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Patient-Specific Minimum-Dose Imaging Protocols for Statistical Image Reconstruction in C-arm Cone-Beam CT Using Correlated Noise Injection

机译:使用相关噪声注入的C型臂锥形束CT中用于统计图像重建的患者特定最小剂量成像方案

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Purpose: A new method for accurately portraying the impact of low-dose imaging techniques in C-arm cone-beam CT (CBCT) is presented and validated, allowing identification of minimum-dose protocols suitable to a given imaging task on a patient-specific basis in scenarios that require repeat intraoperative scans. Method: To accurately simulate lower-dose techniques and account for object-dependent noise levels (x-ray quantum noise and detector electronics noise) and correlations (detector blur), noise of the proper magnitude and correlation was injected into the projections from an initial CBCT acquired at the beginning of a procedure. The resulting noisy projections were then reconstructed to yield low-dose preview (LDP) images that accurately depict the image quality at any level of reduced dose in both filtered backprojection and statistical image reconstruction. Validation studies were conducted on a mobile C-arm, with the noise injection method applied to images of an anthropomorphic head phantom and cadaveric torso across a range of lower-dose techniques. Results: Comparison of preview and real CBCT images across a full range of techniques demonstrated accurate noise magnitude (within ~5%) and correlation (matching noise-power spectrum, NPS). Other image quality characteristics (e.g., spatial resolution, contrast, and artifacts associated with beam hardening and scatter) were also realistically presented at all levels of dose and across reconstruction methods, including statistical reconstruction. Conclusion: Generating low-dose preview images for a broad range of protocols gives a useful method to select minimum-dose techniques that accounts for complex factors of imaging task, patient-specific anatomy, and observer preference. The ability to accurately simulate the influence of low-dose acquisition in statistical reconstruction provides an especially valuable means of identifying low-dose limits in a manner that does not rely on a model for the nonlinear reconstruction process or a model of observer performance.
机译:目的:提出并验证了一种新方法,该新方法可准确描述低剂量成像技术在C型臂锥束CT(CBCT)中的影响,从而能够确定适合特定患者特定成像任务的最小剂量方案需要重复术中扫描的情况的基础。方法:为了精确模拟低剂量技术并考虑与对象有关的噪声水平(x射线量子噪声和探测器电子设备噪声)和相关性(探测器模糊),从初始位置将适当大小和相关性的噪声注入投影中在程序开始时获得的CBCT。然后重建产生的噪声投影,以生成低剂量预览(LDP)图像,该图像可以准确地描述过滤后的反投影和统计图像重建中任何水平的降低剂量的图像质量。验证研究是在移动式C臂上进行的,噪声注入方法已应用于一系列低剂量技术的拟人化头部幻影和尸体躯干图像。结果:在所有技术范围内对预览和真实CBCT图像进行比较,结果显示了准确的噪声幅度(约5%以内)和相关性(匹配噪声功率谱,NPS)。在所有剂量水平和包括统计重建在内的所有重建方法中,还可以现实地呈现其他图像质量特征(例如,空间分辨率,对比度和与光束硬化和散射相关的伪影)。结论:针对各种协议生成低剂量预览图像,为选择最小剂量技术提供了一种有用的方法,该技术考虑了成像任务,患者特定的解剖结构和观察者偏好的复杂因素。准确模拟低剂量采集在统计重建中的影响的能力提供了一种特别有价值的方法,可以以不依赖于非线性重建过程模型或观察者表现模型的方式来确定低剂量限值。

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