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Quantitative image analysis of optical sensor surfaces for movement monitoring

机译:用于运动监控的光学传感器表面的定量图像分析

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The use in clinical situations of a near real-time prototype opto-electronic dynamic 3D surface sensor has been investigated. Variations within optical sensor system height-maps show that noise amounts to 100 microns on snapshots of smooth body surfaces. It is not increased by image processing software removing triangulation spot artefacts. Presence of hairs on a body surface degrades the image quality, but still within tolerance (800 microns, typically the size of in-slice CT pixel). The accuracy of the system is 150 microns, the repeatibility 300 microns; 'off-surface' points should however be masked. Feasibility of dynamic 3D imaging of a body surface is demonstrated. Visualisation and analysis of the entire chest surface movement during breathing is achieved using the optical sensor system. Such monitoring and quantification of patient movement is directly relevant to gated radiotherapy and post-treatment verifications. Analysis of surface movement (height variations over time) in terms of mean and standard deviation should also be included in patient set-up procedures before radiotherapy treatment.
机译:已经研究了近实时原型光电动态3D表面传感器在临床中的使用。光学传感器系统高度图中的变化表明,在光滑的身体表面快照上,噪声总计为100微米。图像处理软件删除三角测量点伪影并不会增加它。毛发在体表上的存在会降低图像质量,但仍在允许范围内(800微米,通常为切片CT像素的大小)。系统的精度为150微米,重复性为300微米;但是,“表外”的点应该被遮盖。证明了对身体表面进行动态3D成像的可行性。使用光学传感器系统可实现呼吸过程中整个胸部表面运动的可视化和分析。对患者运动的这种监视和量化与门控放疗和治疗后验证直接相关。在放疗治疗之前的患者设置程序中还应包括根据平均值和标准偏差进行的表面运动(高度随时间变化)的分析。

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