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Detection, numerical simulation and approximate inversion of optoacoustic signals generated in multi-layered PVA hydrogel based tissue phantoms

机译:基于多层PVA水凝胶的组织体模中产生的光声信号的检测,数值模拟和近似反演

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Optoacoustic (OA) measurements can not only be used for imaging purposes but as a more general tool to “sense” physical characteristics of biological tissue, such as geometric features and intrinsic optical properties. In order to pave the way for a systematic model-guided analysis of complex objects we devised numerical simulations in accordance with the experimental measurements. We validate our computational approach with experimental results observed for layered polyvinyl alcohol hydrogel samples, using melanin as the absorbing agent. Experimentally, we characterize the acoustic signal observed by a piezoelectric detector in the acoustic far-field in backward mode and we discuss the implication of acoustic diffraction on our measurements. We further attempt an inversion of an OA signal in the far-field approximation.
机译:光声(OA)测量不仅可以用于成像目的,而且可以作为一种更通用的工具来“感知”生物组织的物理特性,例如几何特征和固有光学特性。为了为复杂对象的系统模型指导分析铺平道路,我们根据实验测量结果设计了数值模拟。我们使用黑色素作为吸收剂,对层状聚乙烯醇水凝胶样品观察到的实验结果验证了我们的计算方法。实验上,我们表征了压电探测器在声学远场中以向后模式观察到的声学信号,并讨论了声学衍射对测量的影响。我们进一步尝试在远场近似中反转OA信号。

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