Nelson Jeffrey S, Wells Jered R, Baker Jay A, Samei Ehsan
Department of Radiology, Clinical Imaging Physics Group, Duke University Medical Center, Durham, North Carolina 27705.
Carl E. Ravin Advanced Imaging Laboratories, Department of Radiology, Duke University Medical Center, Durham, North Carolina 27705.
Med Phys. 2016 May;43(5):2538. doi: 10.1118/1.4947293.
The FDA approved the use of digital breast tomosynthesis (DBT) in 2011 as an adjunct to 2D full field digital mammography (FFDM) with the constraint that all DBT acquisitions must be paired with a 2D image to assure adequate interpretative information is provided. Recently manufacturers have developed methods to provide a synthesized 2D image generated from the DBT data with the hope of sparing patients the radiation exposure from the FFDM acquisition. While this much needed alternative effectively reduces the total radiation burden, differences in image quality must also be considered. The goal of this study was to compare the intrinsic image quality of synthesized 2D c-view and 2D FFDM images in terms of resolution, contrast, and noise.
Two phantoms were utilized in this study: the American College of Radiology mammography accreditation phantom (ACR phantom) and a novel 3D printed anthropomorphic breast phantom. Both phantoms were imaged using a Hologic Selenia Dimensions 3D system. Analysis of the ACR phantom includes both visual inspection and objective automated analysis using in-house software. Analysis of the 3D anthropomorphic phantom includes visual assessment of resolution and Fourier analysis of the noise.
Using ACR-defined scoring criteria for the ACR phantom, the FFDM images scored statistically higher than c-view according to both the average observer and automated scores. In addition, between 50% and 70% of c-view images failed to meet the nominal minimum ACR accreditation requirements-primarily due to fiber breaks. Software analysis demonstrated that c-view provided enhanced visualization of medium and large microcalcification objects; however, the benefits diminished for smaller high contrast objects and all low contrast objects. Visual analysis of the anthropomorphic phantom showed a measureable loss of resolution in the c-view image (11 lp/mm FFDM, 5 lp/mm c-view) and loss in detection of small microcalcification objects. Spectral analysis of the anthropomorphic phantom showed higher total noise magnitude in the FFDM image compared with c-view. Whereas the FFDM image contained approximately white noise texture, the c-view image exhibited marked noise reduction at midfrequency and high frequency with far less noise suppression at low frequencies resulting in a mottled noise appearance.
Their analysis demonstrates many instances where the c-view image quality differs from FFDM. Compared to FFDM, c-view offers a better depiction of objects of certain size and contrast, but provides poorer overall resolution and noise properties. Based on these findings, the utilization of c-view images in the clinical setting requires careful consideration, especially if considering the discontinuation of FFDM imaging. Not explicitly explored in this study is how the combination of DBT + c-view performs relative to DBT + FFDM or FFDM alone.
美国食品药品监督管理局(FDA)于2011年批准将数字乳腺断层合成(DBT)作为二维全视野数字乳腺摄影(FFDM)的辅助手段,并规定所有DBT采集必须与二维图像配对,以确保提供足够的解释性信息。最近,制造商开发了从DBT数据生成合成二维图像的方法,希望避免患者接受FFDM采集带来的辐射暴露。虽然这种急需的替代方法有效降低了总辐射负担,但图像质量的差异也必须予以考虑。本研究的目的是在分辨率、对比度和噪声方面比较合成二维c视图和二维FFDM图像的固有图像质量。
本研究使用了两种体模:美国放射学会乳腺摄影认证体模(ACR体模)和一种新型的3D打印拟人化乳腺体模。两种体模均使用Hologic Selenia Dimensions 3D系统进行成像。对ACR体模的分析包括目视检查和使用内部软件进行的客观自动分析。对3D拟人化体模的分析包括分辨率的目视评估和噪声的傅里叶分析。
根据ACR体模的ACR定义评分标准,无论是平均观察者评分还是自动评分,FFDM图像的得分在统计学上均高于c视图。此外,50%至70%的c视图图像未能达到ACR认证的名义最低要求,主要原因是纤维断裂。软件分析表明,c视图能更好地显示中大型微钙化物体;然而,对于较小的高对比度物体和所有低对比度物体,其优势减弱。对拟人化体模的目视分析显示,c视图图像的分辨率有可测量的损失(FFDM为11 lp/mm,c视图为5 lp/mm),并且小微钙化物体的检测能力下降。对拟人化体模的光谱分析表明,与c视图相比,FFDM图像中的总噪声幅度更高。FFDM图像包含近似白噪声纹理,而c视图图像在中频和高频处的噪声明显降低,在低频处的噪声抑制则少得多,导致出现斑驳的噪声外观。
他们的分析表明,在许多情况下,c视图图像质量与FFDM不同。与FFDM相比,c视图能更好地描绘特定大小和对比度的物体,但整体分辨率和噪声特性较差。基于这些发现,在临床环境中使用c视图图像需要仔细考虑,特别是在考虑停止FFDM成像时。本研究未明确探讨DBT + c视图组合相对于DBT + FFDM或单独FFDM的表现如何。