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16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 16-slice CT scanner.

作者信息

Flohr Th, Stierstorfer K, Bruder H, Simon J, Polacin A, Schaller S

机构信息

Siemens Medical Solutions, Computed Tomography Forchheim, Germany.

出版信息

Med Phys. 2003 May;30(5):832-45. doi: 10.1118/1.1562168.

Abstract

We present a theoretical overview and a performance evaluation of a novel approximate reconstruction algorithm for cone-beam spiral CT, the adaptive multiple plane reconstruction (AMPR), which has been introduced by Schaller, Flohr et al. [Proc. SPIE Int. Symp. Med. Imag. 4322, 113-127 (2001)] AMPR has been implemented in a recently introduced 16-slice CT scanner. We present a detailed algorithmic description of AMPR which allows for a free selection of the spiral pitch. We show that dose utilization is better than 90% independent of the pitch. We give an overview on the z-reformation functions chosen to allow for a variable selection of the spiral slice width at arbitrary pitch values. To investigate AMPR image quality we present images of anthropomorphic phantoms and initial patient results. We present measurements of spiral slice sensitivity profiles (SSPs) and measurements of the maximum achievable transverse resolution, both in the isocenter and off-center. We discuss the pitch dependence of image noise measured in a centered 20 cm water phantom. Using the AMPR approach, cone-beam artifacts are considerably reduced for the 16-slice scanner investigated. Image quality in MPRs is independent of the pitch and equivalent to a single-slice CT system at pitch p approximately 1.5. The full width at half-maximum (FWHM) of the spiral SSPs shows only minor variations as a function of the pitch, nominal, and measured values differ by less than 0.2 mm. With 16 x 0.75 mm collimation, the measured FWHM of the smallest reconstructed slice is about 0.9 mm. Using this slice width and overlapping image reconstruction, cylindrical holes with 0.6 mm diameter can be resolved in a z-resolution phantom. Image noise for constant effective mAs is nearly independent of the pitch. Measured and theoretically expected dose utilization are in good agreement. Meanwhile, clinical practice has demonstrated the excellent image quality and the increased diagnostic capability that is obtained with the new generation of multislice CT systems.

摘要

我们对一种用于锥束螺旋CT的新型近似重建算法——自适应多平面重建(AMPR)进行了理论概述和性能评估。该算法由Schaller、Flohr等人提出[《国际光学工程学会医学成像研讨会论文集》4322卷,第113 - 127页(2001年)]。AMPR已被应用于最近推出的16层CT扫描仪中。我们给出了AMPR的详细算法描述,该算法允许自由选择螺旋 pitch。我们表明,剂量利用率优于90%,与pitch无关。我们概述了所选择的z轴重建成像函数,以便在任意pitch值下可变选择螺旋切片宽度。为了研究AMPR图像质量,我们展示了仿真人体模型的图像和初步患者结果。我们给出了螺旋切片灵敏度曲线(SSP)的测量结果以及在等中心和偏心位置可实现的最大横向分辨率的测量结果。我们讨论了在中心放置的20 cm水模中测量的图像噪声与pitch的相关性。使用AMPR方法,对于所研究的16层扫描仪,锥束伪影显著减少。多平面重建(MPR)中的图像质量与pitch无关,并且在pitch约为1.5时等同于单层CT系统。螺旋SSP的半高宽(FWHM)随pitch的变化很小,标称值和测量值相差小于0.2 mm。采用16×0.75 mm准直时,最小重建切片的测量FWHM约为0.9 mm。使用此切片宽度和重叠图像重建,在z轴分辨率体模中可以分辨出直径为0.6 mm的圆柱形孔。对于恒定的有效mAs,图像噪声几乎与pitch无关。测量的和理论预期的剂量利用率吻合良好。同时,临床实践已证明新一代多层CT系统具有出色的图像质量和增强的诊断能力。

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