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实现患者关联成像的 ACROBEAT:自适应心脏圆锥束计算断层扫描。

Towards patient connected imaging with ACROBEAT: Adaptive CaRdiac cOne BEAm computed Tomography.

机构信息

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出版信息

Phys Med Biol. 2019 Mar 11;64(6):065006. doi: 10.1088/1361-6560/ab03f4.

Abstract

Robotic C-arm cone beam computed tomography (CBCT) systems are playing an increasingly pivotal role in interventional cardiac procedures and high precision radiotherapy treatments. One of the main challenges in any form of cardiac imaging is mitigating the intrinsic motion of the heart, which causes blurring and artefacts in the 3D reconstructed image. Most conventional 3D cardiac CBCT acquisition techniques attempt to combat heart motion through retrospective gating techniques, whereby acquired projections are sorted into the desired cardiac phase after the completion of the scan. However, this results in streaking artefacts and unnecessary radiation exposure to the patient. Here, we present our Adaptive CaRdiac cOne BEAm computed Tomography (ACROBEAT) acquisition protocol that uses the patient's electrocardiogram (ECG) signal to adaptively regulate the gantry velocity and projection time interval in real-time. It enables prospectively gated patient connected imaging in a single sweep of the gantry. The XCAT digital software phantom was used to complete a simulation study to compare ACROBEAT to a conventional multi-sweep retrospective ECG gated acquisition, under a variety of different acquisition conditions. The effect of location and length of the acquisition window and total number of projections acquired on image quality and total scan time were examined. Overall, ACROBEAT enables up to a 5 times average improvement in the contrast-to-noise ratio, a 40% reduction in edge response width and an 80% reduction in total projections acquired compared to conventional multi-sweep retrospective ECG gated acquisition.

摘要

机器人 C 臂锥形束计算机断层扫描 (CBCT) 系统在介入性心脏手术和高精度放射治疗中发挥着越来越重要的作用。任何形式的心脏成像的主要挑战之一是减轻心脏的固有运动,这会导致 3D 重建图像中的模糊和伪影。大多数传统的 3D 心脏 CBCT 采集技术试图通过回顾性门控技术来对抗心脏运动,即在扫描完成后,将采集的投影按所需的心脏相位进行分类。然而,这会导致条纹伪影和对患者不必要的辐射暴露。在这里,我们提出了我们的自适应心脏 C 形束计算机断层扫描 (ACROBEAT) 采集协议,该协议使用患者的心电图 (ECG) 信号实时自适应调节机架速度和投影时间间隔。它能够在机架的单次扫描中对前瞻性门控患者进行成像。使用 XCAT 数字软件体模完成了一项模拟研究,以在各种不同的采集条件下,将 ACROBEAT 与传统的多扫描回顾性 ECG 门控采集进行比较。研究了采集窗口的位置和长度以及采集的投影总数对图像质量和总扫描时间的影响。总的来说,与传统的多扫描回顾性 ECG 门控采集相比,ACROBEAT 可以将平均对比度噪声比提高 5 倍,边缘响应宽度降低 40%,采集的投影总数减少 80%。

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