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Kymogram detection and kymogram-correlated image reconstruction from subsecond spiral computed tomography scans of the heart.

机译:从心脏的亚秒螺旋计算机断层扫描中获取运动图形检测和运动图形相关的图像。

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Subsecond single-slice, multi-slice or cone-beam spiral computed tomography (SSCT, MSCT, CBCT) offer great potential for improving heart imaging. Together with the newly developed phase-correlated cardiac reconstruction algorithms 180 degrees MCD and 180 degrees MCI [Med. Phys. 27, 1881-1902 (2000)] or related algorithms provided by the CT manufacturers, high image quality can be achieved. These algorithms require information about the cardiac motion, i.e., typically the simultaneously recorded electrocardiogram (ECG), to synchronize the reconstruction with the cardiac motion. Neither data acquired without ECG information (standard patients) nor acquisitions with corrupted ECG information can be handled adequately. We developed a method to extract the appropriate information about cardiac motion directly from the measured raw data (projection data). The so-called kymogram function is a measure of the cardiac motion as a function of time t or as a function of the projection angle alpha. In contrast to the ECG which is a global measure of the heart's electric excitation, the kymogram is a local measure of the heart motion at the z-position z(a) at projection angle a. The patient's local heart rate as well as the necessary synchronization information to be used with phase-correlated algorithms can be extracted from the kymogram by using a series of signal processing steps. The kymogram information is shown to be adequate to substitute the ECG information. Computer simulations with simulated ECG and patient measurements with simultaneously acquired ECG were carried out for a multislice scanner providing M = 4 slices to evaluate these new approaches. Both the ECG function and the kymogram function were used for reconstruction. Both were highly correlated regarding the periodicity information used for reconstruction. In 21 out of 25 consecutive cases the kymogram approach was equivalent to the ECG-correlated reconstruction; only minor differences in image quality between both methods were observed. For one patient the synchronization information detected by the ECG monitor turned out to be wrong; here, the kymogram constituted the only approach that provided useful reconstructions. Patient studies with 12 and 16 slices indicate the usefulness of our approach for cone-beam CT scans. Kymogram-correlated reconstructions also appear to have the potential to improve imaging of pericardial lung areas in general.
机译:亚秒级单层,多层或锥形束螺旋计算机断层扫描(SSCT,MSCT,CBCT)具有改善心脏成像的巨大潜力。与新开发的相位相关的心脏重建算法一起使用180度MCD和180度MCI [Med。物理[例如,参见图27,1881-1902(2000)]或CT制造商提供的相关算法,可以实现高图像质量。这些算法需要关于心脏运动的信息,即通常同时记录的心电图(ECG),以使重建与心脏运动同步。没有ECG信息的采集数据(标准患者)或ECG信息损坏的采集均无法得到适当处理。我们开发了一种直接从测量的原始数据(投影数据)中提取有关心脏运动的适当信息的方法。所谓的运动图功能是作为时间t的函数或投射角α的函数的心脏运动的量度。与作为对心脏电刺激的整体度量的ECG相比,该运动图是z位置z(a)在投影角a处心脏运动的局部度量。可以通过一系列信号处理步骤从波形图中提取患者的局部心率以及与相位相关算法一起使用的必要同步信息。显示的波形图信息足以替代ECG信息。对于提供M = 4层的多层扫描仪,使用模拟ECG和同时获取ECG的患者测量值进行了计算机模拟,以评估这些新方法。心电图功能和运动图功能均用于重建。两者在用于重建的周期性信息方面高度相关。在25个连续的案例中,有21个的波形图方法等效于与ECG相关的重建。两种方法之间仅观察到图像质量的细微差异。对于一名患者,心电图监护仪检测到的同步信息被证明是错误的。在这里,图形表示是唯一提供有用重构的方法。对12层和16层切片的患者研究表明,我们的方法对锥束CT扫描很有用。一般而言,与运动图相关的重建似乎也有可能改善心包肺区域的成像。

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