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首页> 外文期刊>Biomedical Optics Express >Estimating soft tissue thickness from light-tissue interactions––a simulation study
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Estimating soft tissue thickness from light-tissue interactions––a simulation study

机译:通过光组织相互作用估算软组织厚度–模拟研究

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摘要

Immobilization and marker-based motion tracking in radiation therapy often cause decreased patient comfort. However, the more comfortable alternative of optical surface tracking is highly inaccurate due to missing point-to-point correspondences between subsequent point clouds as well as elastic deformation of soft tissue. In this study, we present a proof of concept for measuring subcutaneous features with a laser scanner setup focusing on the skin thickness as additional input for high accuracy optical surface tracking. Using Monte-Carlo simulations for multi-layered tissue, we show that informative features can be extracted from the simulated tissue reflection by integrating intensities within concentric ROIs around the laser spot center. Training a regression model with a simulated data set identifies patterns that allow for predicting skin thickness with a root mean square error of down to 18 µm. Different approaches to compensate for varying observation angles were shown to yield errors still below 90 µm. Finally, this initial study provides a very promising proof of concept and encourages research towards a practical prototype.
机译:放射治疗中的固定和基于标记的运动跟踪通常会导致患者舒适度下降。但是,由于缺少后续点云之间的点对点对应关系以及软组织的弹性变形,光学表面跟踪的更舒适的替代方案非常不准确。在这项研究中,我们提出了一个概念证明,即通过聚焦皮肤厚度的激光扫描仪设置来测量皮下特征,作为高精度光学表面跟踪的附加输入。使用多层组织的蒙特卡洛模拟,我们表明可以通过在激光点中心周围的同心ROI内整合强度,从模拟的组织反射中提取信息特征。通过模拟数据集训练回归模型,可以识别出可以预测皮肤厚度的模式,且均方根误差可低至18 µm。结果表明,使用不同的方法来补偿不同的观察角度会产生仍然低于90 µm的误差。最后,这项初步研究提供了非常有希望的概念证明,并鼓励对实用原型进行研究。

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