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Temporal resolution improvement using PICCS in MDCT cardiac imaging

机译:在MDCT心脏成像中使用PICCS改善时间分辨率

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摘要

The current paradigm for temporal resolution improvement is to add more source-detector units and∕or increase the gantry rotation speed. The purpose of this article is to present an innovative alternative method to potentially improve temporal resolution by approximately a factor of 2 for all MDCT scanners without requiring hardware modification. The central enabling technology is a most recently developed image reconstruction method: Prior image constrained compressed sensing (PICCS). Using the method, cardiac CT images can be accurately reconstructed using the projection data acquired in an angular range of about 120°, which is roughly 50% of the standard short-scan angular range (∼240° for an MDCT scanner). As a result, the temporal resolution of MDCT cardiac imaging can be universally improved by approximately a factor of 2. In order to validate the proposed method, two in vivo animal experiments were conducted using a state-of-the-art 64-slice CT scanner (GE Healthcare, Waukesha, WI) at different gantry rotation times and different heart rates. One animal was scanned at heart rate of 83 beats per minute (bpm) using 400 ms gantry rotation time and the second animal was scanned at 94 bpm using 350 ms gantry rotation time, respectively. Cardiac coronary CT imaging can be successfully performed at high heart rates using a single-source MDCT scanner and projection data from a single heart beat with gantry rotation times of 400 and 350 ms. Using the proposed PICCS method, the temporal resolution of cardiac CT imaging can be effectively improved by approximately a factor of 2 without modifying any scanner hardware. This potentially provides a new method for single-source MDCT scanners to achieve reliable coronary CT imaging for patients at higher heart rates than the current heart rate limit of 70 bpm without using the well-known multisegment FBP reconstruction algorithm. This method also enables dual-source MDCT scanner to achieve higher temporal resolution without further hardware modifications.
机译:当前用于提高时间分辨率的范例是添加更多的源检测器单元和/或提高机架旋转速度。本文的目的是提出一种创新的替代方法,该方法可以将所有MDCT扫描仪的时间分辨率提高大约2倍,而无需修改硬件。中央启用技术是最近开发的图像重建方法:先验图像约束压缩传感(PICCS)。使用该方法,可以使用在大约120°的角度范围内获取的投影数据准确地重建心脏CT图像,该角度范围大约是标准短扫描角度范围(对于MDCT扫描仪约为240°)的50%。结果,MDCT心脏成像的时间分辨率可普遍提高约2倍。为了验证所提出的方法,使用了最新的64层CT进行了两次体内动物实验扫描器(GE Healthcare,Waukesha,WI)在不同的机架旋转时间和不同的心率下进行扫描。使用400毫秒机架旋转时间以每分钟83次心跳(bpm)的心率扫描一只动物,并使用350毫秒机架旋转时间以94 bpm扫描第二只动物。使用单源MDCT扫描仪并以400和350 ms的机架旋转时间从单次心跳投影数据可以成功地以高心率成功地进行心脏冠状动脉CT成像。使用提出的PICCS方法,可以在不修改任何扫描仪硬件的情况下将心脏CT成像的时间分辨率有效提高大约2倍。这可能为单源MDCT扫描仪提供一种新方法,以在不使用众所周知的多段FBP重建算法的情况下,以高于当前70 bpm的心率限制的心率为患者实现可靠的冠状动脉CT成像。此方法还使双源MDCT扫描仪无需进一步的硬件修改即可实现更高的时间分辨率。

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