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Improved intraoperative imaging in spine surgery: clinical translation of known-component 3D image reconstruction on the O-arm system

机译:脊柱手术中改进的术中影像:O臂系统上已知成分的3D图像重建的临床翻译

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Purpose. Intraoperative cone-beam CT (CBCT) systems have seen increased use in interventional procedures. Continuingefforts to reduce radiation exposure can benefit from methods that realistically simulate low-dose images using dataacquired with common, standard-dose scan protocols. Simulated images can be further leveraged for assessing methodperformance in low-dose imaging scenarios.Methods. A previously reported noise injection method for low-dose CBCT simulation was implemented for the O-armsystem. The method includes effects associated with noise characteristics of flat-panel detectors. Algorithm parameterswere adapted to the system and to simulate the magnitude and spatial-frequency distribution of image noise (i.e., the noisepowerspectrum, NPS) for images acquired at less than standard dose levels. Phantom and cadaver studies were conductedto validate the accuracy of the method. Images acquired at a standard dose of 41.2 mGy were taken as the initial image,and simulated images were compared to the acquired images at 5 lower dose levels. Validation studies were performed forboth conventional filtered back-projection (FBP) and model-based iterative reconstruction (MBIR) with respect to softtissuecontrast, spatial resolution, and NPS characteristics.Results. Quantitative analysis demonstrated close agreement between simulated and real CBCT images. The noiseinjection method yielded small difference in image contrast. Spatial resolution measured at soft-tissue edges exhibitedagreement within -0.04±0.46 mm. The method also demonstrated overall agreement in noise to within 2.64% (includingconditions in which electronic noise has an appreciable effect) and comparable spatial-frequency distribution in the NPSfor both FBP and MBIR reconstruction methods.Conclusions. The noise injection method provides an accurate means to simulate low-dose CBCT imaging and facilitatedevelopment of low-dose imaging protocols and 3D image reconstruction methods. The method is being further extendedto generate realistic low-dose images from clinical data for development of new low-dose imaging protocols andreconstruction methods.
机译:目的。术中锥束CT(CBCT)系统已在介入手术中得到越来越多的使用。持续的 减少辐射暴露的努力可以受益于使用数据真实模拟低剂量图像的方法 通过常见的标准剂量扫描协议获得。模拟图像可以进一步用于评估方法 小剂量成像情况下的性能。 方法。对O型臂实施了先前报道的用于低剂量CBCT模拟的噪声注入方法 系统。该方法包括与平板检测器的噪声特性相关的影响。算法参数 适应该系统并模拟图像噪声(即噪声功率)的大小和空间频率分布 光谱(NPS),以小于标准剂量水平采集的图像。进行了幻影和尸体研究 验证方法的准确性。以41.2 mGy的标准剂量获取的图像作为初始图像, 并将模拟图像与5种较低剂量水平的采集图像进行比较。进行了验证研究 关于软组织的常规滤波反投影(FBP)和基于模型的迭代重建(MBIR) 对比度,空间分辨率和NPS特性。 结果。定量分析表明模拟的CBCT图像和真实的CBCT图像之间有着紧密的一致性。噪音 注入法产生的图像对比度差异很小。显示在软组织边缘测量的空间分辨率 一致性在-0.04±0.46 mm之内该方法还表明噪声总体一致性在2.64%以内(包括 NPS中电子噪声产生明显影响的条件)和相当的空间频率分布 用于FBP和MBIR重建方法。 结论噪声注入方法提供了一种精确的方法来模拟低剂量CBCT成像并促进 低剂量成像协议的开发和3D图像重建方法。该方法正在进一步扩展 从临床数据生成逼真的低剂量图像,以开发新的低剂量成像方案,并 重建方法。

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