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Compressed sensing in photoacoustic imaging and application for planar detection geometries

机译:光通道成像中的压缩感测和平面检测几何形状的应用

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Fast data acquisition is a central aspect of photoacoustic imaging. Increasing the imaging speed is especially crucial for optical detection schemes where an optical interrogation beam is scanned along a planar detection surface and the ultrasonic waves are recorded at each position sequentially. In this work, we demonstrate that the number of measurements in photoacoustic imaging can significantly be reduced by using techniques of compressed sensing. A main requirement in compressed sensing is the sparsity of the unknowns to be recovered. Sparsity of the pressure wave as a function of space and time is not valid directly. Therefore, we introduce the concept of sparsifying temporal transforms for three-dimensional photoacoustic imaging. We present reconstruction results for simulated data verifying that the proposed compressed sensing scheme allows a significant reduction of the number of spatial measurements without sacrificing the spatial resolution.
机译:快速数据采集是光声成像的中心方面。增加成像速度对于光学检测方案尤其至关重要,其中沿着平面检测表面扫描光学询问光束,并且超声波顺序地记录在每个位置处。在这项工作中,我们证明通过使用压缩感测的技术可以显着降低光声成像的测量数。压缩感测的主要要求是要恢复的未知数的稀疏性。压力波作为空间和时间函数的稀疏性直接无效。因此,我们介绍了对三维光声成像的缩小时间变换的概念。我们呈现了验证所提出的压缩感测方案的模拟数据的重建结果,允许在不牺牲空间分辨率的情况下显着降低空间测量的数量。

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