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Development of Laser Optoacoustic and Ultrasonic Imaging System for breast cancer utilizing handheld array probes

机译:利用手持阵列探头的乳腺癌激光光声和超声成像系统的研制

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We describe two laser optoacoustic imaging systems for breast cancer detection based on arrays of acoustic detectors operated manually in a way similar to standard ultrasonic breast imaging. The systems have the advantages of standard light illumination (regardless of the interrogated part of the breast), the ability to visualize any part of the breast, and convenience in operation. The first system could work in both ultrasonic and optoacoustic mode, and was developed based on a linear ultrasonic breast imaging probe with two parallel rectangular optical bundles. We used it in a pilot clinical study to provide for the first time demonstration that the boundaries of the tumors visualized on the optoacoustic and ultrasonic images matched. Such correlation of coregistered images proves that the objects on both images represented indeed the same tumor. In the optoacoustic mode we were also able to visualize blood vessels located in the neighborhood of the tumor. The second system was proposed as a circular array of acoustic transducers with an axisymmetric laser beam in the center. It was capable of 3D optoacoustic imaging with minimized optoacoustic artifacts caused by the distribution of the absorbed optical energy within the breast tissue. The distribution of optical energy absorbed in the bulk tissue of the breast was removed from the image by implementing the principal component analysis on the measured signals. The computer models for optoacoustic imaging using these two handheld probes were developed. The models included three steps: (1) Monte Carlo simulations of the light distribution within the breast tissue, (2) generation of optoacoustic signals by convolving N-shaped pressure signals from spherical voxels with the shape of individual transducers, and (3) back-projecting processed optoacoustic signals onto spherical surfaces for image reconstruction. Using the developed models we demonstrated the importance of the included spatial impulse response of the optoacoustic imaging system.
机译:我们描述了一种基于类似于标准超声波乳房成像的方式操作的声学探测器阵列的用于乳腺癌检测的两个激光光声成像系统。该系统具有标准光照射的优点(无论乳房的询问部分),能够可视化乳房的任何部分,以及操作方便。第一系统可以在超声波和光声模式下工作,并且基于具有两个平行矩形光束的线性超声波乳房成像探针开发。我们在试点临床研究中使用它来提供第一次示范,即在光声和超声图像上显示的肿瘤的界限。 Coregristered图像的这种相关性证明了这两种图像上的物体确实表示相同的肿瘤。在光声模式中,我们还能够可视化位于肿瘤附近的血管。第二系统被提出为具有中心的轴对称激光束的圆形换能器的圆形阵列。它能够具有通过乳房组织内吸收光能分布引起的最小化的光声伪像3d光声成像。通过在测量信号上实施主成分分析,从图像中除去乳房的体组织中吸收的光能分布。开发了使用这两个手持探针的光声成像的计算机模型。该模型包括三个步骤:(1)乳房组织内的光分布的蒙特卡罗模拟,(2)通过从球形体素与各个换能器的形状卷积n形压力信号,(3)回来 - 在用于图像重建的球面上喷射处理的光声信号。使用开发的模型,我们证明了包括光声成像系统的包括空间脉冲响应的重要性。

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