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Aberration correction for transcranial photoacoustic tomography of primates employing adjunct image data

机译:使用辅助图像数据校正灵长类动物的经颅光声层析成像的像差校正

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摘要

A challenge in photoacoustic tomography (PAT) brain imaging is to compensate for aberrations in the measured photoacoustic data due to their propagation through the skull. By use of information regarding the skull morphology and composition obtained from adjunct x-ray computed tomography image data, we developed a subject-specific imaging model that accounts for such aberrations. A time-reversal-based reconstruction algorithm was employed with this model for image reconstruction. The image reconstruction methodology was evaluated in experimental studies involving phantoms and monkey heads. The results establish that our reconstruction methodology can effectively compensate for skull-induced acoustic aberrations and improve image fidelity in transcranial PAT.
机译:光声断层扫描(PAT)脑成像的一个挑战是补偿由于测量的光声数据通过颅骨传播而引起的像差。通过使用有关从辅助X射线计算机断层扫描图像数据获得的颅骨形态和成分的信息,我们开发了可解决此类像差的特定于对象的成像模型。该模型采用基于时间反转的重建算法进行图像重建。在涉及幻影和猴头的实验研究中评估了图像重建方法。结果表明,我们的重建方法可以有效地补偿颅骨诱发的声像差,并改善经颅PAT的图像保真度。

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