Li Qiang, Sone Shusuke, Doi Kunio
Department of Radiology, The University of Chicago, Chicago, Illinois 60637, USA.
Med Phys. 2003 Aug;30(8):2040-51. doi: 10.1118/1.1581411.
Computer-aided diagnostic (CAD) schemes have been developed to assist radiologists in the early detection of lung cancer in radiographs and computed tomography (CT) images. In order to improve sensitivity for nodule detection, many researchers have employed a filter as a preprocessing step for enhancement of nodules. However, these filters enhance not only nodules, but also other anatomic structures such as ribs, blood vessels, and airway walls. Therefore, nodules are often detected together with a large number of false positives caused by these normal anatomic structures. In this study, we developed three selective enhancement filters for dot, line, and plane which can simultaneously enhance objects of a specific shape (for example, dot-like nodules) and suppress objects of other shapes (for example, line-like vessels). Therefore, as preprocessing steps, these filters would be useful for improving the sensitivity of nodule detection and for reducing the number of false positives. We applied our enhancement filters to synthesized images to demonstrate that they can selectively enhance a specific shape and suppress other shapes. We also applied our enhancement filters to real two-dimensional (2D) and three-dimensional (3D) CT images to show their effectiveness in the enhancement of specific objects in real medical images. We believe that the three enhancement filters developed in this study would be useful in the computerized detection of cancer in 2D and 3D medical images.
计算机辅助诊断(CAD)方案已被开发出来,以协助放射科医生在X光片和计算机断层扫描(CT)图像中早期检测肺癌。为了提高结节检测的灵敏度,许多研究人员采用滤波器作为增强结节的预处理步骤。然而,这些滤波器不仅增强了结节,还增强了其他解剖结构,如肋骨、血管和气道壁。因此,结节常常与这些正常解剖结构导致的大量假阳性一起被检测到。在本研究中,我们开发了三种分别针对点状、线状和平面对象的选择性增强滤波器,它们可以同时增强特定形状的对象(例如点状结节)并抑制其他形状的对象(例如线状血管)。因此,作为预处理步骤,这些滤波器将有助于提高结节检测的灵敏度并减少假阳性的数量。我们将增强滤波器应用于合成图像,以证明它们可以选择性地增强特定形状并抑制其他形状。我们还将增强滤波器应用于真实的二维(2D)和三维(3D)CT图像,以展示它们在真实医学图像中增强特定对象的有效性。我们相信,本研究中开发的三种增强滤波器将有助于在二维和三维医学图像中对癌症进行计算机化检测。