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Design and evaluation of a compound acoustic lens for photoacoustic computed tomography

机译:用于光声计算机断层扫描的复合声透镜的设计和评估

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摘要

In photoacoustic computed tomography, the limited directivity of the detectors may cause deformation of off-center targets and lead to an imbalanced resolution in the imaging area. To improve the directivity of the acoustic detectors, several negative acoustic lenses have been proposed. In this study, we develop a new compound acoustic lens fabricated by integrating a concave polydimethylsiloxane (PDMS) lens and a convex epoxy lens. Both theoretical simulations and experimental evaluations demonstrate that the compound lens provides a larger directivity compared to single lenses made of PDMS, epoxy, and liquid. The measured acceptance angles of a 6-mm piezoelectric acoustic transducer equipped with the compound, epoxy, liquid, and PDMS lenses are 55°, 36°, 25°, and 20°, respectively. No deformation is observed in the off-center targets by using compound lens. However, serious deformation appears in the cases using single lenses.
机译:在光声计算机断层摄影中,检测器的有限方向性可能会导致偏心目标变形,并导致成像区域中的分辨率不平衡。为了改善声检测器的方向性,已经提出了几种负声透镜。在这项研究中,我们开发了一种新的复合声学透镜,该透镜通过集成凹面聚二甲基硅氧烷(PDMS)透镜和凸面环氧透镜制成。理论仿真和实验评估均表明,与由PDMS,环氧树脂和液体制成的单透镜相比,该复合透镜具有更大的方向性。配备有复合透镜,环氧树脂,液体和PDMS透镜的6毫米压电声学换能器的测量接收角分别为55°,36°,25°和20°。使用复合透镜在偏心目标中未观察到变形。但是,在使用单镜片的情况下会出现严重的变形。

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