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首页> 外文期刊>Medical Physics >High temporal resolution for multislice helical computed tomography.
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High temporal resolution for multislice helical computed tomography.

机译:多层螺旋计算机断层扫描的高时间分辨率。

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摘要

Multislice helical computed tomography (CT) substantially reduces scanning time. However, the temporal resolution of individual images is still insufficient for imaging rapidly moving organs such as the heart and adjacent pulmonary vessels. It may, in some cases, be worse than with current single-slice helical CT. The purpose of this study is to describe a novel image reconstruction algorithm to improve temporal resolution in multislice helical CT, and to evaluate its performance against existing algorithms. The proposed image reconstruction algorithm uses helical interpolation followed by data weighting based on the acquisition time. The temporal resolution, the longitudinal (z-axis) spatial resolution, the image noise, and the in-plane image artifacts created by a moving phantom were compared with those from the basic multislice helical reconstruction (helical filter interpolation, HFI) algorithm and the basic single-slice helical reconstruction algorithm (180 degrees linear interpolation, 180LI) using computer simulations. Computer simulation results were verified with CT examinations of the heart and lung vasculature using a 0.5 second multislice scanner. The temporal resolution of HFI algorithm varies from 0.28 and 0.86 s, depending on helical pitch. The proposed method improves the resolution to a constant value of 0.29 s, independent of pitch, allowing moving objects to be imaged with reduced blurring or motion artifacts. The spatial (z) resolution was slightly worse than with the HFI algorithm; the image noise was worse than with the HFI algorithm but was comparable to axial (step-and-shoot) CT. The proposed method provided sharp images of the moving objects, portraying the anatomy accurately. The proposed algorithm for multislice helical CT allowed us to obtain CT images with high temporal resolution. It may improve the image quality of clinical cardiac, lung, and vascular CT imaging.
机译:多层螺旋计算机断层扫描(CT)大大减少了扫描时间。但是,单个图像的时间分辨率仍然不足以对快速移动的器官(例如心脏和相邻的肺血管)成像。在某些情况下,它可能比当前的单层螺旋CT差。这项研究的目的是描述一种新颖的图像重建算法,以提高多层螺旋CT的时间分辨率,并针对现有算法评估其性能。所提出的图像重建算法使用螺旋插值,然后根据采集时间对数据进行加权。将时间分辨率,纵向(z轴)空间分辨率,图像噪声和由移动体模创建的面内图像伪像与基本多层螺旋重建(螺旋滤波器插值,HFI)算法和使用计算机模拟的基本单层螺旋重建算法(180度线性插值,180LI)。计算机仿真结果通过使用0.5秒的多层扫描仪对心脏和肺血管的CT检查进行了验证。 HFI算法的时间分辨率在0.28到0.86 s之间变化,具体取决于螺旋螺距。所提出的方法将分辨率提高到0.29 s的恒定值,而与音高无关,从而可以在减少运动模糊或运动伪影的情况下对运动物体进行成像。空间(z)分辨率比HFI算法稍差;图像噪声比HFI算法更差,但可与轴向(步进-拍摄)CT相比。所提出的方法提供了运动物体的清晰图像,准确地描绘了解剖结构。所提出的多层螺旋CT算法使我们能够获得具有高时间分辨率的CT图像。它可以改善临床心脏,肺和血管CT成像的图像质量。

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