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首页> 外文期刊>Gait & posture >A method for manipulating a movable platform's axes of rotation: a novel use of the CAREN system.
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A method for manipulating a movable platform's axes of rotation: a novel use of the CAREN system.

机译:一种操纵可移动平台的旋转轴的方法:CAREN系统的一种新颖用途。

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The functionality of movable platforms used in human balance studies is limited as they allow rotations around pre-defined axes, which typically run close to the platform's surface and so cannot be used to directly investigate control mechanisms of proximal joints. A new six degrees of freedom platform (CAREN, Motek, Amsterdam) is now available which in principle could be programmed to rotate around any axis of rotation. The location of the default axes of rotation for this device are not documented and the algorithm to move the axes has not yet been defined. The purpose of this study was to (1) locate the platform's default axes of rotation, (2) implement an algorithm for relocating its axes of rotation and (3) evaluate the algorithm. A simplified method was developed to locate the bounding rectangles within which the default axes of rotations were located. The three axes of rotation were found to be at x=1.13+/-0.69 mm, z=-204.22+/-0.63 mm in the roll plane, y=-2.67+/-0.59 mm, z=-211.38+/-0.63 mm in the pitch plane and x=0.43+/-0.70 mm, y=-4.72+/-0.65 mm in the yaw plane (X: left, Y: rear, Z: up), relative to the centre of its surface, with the maximum bounding rectangle of dimensions 2.50mm by 2.42 mm. Relocation of the platform's axes of rotation was achieved by the use of compensatory corrections, which were determined using a translation algorithm. Evaluation of the algorithm involved pitching the platform around three newly defined axes in the sagittal plane, representing the ankle, knee and hip joints. The platform was able to rotate around the new axes while keeping the instantaneous axes of rotation within bounding rectangles of 1.87 mm x 0.81 mm (ankle), 3.04 mm x 1.23 mm (knee), 3.14 mm x 1.63 mm (hip). The ability to overcome the limitation of other moveable platforms makes the CAREN system a valuable tool in research on the role of individual joints in balance.
机译:人体平衡研究中使用的可移动平台的功能受到限制,因为它们允许围绕预定义的轴旋转,该轴通常靠近平台的表面运行,因此不能用于直接研究近端关节的控制机制。新的六自由度平台(CAREN,Motek,阿姆斯特丹)现已上市,原则上可以编程为围绕任何旋转轴旋转。该设备的默认旋转轴的位置尚未记录,并且尚未定义移动轴的算法。这项研究的目的是(1)定位平台的默认旋转轴,(2)实现用于重新定位其旋转轴的算法,以及(3)对该算法进行评估。开发了一种简化的方法来定位默认旋转轴位于其中的边界矩形。发现三个旋转轴在辊平面中为x = 1.13 +/- 0.69 mm,z = -204.22 +/- 0.63 mm,y = -2.67 +/- 0.59 mm,z = -211.38 +/-相对于其表面中心,在俯仰平面中为0.63毫米,在偏航平面中为x = 0.43 +/- 0.70毫米,y = -4.72 +/- 0.65毫米(X:左,Y:后,Z:上) ,最大边界矩形尺寸为2.50毫米乘2.42毫米。平台旋转轴的重定位是通过使用补偿校正来实现的,该补偿校正是使用平移算法确定的。对算法的评估涉及围绕矢状面中三个新定义的轴(代表踝关节,膝盖和髋关节)倾斜平台。该平台能够围绕新轴旋转,同时将瞬时旋转轴保持在1.87 mm x 0.81 mm(脚踝),3.04 mm x 1.23 mm(膝盖),3.14 mm x 1.63 mm(臀部)的边界矩形内。克服其他可移动平台的局限性的能力使CAREN系统成为研究各个关节在平衡中的作用的宝贵工具。

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