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Triple-modality imaging of optoacoustic pressure, ultrasonic scattering, and optical diffuse reflectance with improved resolution and speed

机译:具有改善的分辨率和速度的光声压,超声散射和光学漫反射三重模态成像

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The method of cost-effective upgrade from an acoustic resolution photoacoustic microscope to a triple-modality imaging system is presented. The newly-developed experimental setup is based on a diode-pumped laser coupled to a fiber bundle with a spherically focused polyvinylidene fluoride detector integrated into the center of a ring-shaped optical illuminator. Each laser pulse illuminating the sample performs two functions. While the photons absorbed by the sample provide a measurable optoacoustic (OA) signal, the photons absorbed by the detector provide the measurable diffuse reflectance (DR) from the sample and the probing ultrasonic (US) pulse. At a 3 mm imaging depth the axial resolution of the OA/US modalities is 38μm/26μm, while the lateral resolution of the DR/OA/US modalities is 3.5mm/50μm/35μm. At LO conference we will present the imaging capabilities of the developed DR/OA/US system using the results on phantom and in vivo experiments.
机译:提出了从声学分辨率光声显微镜到三重模态成像系统的经济高效的升级方法。新开发的实验装置基于一个二极管泵浦激光器,该激光器耦合到光纤束,并带有集成在环形光学照明器中心的球形聚偏二氟乙烯检测器。照射样品的每个激光脉冲执行两个功能。样品吸收的光子提供可测量的光声(OA)信号,而检测器吸收的光子提供来自样品和探测超声(US)脉冲的可测量漫反射率(DR)。在3 mm的成像深度下,OA / US模式的轴向分辨率为38μm/26μm,而DR / OA / US模式的横向分辨率为3.5mm /50μm/35μm。在LO会议上,我们将使用幻像和体内实验的结果介绍已开发的DR / OA / US系统的成像功能。

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