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Ophthalmologic diagnostic tool using MR images for biomechanically- based muscle volume deformation

机译:使用MR图像进行基于生物力学的肌肉体积变形的眼科诊断工具

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We would like to give a work-in-progress report on our ophthalmologic diagnostic software system which performs biomechanically-based muscle volume deformations using MR images. For reconstructing a three-dimensional representation of an extraocular eye muscle, a sufficient amount of high resolution MR images is used, each representing a slice of the muscle. In addition, threshold values are given, which restrict the amount of data used from the MR images. The Marching Cube algorithm is applied to the polygons, resulting in a 3D representation of the muscle, which can efficiently be rendered. A transformation to a dynamic, deformable model is applied by calculating the center of gravity of each muscle slice, approximating the muscle path and subsequently adding Hermite splines through the centers of gravity of all slices. Then, a radius function is defined for each slice, completing the transformation of the static 3D polygon model. Finally, this paper describes future extensions to our system. One of these extensions is the support for additional calculations and measurements within the reconstructed 3D muscle representation. Globe translation, localization of muscle pulleys by analyzing the 3D reconstruction in two different gaze positions and other diagnostic measurements will be available.
机译:我们想就我们的眼科诊断软件系统提供一份正在进行的报告,该系统使用MR图像执行基于生物力学的肌肉体积变形。为了重建眼外肌的三维表示,使用了足够数量的高分辨率MR图像,每个图像代表一块肌肉。另外,给出阈值,其限制了从MR图像使用的数据量。将Marching Cube算法应用于多边形,从而得到可以有效渲染的3D肌肉表示。通过计算每个肌肉切片的重心,近似肌肉路径,然后通过所有切片的重心添加Hermite样条,可以应用到动态,可变形模型的转换。然后,为每个切片定义一个半径函数,从而完成静态3D多边形模型的转换。最后,本文描述了我们系统的未来扩展。这些扩展之一是支持在重建的3D肌肉表示中进行其他计算和测量。球体平移,通过分析两个不同凝视位置的3D重建来定位肌肉滑车以及其他诊断测量方法将可用。

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