Opt Express. 2022 Aug 15;30(17):30991-31001. doi: 10.1364/OE.459708.
We present a laser-speckle imaging technique, termed Echo speckle imaging (ESI), that quantifies the local dynamics in biological tissue and soft materials with a noise level around or below 10% of the measured signal without affecting the spatial resolution. We achieve this through an unconventional speckle beam illumination that creates changing, statistically independent illumination conditions and substantially increases the measurement accuracy. Control experiments for dynamically homogeneous and heterogeneous soft materials and tissue phantoms illustrate the performance of the method. We show that this approach enables us to precision-monitor purely dynamic heterogeneities in turbid soft media with a lateral resolution of 100 µm and better.
我们提出了一种激光散斑成像技术,称为回波散斑成像(ESI),它可以在不影响空间分辨率的情况下,以低于或等于测量信号的 10%的噪声水平量化生物组织和软物质的局部动力学。我们通过一种非常规的散斑光束照明来实现这一点,这种照明方式创造了不断变化的、统计上独立的照明条件,从而大大提高了测量精度。针对动态均匀和非均匀软材料和组织模型的对照实验说明了该方法的性能。我们表明,这种方法使我们能够以优于 100 µm 的横向分辨率精确监测混浊软介质中的纯动态非均质性。