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Real-time transverse process detection in ultrasound

机译:超声中实时横向过程检测

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PURPOSE: Ultrasound offers a safe radiation-free approach to visualize the spine and measure or assess scoliosis. However, ultrasound assessment also poses major challenges. We propose a real-time algorithm and software implementation to automatically delineate the posterior surface patches of transverse processes in tracked ultrasound; a necessary step toward the ultimate goal of spinal curvature measurement. METHODS: Following a pre-filtering of each captured ultrasound image, the shadows cast by each transverse process bone is examined and contours which are likely posterior bone surface are kept. From these contours, a three-dimensional volume of the bone surfaces is created in real-time as the operator acquires the images. The processing algorithm was implemented on the PLUS and 3D Slicer open-source software platforms. RESULTS: The algorithm was tested with images captured using the SonixTouch ultrasound scanner, Ultrasonix C5-2 curvilinear transducer and NDI trakSTAR electromagnetic tracker. Ultrasound data was collected from patients presenting with idiopathic adolescent scoliosis. The system was able to produce posterior surface patches of the transverse process in real-time, as the images were acquired by a non-expert sonographer. The resulting transverse process surface patches were compared with manual segmentation by an expert. The average Hausdorff distance was 3.0 mm when compared to the expert segmentation. CONCLUSION: The resulting surface patches are expected to be sufficiently accurate for driving a deformable registration between the ultrasound space and a generic spine model, to allow for three-dimensional visualization of the spine and measuring its curvature.
机译:目的:超声波提供无辐射的方法来可视化脊柱和测量或评估脊柱侧凸。然而,超声评估也会产生重大挑战。我们提出了一种实时算法和软件实现,以便在跟踪超声中自动描绘横向过程的后表面斑块;朝向脊柱曲率测量的最终目标的必要步骤。方法:在预过滤每个捕获的超声图像之后,检查由每个横向处理骨的阴影被检查,并且不保持骨表面的轮廓。根据这些轮廓,当操作者获取图像时,实时地创建三维体积。处理算法在Plus和3D Slicer开源软件平台上实现。结果:使用使用SonixTouch超声扫描仪捕获的图像进行测试,Ultrasonix C5-2曲线换能器和NDI Trakstar电磁跟踪器用图像进行了测试。从患有特发性青少年脊柱侧凸的患者收集超声数据。该系统能够实时地生产横向过程的后表面斑,因为图像由非专家超声师获得。将得到的横向过程表面贴片与专家的手动分割进行比较。与专家分割相比,平均Hausdorff距离为3.0 mm。结论:预期所得到的表面贴片足够准确地在超声空间和通用脊柱模型之间驱动可变形的配准,以允许脊柱的三维可视化并测量其曲率。

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