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Effect of rotating partial illumination on image reconstruction for optoacoustic breast tomography

机译:旋转部分照射对光声乳房层析成像图像重建的影响

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Optoacoustic tomography (OAT) is a promising imaging modality for human breast cancer imaging, with higher resolution and deeper penetration compared to other optical imaging modalities such as diffuse optical tomography or optical coherence tomography. It yields a resolution of 1 mm at depth up to 2 cm. But there is an inherent conflict between the limitations imposed on laser power and the need to adequately penetrate a substantial portion of the breast. To achieve sufficient penetration at every view angle, instead of illuminating the whole breast all at once, sometimes illumination is focused onto a small region of the breast and rotated along with the transducer array to cover the entire object. This paper evaluates the effect of this rotating partial illumination design on OAT image reconstruction. The optical process is simulated by conducting Monte Carlo simulations on a numerical phantom mimicking a real breast, with various specially designed illumination schemes. The acoustic process is simulated by incorporating the transducer's spatial impulse response. Iterative reconstruction is applied to estimate the OAT image. We conclude that rotating partial illumination introduces inconsistency into the system equation, and the degree of inconsistency determines the reconstruction quality.
机译:光声断层扫描(OAT)是人乳腺癌成像的有前途的成像模型,与其他光学成像模型(如漫射光学断层扫描或光学相干断层扫描)相比,具有较高分辨率和更深的渗透。它产生1毫米的分辨率,深度为2厘米。但是在激光功率上施加的限制之间存在固有的冲突,并且需要充分渗透大部分乳房。为了在每个视角处获得足够的穿透,而不是一次照亮整个乳房,有时照明聚焦在乳房的小区域上并与换能器阵列一起旋转以覆盖整个物体。本文评估了该旋转局部照明设计对燕麦图像重建的影响。通过在模仿真正的乳房的数值模拟上进行蒙特卡罗模拟来模拟光学过程,具有各种专门设计的照明方案。通过结合换能器的空间脉冲响应来模拟声学过程。迭代重建用于估计燕麦图像。我们得出结论,旋转部分照明引入了系统方程的不一致,并且不一致程度决定了重建质量。

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