason why an inertial measurement unit (Xsens MTx unit), through which we obtained 3-D data (three Euler angles or three orthogonal accelerations), was placed on the patient's trunk. Having employed this novel method based on the volume of irregular polyhedron of 3-D body movement during quiet standing, it was possible to evaluate postural stability. To identify and evaluate pathological balance control of patients undergoing vestibular schwannoma microsurgery, it was necessary to calculate the volume polyhedron using the 3-D Leibniz method and to plot three variables against each other. For the needs of this study, measurements and statistical analysis were made on nine patients. The results obtained by the inertial measurement unit showed no evidence of improvement in postural stability shortly after surgery (4 days). The results were consistent with the results obtained by the posturography system. The evaluated translation variables (acceleration) and rotary variables (angles) measured by the inertial measurement unit correlate strongly with the results of the posturography system. The proposed method and application of the inertial measurement unit for the purpose of measuring patients with vestibular schwannoma appear to be suitable for medical practice. Moreover, the inertial measurement unit is portable and, when compared to other traditional posturography systems, economically affordable. Inertial measurement units can alternatively be implemented in mobile phones or watches.
机译:本文重点介绍一种量化前庭神经鞘瘤显微手术患者体位稳定性的非侵入性方法和系统。量化人类姿势稳定性的最新选择相当有限。主要缺点是,姿势描记系统只能评估身体运动的两个物理量,并且只能在横向平面上进行测量。但是,在使用三个物理量的3-D运动时,可以更精确地描述复杂的运动模式。这就是为什么将惯性测量单元(Xsens MTx单元)放置到患者躯干上的原因,我们通过该惯性测量单元获得了3D数据(三个欧拉角或三个正交加速度)。根据安静站立时3-D人体运动的不规则多面体的体积,采用了这种新颖的方法,就可以评估姿势的稳定性。为了识别和评估接受前庭神经鞘瘤显微手术的患者的病理平衡控制,有必要使用3-D Leibniz方法计算体积多面体,并绘制三个变量。出于这项研究的需要,对9例患者进行了测量和统计分析。惯性测量单元获得的结果表明,术后不久(4天)的姿势稳定性没有改善的迹象。结果与通过姿势照相系统获得的结果一致。惯性测量单元测得的评估平移变量(加速度)和旋转变量(角度)与姿势成像系统的结果密切相关。所提出的用于测量前庭神经鞘瘤患者的惯性测量单元的方法和应用似乎适合于医学实践。而且,惯性测量单元是便携式的,并且与其他传统的姿势描记系统相比,经济上实惠。惯性测量单元也可以在手机或手表中实现。

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