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一种使用美国放射学院(ACR)认证体模测量计算机断层扫描(CT)调制传递函数(MTF)和噪声功率谱(NPS)的简单方法。

A simple approach to measure computed tomography (CT) modulation transfer function (MTF) and noise-power spectrum (NPS) using the American College of Radiology (ACR) accreditation phantom.

机构信息

Sackler School of Medicine, Faculty of Medicine, Tel Aviv University, Ramat Aviv 69978, Israel.

出版信息

Med Phys. 2013 May;40(5):051907. doi: 10.1118/1.4800795.

Abstract

PURPOSE

To develop an easily-implemented technique with free publicly-available analysis software to measure the modulation transfer function (MTF) and noise-power spectrum (NPS) of a clinical computed tomography (CT) system from images acquired using a widely-available and standardized American College of Radiology (ACR) CT accreditation phantom.

METHODS

Images of the ACR phantom were acquired on a Siemens SOMATOM Definition Flash system using a standard adult head protocol: 120 kVp, 300 mAs, and reconstructed voxel size of 0.49 mm × 0.49 mm × 4.67 mm. The radial (axial) MTF was measured using an edge method where the boundary of the third module of the ACR phantom, originally designed to measure uniformity and noise, was used as a circular edge. The 3D NPS was measured using images from this same module and using a previously-described methodology that quantifies noise magnitude and 3D noise correlation.

RESULTS

The axial MTF was radially symmetrical and had a value of 0.1 at 0.62 mm(-1). The 3D NPS shape was consistent with the filter-ramp function of filtered-backprojection reconstruction algorithms and previously reported values. The radial NPS peak value was ∼115 HU(2)mm(3) at ∼0.25 mm(-1) and dropped to 0 HU(2)mm(3) by 0.8 mm(-1).

CONCLUSIONS

The authors have developed an easily-implementable technique to measure the axial MTF and 3D NPS of clinical CT systems using an ACR phantom. The widespread availability of the phantom along with the free software the authors have provided will enable many different institutions to immediately measure MTF and NPS values for comparison of protocols and systems.

摘要

目的

开发一种易于实施的技术,使用免费的公共可用分析软件,从使用广泛可用和标准化的美国放射学院 (ACR) CT 认证体模获取的图像中测量临床 CT 系统的调制传递函数 (MTF) 和噪声功率谱 (NPS)。

方法

使用标准成人头部协议在西门子 SOMATOM Definition Flash 系统上获取 ACR 体模的图像:120 kVp、300 mAs 和重建体素大小为 0.49mm×0.49mm×4.67mm。使用边缘法测量径向 (轴向) MTF,其中 ACR 体模的第三模块边界(最初用于测量均匀性和噪声)用作圆形边缘。使用同一模块的图像并使用先前描述的量化噪声幅度和 3D 噪声相关的方法测量 3D NPS。

结果

轴向 MTF 是径向对称的,在 0.62mm(-1)处的值为 0.1。3D NPS 形状与滤波反投影重建算法的滤波器斜坡函数和先前报道的值一致。径向 NPS 峰值约为 115 HU(2)mm(3),在约 0.25mm(-1)处,降至 0 HU(2)mm(3)在 0.8mm(-1)处。

结论

作者开发了一种易于实施的技术,使用 ACR 体模测量临床 CT 系统的轴向 MTF 和 3D NPS。体模的广泛可用性以及作者提供的免费软件将使许多不同的机构能够立即测量 MTF 和 NPS 值,以比较协议和系统。

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