全息术
光学
放大倍数
像素
图像分辨率
分辨率(逻辑)
显微镜
图像传感器
显微镜
数字全息显微术
数值孔径
点间距
数字全息术
景深
视野
材料科学
物理
计算机科学
人工智能
波长
作者
Waheb Bishara,Ting‐Wei Su,Ahmet F. Coskun,Aydogan Özcan
出处
期刊:Optics Express
[The Optical Society]
日期:2010-05-12
卷期号:18 (11): 11181-11181
被引量:425
摘要
We demonstrate lensfree holographic microscopy on a chip to achieve approximately 0.6 microm spatial resolution corresponding to a numerical aperture of approximately 0.5 over a large field-of-view of approximately 24 mm2. By using partially coherent illumination from a large aperture (approximately 50 microm), we acquire lower resolution lensfree in-line holograms of the objects with unit fringe magnification. For each lensfree hologram, the pixel size at the sensor chip limits the spatial resolution of the reconstructed image. To circumvent this limitation, we implement a sub-pixel shifting based super-resolution algorithm to effectively recover much higher resolution digital holograms of the objects, permitting sub-micron spatial resolution to be achieved across the entire sensor chip active area, which is also equivalent to the imaging field-of-view (24 mm2) due to unit magnification. We demonstrate the success of this pixel super-resolution approach by imaging patterned transparent substrates, blood smear samples, as well as Caenoharbditis Elegans.
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