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首页> 外文期刊>Physics in medicine and biology. >Quantifying the image quality and dose reduction of respiratory triggered 4D cone-beam computed tomography with patient-measured breathing
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Quantifying the image quality and dose reduction of respiratory triggered 4D cone-beam computed tomography with patient-measured breathing

机译:使用患者测量的呼吸来量化呼吸触发的4D锥束计算机断层扫描的图像质量和减少剂量

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Respiratory triggered four dimensional cone-beam computed tomography (RT 4D CBCT) is a novel technique that uses a patient's respiratory signal to drive the image acquisition with the goal of imaging dose reduction without degrading image quality. This work investigates image quality and dose using patient-measured respiratory signals for RT 4D CBCT simulations. Studies were performed that simulate a 4D CBCT image acquisition using both the novel RT 4D CBCT technique and a conventional 4D CBCT technique. A set containing 111 free breathing lung cancer patient respiratory signal files was used to create 111 pairs of RT 4D CBCT and conventional 4D CBCT image sets from realistic simulations of a 4D CBCT system using a Rando phantom and the digital phantom, XCAT. Each of these image sets were compared to a ground truth dataset from which a mean absolute pixel difference (MAPD) metric was calculated to quantify the degradation of image quality. The number of projections used in each simulation was counted and was assumed as a surrogate for imaging dose. Based on 111 breathing traces, when comparing RT 4D CBCT with conventional 4D CBCT, the average image quality was reduced by 7.6% (Rando study) and 11.1% (XCAT study). However, the average imaging dose reduction was 53% based on needing fewer projections (617 on average) than conventional 4D CBCT (1320 projections). The simulation studies have demonstrated that the RT 4D CBCT method can potentially offer a 53% saving in imaging dose on average compared to conventional 4D CBCT in simulation studies using a wide range of patient-measured breathing traces with a minimal impact on image quality.
机译:呼吸触发的四维锥束计算机断层扫描(RT 4D CBCT)是一种新颖的技术,它使用患者的呼吸信号来驱动图像采集,目的是减少成像剂量而不降低图像质量。这项工作使用患者测量的呼吸信号对RT 4D CBCT模拟进行图像质量和剂量调查。进行了使用新颖的RT 4D CBCT技术和常规4D CBCT技术模拟4D CBCT图像采集的研究。使用包含Rando体模和数字体模XCAT的4D CBCT系统的真实模拟,使用包含111个自由呼吸的肺癌患者呼吸信号文件的集合来创建111对RT 4D CBCT和常规4D CBCT图像集。将这些图像集中的每一个与地面真实数据集进行比较,从中计算出平均绝对像素差异(MAPD)指标以量化图像质量的下降。计算在每个模拟中使用的投影数,并将其视为成像剂量的替代物。根据111条呼吸轨迹,将RT 4D CBCT与常规4D CBCT进行比较时,平均图像质量分别降低了7.6%(Rando研究)和11.1%(XCAT研究)。但是,基于比常规4D CBCT(1320个投影)更少的投影(平均617个),平均成像剂量减少了53%。仿真研究表明,在使用大量患者测量的呼吸轨迹对图像质量造成最小影响的仿真研究中,与传统的4D CBCT相比,RT 4D CBCT方法平均可节省53%的成像剂量。

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