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Photoacoustic imaging of a biological sample using in-phase-sum focus algorithm

机译:使用相位和相对焦算法的生物样本的光声成像

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Photoacoustic (PA) imaging is a new imaging modality, whic hconverts pressure signals received by an array of transducers to a regional distribution of electromagnetic absorption density. In this paper we present an experiment result of a photoacoustic imaging to depths of approx 3-mm for a fabricated absorber within a real tissue, using a 1064-nm pulse YAG laser. The time-resolved stress detection technique was used for PA signal detection and an in-phase-sum-focus algorithm was used for iamge reconstruction. To obtain excellent temporal resolution, a wideband PVDF membrane hydrophone and a fast-digitizing oscilloscope was used for time-resoved detection of PA signals. A computer controled translation stage on which the sample cell was fixed was used to a 2D scanning mode. Images of different depth profile was obtained with a lateral and depth resolution of approx 0.5mm.
机译:光声(PA)成像是一种新的成像模态,WHCONVERS通过换能器阵列接收的压力信号到区域分布电磁吸收密度。在本文中,我们使用1064-nm脉冲YAG激光器将光声成像在真实组织内的制造吸收器的深度为约3mm的深度的实验结果。时间分辨应力检测技术用于PA信号检测,并且用于IM-SUM集合算法用于IAMGE重建。为了获得优异的时间分辨率,使用宽带PVDF膜水听器和快速数字化示波器用于延长PA信号的检测。将样品电池固定的计算机控制的翻译阶段用于2D扫描模式。使用横向和深度分辨率的约0.5mm获得不同深度曲线的图像。

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