首页> 外文期刊>International Journal of Medical Physics, Clinical Engineering and Radiation Oncology >Spatial Accuracy of a Low Cost High Resolution 3D Surface Imaging Device for Medical Applications
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Spatial Accuracy of a Low Cost High Resolution 3D Surface Imaging Device for Medical Applications

机译:用于医疗应用的低成本高分辨率3D表面成像设备的空间精度

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The Kinect is a low-cost motion-sensing device designed for Microsoft’s Xbox 360. Software has been created that enables user to access data from the Kinect, enhancing its versatility. This study characterizes the spatial accuracy and precision of the Kinect for creating 3D images for use in medical applications. Measurements of distances between surface features on both flat and curved objects were made using 3D images created by the Kinect. These measurements were compared to control measurements made by a ruler, calipers or by a CT scan and using the ruler tools provided. Measurements on flat surfaces matched closely to control measurements, with average differences between the Kinect and control measurements of less than 2 mm and percent errors of less than 1%. Measurements on curved surfaces also matched control measurements but errors up to 3mm occurred when measuring protruding surface features or features along lateral boundaries of objects. The Kinect is an alternative to other 3D imaging devices such as CT scanners, laser scanners and photogrammetric devices. Alternative 3D meshing algorithms and combining images from multiple Kinects could resolve errors made when using the Kinect to measure features on curved surfaces. Medical applications include craniofacial anthropometry, radiotherapy patient positioning and surgical planning.
机译:Kinect是专为Microsoft Xbox 360设计的低成本运动感应设备。已开发出使用户能够从Kinect访问数据的软件,从而增强了其多功能性。这项研究的特征是Kinect用于创建3D图像以用于医疗应用的空间精度和精确度。使用Kinect创建的3D图像对平面和弯曲物体上的表面特征之间的距离进行了测量。将这些测量值与通过标尺,卡尺或CT扫描并使用提供的标尺工具进行的控制测量值进行比较。平坦表面上的测量值与对照测量值非常匹配,Kinect和对照测量值之间的平均差异小于2 mm,误差百分比小于1%。弯曲表面上的测量值也与控制测量值匹配,但是在测量突出的表面特征或沿对象横向边界的特征时,会发生3mm的误差。 Kinect是其他3D成像设备(例如CT扫描仪,激光扫描仪和摄影测量设备)的替代产品。可选的3D网格划分算法以及组合来自多个Kinect的图像可以解决使用Kinect测量曲面上的特征时产生的错误。医学应用包括颅面人体测量学,放射治疗患者定位和手术计划。

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