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Ultrasound computed tomography in breast imaging: first clinical results of a custom-made scanner.

机译:乳腺成像中的超声计算机断层扫描:定制扫描仪的首例临床结果。

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PURPOSE: To test a system using ultrasound computed tomography (USCT) that superimposes ultrasound data acquired in one cross-sectional plane from multiple angles around the breast (Full Angle Spatial Compounding, FASC) and to reconstruct the distribution of the speed of sound in the breast (SoS reconstruction). MATERIALS AND METHODS: We developed a system combining a conventional ultrasound scanner with a PC-controlled mechanical setup integrated in a custom-made examination couch. In a feasibility study, 3 volunteers (age 26 - 74 years) and one patient with breast cancer were studied. Subjects were placed in the prone position on this couch, with the breast hanging in a water tank. The ultrasound probe was moved in several planes around the breast. A curved reflector that followed the movement of the probe behind the breast was used to calculate the SoS within the breast tissue. Echo-data was processed offline by custom-made software to calculate both FASC and SoS images. RESULTS: In FASC images a reduction of artifacts (i. e. shadowing of Cooper's ligaments and irregular edges of inhomogeneous lesions) and speckles as well as clear visualization of the inner architecture of the breast was achieved. SoS images delivered further diagnostic information and helped to compensate for geometric distortions in the computed images. Difficulties in the visualization of lesions near the thoracic wall and/or the axillary are limitations of this technique. CONCLUSION: The first clinical results of USCT imaging have proven its feasibility as an automated and standardized technique for breast imaging.
机译:目的:测试使用超声计算机断层扫描(USCT)的系统,该系统叠加在一个横截面上从乳房周围多个角度获取的超声数据(全角空间复合,FASC),并重建超声中的声速分布乳房(SoS重建)。材料和方法:我们开发了一种系统,该系统将常规超声扫描仪与集成在定制检查床中的PC控制机械装置结合在一起。在一项可行性研究中,研究了3名志愿者(年龄26-74岁)和一名乳腺癌患者。将受试者俯卧在该沙发上,并将乳房悬挂在水箱中。超声探头在乳房周围的多个平面中移动。使用弯曲的反射器跟随探针在乳房后方的移动来计算乳房组织内的SoS。回波数据已通过定制软件离线处理,以计算FASC和SoS图像。结果:在FASC图像中,减少了伪影(即Cooper韧带的阴影和不均匀病变的不规则边缘)和斑点,以及乳房内部结构的清晰可视化。 SoS图像可提供进一步的诊断信息,并有助于补偿计算图像中的几何变形。胸壁和/或腋窝附近病变的可视化困难是该技术的局限性。结论:USCT成像的第一批临床结果证明了其作为一种自动化且标准化的乳腺成像技术的可行性。

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