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Simultaneous triple-modality imaging of diffuse reflectance, optoacoustic pressure and ultrasonic scattering using an acoustic-resolution photoacoustic microscope: feasibility study

机译:使用声分辨光声显微镜同时进行漫反射,光声压力和超声散射的三模态成像:可行性研究

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The letter discusses the opportunity for cost-effective use of conventional optoacoustic hardware to realize additional imaging modalities such as ultrasonic microscopy and diffuse optical reflectometry within the same laser pulse. Optoacoustic methods for deep biomedical visualization are based on pulsed laser illumination of the internal tissue layers with scattered photons, however some of the back-scattered photons can be absorbed by the optoacoustic detector. Thermoelastic extension of the detector's surface provides a probing pulse for an ultrasonic modality while the measurement of the amplitude of the probing ultrasonic pulse allows estimation of the diffuse reflectance from the object under investigation.
机译:这封信讨论了以经济有效的方式使用常规光声硬件以在同一激光脉冲内实现其他成像方式(例如超声显微镜和漫射光反射法)的机会。进行深层生物医学可视化的光声方法基于具有散射光子的内部组织层的脉冲激光照射,但是某些反向散射的光子可以被光声检测器吸收。检测器表面的热弹性延伸为超声模态提供了探测脉冲,而探测超声脉冲幅度的测量则允许估计来自被调查物体的漫反射率。

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