Aakhte Mostafa, Abbasian Vahid, Akhlaghi Ehsan Ahadi, Moradi Ali-Reza, Anand Arun, Javidi Bahram
Appl Opt. 2017 Mar 20;56(9):D8-D13. doi: 10.1364/AO.56.0000D8.
In this paper, we use a glass microsphere incorporated into a digital holographic microscope to increase the effective resolution of the system, aiming at precise cell identification. A Mirau interferometric objective is employed in the experiments, which can be used for a common-path digital holographic microscopy (DHMicroscopy) arrangement. High-magnification Mirau objectives are expensive and suffer from low working distances, yet the commonly used low-magnification Mirau objectives do not have high lateral resolutions. We show that by placing a glass microsphere within the working distance of a low-magnification Mirau objective, its effective numerical aperture can be increased, leading to super-resolved three-dimensional images. The improvement in the lateral resolution depends on the size and vertical position of microsphere, and by varying these parameters, the lateral resolution and magnification may be adjusted. We used the information from the super-resolution DHMicroscopy to identify thalassemia minor red blood cells (tRBCs). Identification is done by comparing the volumetric measurements with those of healthy RBCs. Our results show that microsphere-assisted super-resolved Mirau DHMicroscopy, being common path and off-axis in nature, has the potential to serve as a benchtop device for cell identification and biomedical measurements.
在本文中,我们将玻璃微球集成到数字全息显微镜中,以提高系统的有效分辨率,旨在实现精确的细胞识别。实验中采用了Mirau干涉物镜,其可用于共光路数字全息显微镜(DH显微镜)配置。高倍Mirau物镜价格昂贵且工作距离短,而常用的低倍Mirau物镜横向分辨率不高。我们表明,通过在低倍Mirau物镜的工作距离内放置一个玻璃微球,可以提高其有效数值孔径,从而获得超分辨三维图像。横向分辨率的提高取决于微球的大小和垂直位置,通过改变这些参数,可以调整横向分辨率和放大倍数。我们利用超分辨DH显微镜的信息来识别轻型地中海贫血红细胞(tRBCs)。通过将体积测量结果与健康红细胞的测量结果进行比较来进行识别。我们的结果表明,微球辅助的超分辨Mirau DH显微镜本质上是共光路且离轴的,有潜力作为一种台式设备用于细胞识别和生物医学测量。