首页> 美国卫生研究院文献>Springer Open Choice >The residual STL volume as a metric to evaluate accuracy and reproducibility of anatomic models for 3D printing: application in the validation of 3D-printable models of maxillofacial bone from reduced radiation dose CT images
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The residual STL volume as a metric to evaluate accuracy and reproducibility of anatomic models for 3D printing: application in the validation of 3D-printable models of maxillofacial bone from reduced radiation dose CT images

机译:剩余STL体积作为评估3D打印解剖模型的准确性和可重复性的度量标准:在通过减少辐射剂量CT图像验证颌面骨的3D可打印模型中的应用

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摘要

BackgroundThe effects of reduced radiation dose CT for the generation of maxillofacial bone STL models for 3D printing is currently unknown. Images of two full-face transplantation patients scanned with non-contrast 320-detector row CT were reconstructed at fractions of the acquisition radiation dose using noise simulation software and both filtered back-projection (FBP) and Adaptive Iterative Dose Reduction 3D (AIDR3D). The maxillofacial bone STL model segmented with thresholding from AIDR3D images at 100 % dose was considered the reference. For all other dose/reconstruction method combinations, a “residual STL volume” was calculated as the topologic subtraction of the STL model derived from that dataset from the reference and correlated to radiation dose.
机译:背景技术降低辐射剂量CT对生成用于3D打印的颌面骨STL模型的影响目前尚不清楚。使用噪声模拟软件以滤波后的反投影(FBP)和自适应迭代减量3D(AIDR3D)的方式,以获取放射剂量的几分比例重建了两名使用非对比320探测器行CT扫描的全脸移植患者的图像。从AIDR3D图像中以100%剂量阈值分割的上颌骨STL模型被视为参考。对于所有其他剂量/重建方法组合,计算“残留STL体积”作为从该数据集中从参考中得出的STL模型的拓扑减法,并与辐射剂量相关。

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