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Analysis of a photoacoustic imaging system by singular value decomposition

机译:通过奇异值分解分析光声成像系统

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Photoacoustic imaging is a hybrid imaging modality capable of producing contrast similar to optical imaging techniques but with increased penetration depth and resolution in turbid media by encoding the information as acoustic waves. In general, it is important to characterize system performance by parameters such as sensitivity, resolution, and contrast. However, system characterization can extend beyond these metrics by implementing advanced analysis via singular value decomposition. A method was developed to experimentally measure a matrix that represented the imaging operator for the system. Analysis of the imaging operator was done via singular value decomposition so that the capability of the system to reconstruct objects and the inherent system sensitivity to those objects could be understood. The results provided by singular value decomposition were compared to simulations performed on an ideal system with matching transducer arrangement and defined object space.
机译:光声成像是一种混合成像方式,能够产生与光学成像技术类似的对比度,但是通过将信息编码为声波,可以增加混浊介质的穿透深度和分辨率。通常,重要的是通过诸如灵敏度,分辨率和对比度之类的参数来表征系统性能。但是,系统表征可以通过奇异值分解实现高级分析,从而扩展到这些指标之外。开发了一种方法来实验性地测量代表系统成像操作员的矩阵。通过奇异值分解对成像算子进行分析,从而可以了解系统重建对象的能力以及系统对那些对象的固有敏感性。将奇异值分解提供的结果与在具有匹配换能器布置和定义的对象空间的理想系统上执行的仿真进行比较。

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