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具有z轴飞焦点的64层CT扫描仪的图像重建与图像质量评估

Image reconstruction and image quality evaluation for a 64-slice CT scanner with z-flying focal spot.

作者信息

Flohr T G, Stierstorfer K, Ulzheimer S, Bruder H, Primak A N, McCollough C H

机构信息

Siemens Medical Solutions, Computed Tomography Forchheim, Germany.

出版信息

Med Phys. 2005 Aug;32(8):2536-47. doi: 10.1118/1.1949787.

Abstract

We present a theoretical overview and a performance evaluation of a novel z-sampling technique for multidetector row CT (MDCT), relying on a periodic motion of the focal spot in the longitudinal direction (z-flying focal spot) to double the number of simultaneously acquired slices. The z-flying focal spot technique has been implemented in a recently introduced MDCT scanner. Using 32 x 0.6 mm collimation, this scanner acquires 64 overlapping 0.6 mm slices per rotation in its spiral (helical) mode of operation, with the goal of improved longitudinal resolution and reduction of spiral artifacts. The longitudinal sampling distance at isocenter is 0.3 mm. We discuss in detail the impact of the z-flying focal spot technique on image reconstruction. We present measurements of spiral slice sensitivity profiles (SSPs) and of longitudinal resolution, both in the isocenter and off-center. We evaluate the pitch dependence of the image noise measured in a centered 20 cm water phantom. To investigate spiral image quality we present images of an anthropomorphic thorax phantom and patient scans. The full width at half maximum (FWHM) of the spiral SSPs shows only minor variations as a function of the pitch, measured values differ by less than 0.15 mm from the nominal values 0.6, 0.75, 1, 1.5, and 2 mm. The measured FWHM of the smallest slice ranges between 0.66 and 0.68 mm at isocenter, except for pitch 0.55 (0.72 mm). In a centered z-resolution phantom, bar patterns up to 15 lp/cm can be visualized independent of the pitch, corresponding to 0.33 mm longitudinal resolution. 100 mm off-center, bar patterns up to 14 lp/cm are visible, corresponding to an object size of 0.36 mm that can be resolved in the z direction. Image noise for constant effective mAs is almost independent of the pitch. Measured values show a variation of less than 7% as a function of the pitch, which demonstrates correct utilization of the applied radiation dose at any pitch. The product of image noise and square root of the slice width (FWHM of the respective SSP) is the same constant for all slices except 0.6 mm. For the thinnest slice, relative image noise is increased by 17%. Spiral windmill-type artifacts are effectively suppressed with the z-flying focal spot technique, which has the potential to maintain a low artifact level up to pitch 1.5, in this way increasing the maximum volume coverage speed that can be clinically used.

摘要

我们对一种用于多排探测器CT(MDCT)的新型z采样技术进行了理论概述和性能评估,该技术依靠焦点在纵向方向上的周期性运动(z飞焦点)使同时采集的切片数量翻倍。z飞焦点技术已在最近推出的一款MDCT扫描仪中得以实现。使用32×0.6毫米的准直,该扫描仪在其螺旋(螺旋状)扫描模式下每旋转一圈可采集64个重叠的0.6毫米切片,目的是提高纵向分辨率并减少螺旋伪影。等中心处的纵向采样距离为0.3毫米。我们详细讨论了z飞焦点技术对图像重建的影响。我们给出了等中心和偏心情况下螺旋切片灵敏度曲线(SSP)以及纵向分辨率的测量结果。我们评估了在中心放置的20厘米水模中测得的图像噪声的螺距依赖性。为了研究螺旋图像质量,我们给出了拟人化胸部模型的图像和患者扫描图像。螺旋SSP的半高全宽(FWHM)随螺距的变化很小,对于0.6、0.75、1、1.5和2毫米的标称值,测量值与标称值的差异小于0.15毫米。在等中心处,最薄切片的测量FWHM在0.66至0.68毫米之间,螺距为0.55时除外(为0.72毫米)。在中心z分辨率模型中,无论螺距如何,高达15线对/厘米的条形图案都可以被观察到,这对应于0.33毫米的纵向分辨率。在偏离中心100毫米处,高达14线对/厘米的条形图案可见,这对应于在z方向上可分辨的0.36毫米的物体尺寸。对于恒定的有效毫安秒,图像噪声几乎与螺距无关。测量值随螺距的变化小于7%,这表明在任何螺距下所施加的辐射剂量都得到了正确利用。除了0.6毫米的切片外,图像噪声与切片宽度的平方根(相应SSP的FWHM)的乘积对于所有切片都是相同的常数。对于最薄的切片,相对图像噪声增加了17%。z飞焦点技术有效地抑制了螺旋风车型伪影,该技术有可能在螺距高达1.5时保持低伪影水平,从而提高临床上可使用的最大容积覆盖速度。

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