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Non-Contact Photoacoustic Imaging Using a Commercial Heterodyne Interferometer

机译:使用商用外差干涉仪的非接触式光声成像

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摘要

Most current photoacoustic imaging (PAI) systems employ piezoelectric transducers to receive photoacoustic signals, which requires coupling medium to facilitate photoacoustic wave propagation and are not favored in many applications. Here, we report an all-optical non-contact PAI system based on a commercial heterodyne interferometer working at 1550 nm. The interferometer remotely detects ultrasound-induced surface vibration and does not involve any physical contact with the sample. The theoretically predicated and experimentally measured noise equivalent detection limits of the optical sensor are about 4.5 and 810 Pa over 1.2 MHz bandwidth. Using a raster-scan PAI system equipped with the non-contact design, stereotactic boundaries of an artificial tumor in a pig brain were accurately delineated. The non-contact design also enables the tomographic PAI of biological tissue samples in a non-invasive manner. The preliminary results and analyses reveal that the heterodyne interferometer-based non-contact PAI system holds good potential in biomedical imaging.
机译:当前,大多数光声成像(PAI)系统都采用压电换能器来接收光声信号,这需要耦合介质来促进光声波的传播,因此在许多应用中都不受欢迎。在这里,我们报告了一种基于在1550 nm下工作的商业外差干涉仪的全光学非接触式PAI系统。干涉仪可远程检测超声引起的表面振动,并且不涉及与样品的任何物理接触。在1.2 MHz带宽上,光学传感器的理论预测和实验测量的噪声等效检测极限约为4.5和810 Pa。使用配备了非接触式设计的光栅扫描PAI系统,可以准确地描绘出猪脑中人造肿瘤的立体定向边界。非接触式设计还能够以非侵入性方式对生物组织样本进行断层扫描PAI。初步结果和分析表明,基于外差干涉仪的非接触式PAI系统在生物医学成像中具有良好的潜力。

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