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Assessment of a liquid lens enabled in vivo optical coherence microscope

机译:评估液体透镜,实现体内光学相干显微镜

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The optical aberrations induced by imaging through skin can be predicted using formulas for Seidel aberrations of a plane-parallel plate. Knowledge of these aberrations helps to guide the choice of numerical aperture (NA) of the optics we can use in an implementation of Gabor domain optical coherence microscopy (GD-OCM), where the focus is the only aberration adjustment made through depth. On this basis, a custom-designed, liquid-lens enabled dynamic focusing optical coherence microscope operating at 0.2 NA is analyzed and validated experimentally. As part of the analysis, we show that the full width at half-maximum metric, as a characteristic descriptor for the point spread function, while commonly used, is not a useful metric for quantifying resolution in non-diffraction-limited systems. Modulation transfer function (MTF) measurements quantify that the liquid lens performance is as predicted by design, even when accounting for the effect of gravity. MTF measurements in a skinlike scattering medium also quantify the performance of the microscope in its potential applications. To guide the fusion of images across the various focus positions of the microscope, as required in GD-OCM, we present depth of focus measurements that can be used to determine the effective number of focusing zones required for a given goal resolution. Subcellular resolution in an onion sample, and high-definition in vivo imaging in human skin are demonstrated with the custom-designed and built microscope.
机译:可以通过使用用于平面平行板的赛德尔像差的公式来预测通过皮肤成像引起的光学像差。对这些像差的了解有助于指导我们在Gabor域光学相干显微镜(GD-OCM)的实现中可以使用的光学数值孔径(NA)的选择,在该方法中,焦点是唯一通过深度进行的像差调整。在此基础上,分析并通过实验验证了在0.2 NA下运行的定制设计的启用液体透镜的动态聚焦光学相干显微镜。作为分析的一部分,我们显示半点最大宽度的度量标准(通常用作点扩展函数的特征描述符)对于量化非衍射极限系统中的分辨率并不是一种有用的度量标准。调制传递函数(MTF)测量可量化液镜性能与设计预期相同,即使考虑重力影响也是如此。皮肤状散射介质中的MTF测量还可以量化显微镜在其潜在应用中的性能。为了按照GD-OCM的要求在显微镜的各个焦点位置上融合图像,我们介绍了焦点深度测量,可用于确定给定目标分辨率所需的有效聚焦区域数。通过定制设计和制造的显微镜,可以证明洋葱样品中的亚细胞分辨率以及人体皮肤中的高清体内成像。

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