Samala Ravi K, Chan Heang-Ping, Lu Yao, Hadjiiski Lubomir M, Wei Jun, Helvie Mark A
Department of Radiology, University of Michigan, Ann Arbor, MI 48109842, USA.
Phys Med Biol. 2015 Nov 7;60(21):8457-79. doi: 10.1088/0031-9155/60/21/8457. Epub 2015 Oct 14.
We propose a novel approach for the detection of microcalcification clusters (MCs) using joint information from digital breast tomosynthesis (DBT) volume and planar projection (PPJ) image. A data set of 307 DBT views was collected with IRB approval using a prototype DBT system. The system acquires 21 projection views (PVs) from a wide tomographic angle of 60° (60°-21PV) at about twice the dose of a digital mammography (DM) system, which allows us the flexibility of simulating other DBT acquisition geometries using a subset of the PVs. In this study, we simulated a 30° DBT geometry using the central 11 PVs (30°-11PV). The narrower tomographic angle is closer to DBT geometries commercially available or under development and the dose is matched approximately to that of a DM. We developed a new joint-CAD system for detection of clustered microcalcifications. The DBT volume was reconstructed with a multiscale bilateral filtering regularized method and a PPJ image was generated from the reconstructed volume. Task-specific detection strategies were designed to combine information from the DBT volume and the PPJ image. The data set was divided into a training set (127 views with MCs) and an independent test set (104 views with MCs and 76 views without MCs). The joint-CAD system outperformed the individual CAD systems for DBT volume or PPJ image alone; the differences in the test performances were statistically significant (p < 0.05) using JAFROC analysis.
我们提出了一种利用数字乳腺断层合成(DBT)容积和平面投影(PPJ)图像的联合信息来检测微钙化簇(MCs)的新方法。在获得机构审查委员会(IRB)批准后,使用一台DBT原型系统收集了包含307个DBT视图的数据集。该系统从60°的宽断层角度获取21个投影视图(PVs)(60° - 21PV),其剂量约为数字乳腺摄影(DM)系统的两倍,这使我们能够灵活地使用部分PVs模拟其他DBT采集几何结构。在本研究中,我们使用中间的11个PVs模拟了30°的DBT几何结构(30° - 11PV)。更窄的断层角度更接近市售或正在研发的DBT几何结构,并且剂量与DM大致匹配。我们开发了一种用于检测簇状微钙化的新型联合计算机辅助检测(joint - CAD)系统。采用多尺度双边滤波正则化方法重建DBT容积,并从重建容积生成PPJ图像。设计了特定任务的检测策略,以结合来自DBT容积和PPJ图像的信息。数据集被分为一个训练集(127个带有MCs的视图)和一个独立测试集(104个带有MCs的视图和76个不带有MCs的视图)。联合CAD系统在单独使用DBT容积或PPJ图像时优于单个CAD系统;使用JAFROC分析,测试性能的差异具有统计学意义(p < 0.05)。