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Enhancement of photoacoustic tomography by ultrasonic computed tomography based on optical excitation of elements of a full-ring transducer array

机译:基于全环换能器阵列元件的光激发,通过超声计算机断层摄影术增强光声断层摄影术

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摘要

Photoacoustic computed tomography (PACT) is a hybrid technique that combines optical excitation and ultrasonic detection to provide high-resolution images in deep tissues. In the image reconstruction, a constant speed of sound (SOS) is normally assumed. This assumption, however, is often not strictly satisfied in deep tissue imaging, due to acoustic heterogeneities within the object and between the object and the coupling medium. If these heterogeneities are not accounted for, they will cause distortions and artifacts in the reconstructed images. In this Letter, we incorporated ultrasonic computed tomography (USCT), which measures the SOS distribution within the object, into our full-ring array PACT system. Without the need for ultrasonic transmitting electronics, USCT was performed using the same laser beam as for PACT measurement. By scanning the laser beam on the array surface, we can sequentially fire different elements. As a first demonstration of the system, we studied the effect of acoustic heterogeneities on photoacoustic vascular imaging. We verified that constant SOS is a reasonable approximation when the SOS variation is small. When the variation is large, distortion will be observed in the periphery of the object, especially in the tangential direction.
机译:光声计算机断层扫描(PACT)是一种混合技术,将光激发和超声检测相结合,可在深层组织中提供高分辨率图像。在图像重建中,通常假定音速(SOS)为恒定。然而,由于物体内部以及物体与耦合介质之间的声学​​异质性,在深部组织成像中通常不能严格满足该假设。如果不考虑这些异质性,它们将在重建的图像中引起失真和伪影。在这封信中,我们将测量对象内SOS分布的超声计算机断层扫描(USCT)纳入了我们的全环阵列PACT系统。不需要超声发射电子设备,USCT使用与PACT测量相同的激光束进行。通过扫描阵列表面上的激光束,我们可以顺序发射不同的元素。作为该系统的第一个演示,我们研究了声音异质性对光声血管成像的影响。我们验证了当SOS变化较小时,恒定SOS是合理的近似值。当变化大时,将在物体的外围,特别是在切线方向上观察到变形。

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