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Three-dimensional shear wave imaging based on full-field optical-sectioned laser speckle contrast imaging

机译:基于全场光学切片激光散斑对比度成像的三维剪切波成像

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Shear wave imaging with optical detection system has the potential to achieve high sensitivity and resolution. In our previous report, laser speckle contrast imaging (LSCI) has been implemented to demonstrate non-scanning two-dimensional shear wave imaging, where the shear wave speed estimation errors of less than 4% were achieved on homogeneous phantoms. In this report, the system was further developed to include one-dimensional mechanical scanning and optical sectioning. With this, a feasibility study in three-dimensional shear wave imaging is presented. The lateral (X) and depth (Y) shear wave imaging resolutions of the system were evaluated separately on two heterogeneous agar phantoms. The lateral and depth resolutions achieved are 176 μm and 1.5 mm, respectively. The developed system is potentially suitable for three-dimensional shear wave imaging in low-scattering samples, such as three-dimensional cell cultures, with sub-millimeter resolution.
机译:具有光学检测系统的剪切波成像具有实现高灵敏度和分辨率的潜力。在我们以前的报告中,已实施激光散斑对比度成像(LSCI)来演示非扫描二维剪切波成像,其中在均质体模上实现的剪切波速度估计误差小于4%。在此报告中,该系统得到了进一步开发,以包括一维机械扫描和光学切片。据此,提出了三维切波成像的可行性研究。在两个异质琼脂模型上分别评估了系统的横向(X)和深度(Y)剪切波成像分辨率。达到的横向分辨率和深度分辨率分别为176μm和1.5 mm。该开发的系统可能适用于亚毫米级分辨率的低散射样本(例如三维细胞培养)中的三维剪切波成像。

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