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首页> 外文期刊>Gait & posture >Measuring trunk orientation with a CMOS camera: feasibility and accuracy.
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Measuring trunk orientation with a CMOS camera: feasibility and accuracy.

机译:用CMOS相机测量后备箱方向:可行性和准确性。

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The purpose of this study was to develop and validate a new tool to objectively quantify trunk orientation at the bedside, especially dedicated to the measurement of the lateropulsion in acute and subacute stroke patients. We developed software to analyze 2D movement with a CMOS camera (Logitech Quickcam Pro 4000) and to calculate the orientation of a segment defined by two color markers. First, the accuracy, reproducibility and noise when measuring segment orientations were evaluated with the CMOS camera placed in different positions, and second trunk orientation was measured in static and in dynamic conditions both with a CMOS camera and with a gold standard 3D video system (BTS SMART-e). Results showed that the measurement was accurate (mean error=0.05+/-0.12 degrees), reproducible (S.D. over five measurements=0.005 degrees ) and steady (noise signal=0.02 degrees ). The data obtained with the CMOS camera were highly correlated with those obtained with the 3D video system both in static and in dynamic conditions. However, the CMOS camera must be relatively well centered on the measured segment to avoid error due to image distortion. The parallax error was negligible. In conclusion, this could be an important step in the postural assessment of acute and subacute stroke patients. The CMOS camera, a simple, portable, compact, low-cost, commercially available apparatus is the first tool to objectively quantify lateropulsion at the bedside. This method could also support the development of a rehabilitation program for trunk orientation based on biofeedback using the real-time signal provided by the device.
机译:这项研究的目的是开发和验证一种新的工具,可以客观地量化床旁的躯干方向,特别是用于急性和亚急性中风患者的侧冲量测量。我们开发了使用CMOS相机(Logitech Quickcam Pro 4000)分析2D运动并计算由两个颜色标记定义的线段方向的软件。首先,使用放置在不同位置的CMOS摄像机评估测量段方向时的准确性,可重复性和噪声,然后使用CMOS摄像机和金标准3D视频系统(BTS)在静态和动态条件下测量第二躯干方向。 SMART-e)。结果表明测量结果准确(平均误差= 0.05 +/- 0.12度),可重现(五个测量值的标准偏差= 0.005度)和稳定的(噪声信号= 0.02度)。在静态和动态条件下,使用CMOS相机获得的数据与通过3D视频系统获得的数据都高度相关。但是,CMOS相机必须相对良好地位于被测段的中心,以避免由于图像失真引起的误差。视差误差可忽略不计。总之,这可能是急性和亚急性中风患者姿势评估中的重要一步。 CMOS相机是一种简单,便携式,紧凑,低成本的市售设备,它是第一个客观量化床旁侧向运动的工具。该方法还可以支持使用设备提供的实时信号基于生物反馈开发躯干定向康复程序。

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