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High-resolution all-optical photoacoustic imaging system for remote interrogation of biological specimens

机译:高分辨率全光学光声成像系统,用于远程询问生物样本

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Conventional photoacoustic imaging (PAI) employs light pulses to produce a photoacoustic (PA) effect and detects the resulting acoustic waves using an ultrasound transducer acoustically coupled to the target tissue. The resolution of conventional PAI is limited by the sensitivity and bandwidth of the ultrasound transducer. We have developed an all-optical versatile PAI system for characterizing ex vivo and in vivo biological specimens. The system employs non-contact interferometric detection of the acoustic signals that overcomes limitations of conventional PAI. A 532-nm pump laser with a pulse duration of 5 ns excited the PA effect in tissue. Resulting acoustic waves produced surface displacements that were sensed using a 532-nm continuous-wave (CW) probe laser in a Michelson interferometer with a GHz bandwidth. The pump and probe beams were coaxially focused using a 50X objective giving a diffraction-limited spot size of 0.48 urn. The phase-encoded probe beam was demodulated using a homodyne interferometer. The detected time-domain signal was time reversed using k-space wave-propagation methods to produce a spatial distribution of PA sources in the target tissue. Performance was assessed using PA images of ex vivo rabbit lymph node specimens and human tooth samples. A minimum peak surface displacement sensitivity of 0.19 pm was measured. The all-optical PAI (AOPAI) system is well suited for assessment of retinal diseases, caries lesion detection, skin burns, section less histology and pressure or friction ulcers.
机译:常规的光声成像(PAI)使用光脉冲来产生光声(PA)效果,并使用与目标组织声学耦合的超声换能器检测所产生的声波。常规PAI的分辨率受超声换能器的灵敏度和带宽的限制。我们已经开发了一种全光学多功能PAI系统,用于表征离体和体内生物样本。该系统采用了声学信号的非接触式干涉测量技术,克服了传统PAI的局限性。脉冲持续时间为5 ns的532 nm泵浦激光器激发了组织中的PA效应。产生的声波产生表面位移,该位移在具有GHz带宽的迈克尔逊干涉仪中使用532 nm连续波(CW)探测激光进行检测。泵浦光束和探测光束使用50X物镜同轴聚焦,衍射极限光斑尺寸为0.48微米。使用零差干涉仪对相位编码的探测光束进行解调。使用k空间波传播方法对检测到的时域信号进行时间反转,以在目标组织中产生PA源的空间分布。使用离体兔淋巴结样本和人牙齿样本的PA图像评估性能。测得的最小峰表面位移灵敏度为0.19 pm。全光学PAI(AOPAI)系统非常适合用于评估视网膜疾病,龋齿病变检测,皮肤烧伤,较少的组织学切片以及压力或摩擦性溃疡。

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