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Simultaneous imaging of ultrasound attenuation, speed of sound and optical absorption in a photoacoustic setup

机译:在光声设置中同时成像超声衰减,声速和光吸收

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Photoacoustic imaging is a relatively new medical imaging modality. In principle it can be used to image the optical absorption distribution of an object by measurements of optically induced acoustic signals. Recently we have developed a modified photoacoustic measurement system which can be used to simultaneously image the ultrasound propagation parameters as well. By proper placement of a passive element we obtain isolated measurements of the object's ultrasound propagation parameters, independent of the optical absorption inside the object. This passive element acts as a photoacoustic source and measurements are obtained by allowing the generated ultrasound signal to propagate through the object. Images of the ultrasound propagation parameters, being the attenuation and speed of sound, can then be reconstructed by inversion of a measurement model. This measurement model relates the projections non-linearly to the unknown images, due to ray refraction effects. After estimating the speed of sound and attenuation distribution, the optical absorption distribution is reconstructed. In this reconstruction problem we take into account the previously estimated speed of sound distribution. So far, the reconstruction algorithms have been tested using computer simulations. The method has been compared with existing algorithms and good results have been obtained.
机译:光声成像是一种相对较新的医学成像方式。原则上,它可以用于通过测量光感应声信号来对物体的光吸收分布进行成像。最近,我们开发了一种改进的光声测量系统,该系统还可用于同时对超声传播参数成像。通过适当放置无源元件,我们可以获得与物体内部的光吸收无关的,物体超声传播参数的隔离测量值。该无源元件充当光声源,并且通过允许生成的超声信号传播通过对象来获得测量值。然后可以通过测量模型的反演来重建超声传播参数的图像,即声音的衰减和速度。由于射线折射效应,该测量模型将投影非线性地与未知图像相关联。在估计声速和衰减分布之后,重建光吸收分布。在此重建问题中,我们考虑了声音分配的先前估计速度。到目前为止,已经使用计算机仿真对重建算法进行了测试。将该方法与现有算法进行了比较,取得了良好的效果。

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