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A real-time gyroscopic system for three-dimensional measurement of lumbar spine motion

机译:用于腰椎运动三维测量的实时陀螺仪系统

摘要

This paper describes a new method of measuring the three-dimensional movements of the lumbar spine in real time. The measurement system consisted of solid-state gyroscopes which were attached to the trunk. They measured the angular rates of rotations in three dimensions, which were then integrated to obtain the orientation. The sensors contained gravitometers and magnetometers which provided additional information for eliminating any drift of the gyroscopes. The reliability of the data provided by the gyroscopic system was examined in a group of 19 young healthy subjects. The similarity of the movement–time curves obtained in three repeated measurements was assessed by the coefficient of multiple correlation. The coefficients were found to be high, ranging from 0.972 to 0.991. The reliability of the data was slightly lower for measuring axial rotation. The device did not only quantify the kinematic patterns in the primary plane of movements, but also the accompanying movements in the other planes. Flexion and extension was found to be mainly confined to the sagittal plane, whereas lateral bending and axial rotation always accompanied each other. It was concluded that the inertial tracking device would be a useful tool for clinical measurement as well as biomechanical investigations.
机译:本文介绍了一种实时测量腰椎三维运动的新方法。测量系统由安装在行李箱上的固态陀螺仪组成。他们在三个维度上测量了旋转角速度,然后将这些角速度积分以获得方向。传感器包含重力计和磁力计,为消除陀螺仪的任何漂移提供了额外的信息。在一组19名年轻健康受试者中检查了陀螺仪系统提供的数据的可靠性。通过多次相关系数评估在三个重复测量中获得的运动时间曲线的相似性。发现系数很高,范围从0.972到0.991。测量轴向旋转数据的可靠性略低。该设备不仅量化了运动主平面中的运动学模式,而且还量化了其他平面中的伴随运动。发现屈曲和伸展主要局限于矢状面,而横向弯曲和轴向旋转总是相互伴随的。结论是,惯性跟踪装置将是用于临床测量和生物力学研究的有用工具。

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