Chung Jaebum, Lu Hangwen, Ou Xiaoze, Zhou Haojiang, Yang Changhuei
Department of Electrical Engineering, California Institute of Technology, Pasadena, California, 91125, USA.
Biomed Opt Express. 2016 Oct 31;7(11):4787-4802. doi: 10.1364/BOE.7.004787. eCollection 2016 Nov 1.
Fourier ptychographic (FP) microscopy is a coherent imaging method that can synthesize an image with a higher bandwidth using multiple low-bandwidth images captured at different spatial frequency regions. The method's demand for multiple images drives the need for a brighter illumination scheme and a high-frame-rate camera for a faster acquisition. We report the use of a guided laser beam as an illumination source for an FP microscope. It uses a mirror array and a 2-dimensional scanning Galvo mirror system to provide a sample with plane-wave illuminations at diverse incidence angles. The use of a laser presents speckles in the image capturing process due to reflections between glass surfaces in the system. They appear as slowly varying background fluctuations in the final reconstructed image. We are able to mitigate these artifacts by including a phase image obtained by differential phase contrast (DPC) deconvolution in the FP algorithm. We use a 1-Watt laser configured to provide a collimated beam with 150 mW of power and beam diameter of 1 cm to allow for the total capturing time of 0.96 seconds for 96 raw FPM input images in our system, with the camera sensor's frame rate being the bottleneck for speed. We demonstrate a factor of 4 resolution improvement using a 0.1 NA objective lens over the full camera field-of-view of 2.7 mm by 1.5 mm.
傅里叶叠层显微镜(FP)是一种相干成像方法,它可以利用在不同空间频率区域捕获的多个低带宽图像合成具有更高带宽的图像。该方法对多个图像的需求推动了对更亮照明方案和高帧率相机以实现更快采集的需求。我们报告了将引导激光束用作FP显微镜的照明源。它使用反射镜阵列和二维扫描振镜系统为样品提供不同入射角的平面波照明。由于系统中玻璃表面之间的反射,在图像捕获过程中使用激光会出现散斑。它们在最终重建图像中表现为缓慢变化的背景波动。我们能够通过在FP算法中纳入通过微分相衬(DPC)去卷积获得的相位图像来减轻这些伪影。我们使用一台配置为提供功率为150 mW、光束直径为1 cm的准直光束的1瓦激光器,以使我们系统中96幅原始FPM输入图像的总捕获时间为0.96秒,相机传感器的帧率是速度的瓶颈。我们展示了在2.7毫米×1.5毫米的整个相机视场中,使用0.1 NA物镜分辨率提高了4倍。