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亚像素分辨率光流控显微镜用于片上细胞成像。

Sub-pixel resolving optofluidic microscope for on-chip cell imaging.

机构信息

Department of Electrical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Lab Chip. 2010 Nov 21;10(22):3125-9. doi: 10.1039/c0lc00213e. Epub 2010 Sep 29.

Abstract

We report the implementation of a fully on-chip, lensless, sub-pixel resolving optofluidic microscope (SROFM). The device utilizes microfluidic flow to deliver specimens directly across a complementary metal oxide semiconductor (CMOS) sensor to generate a sequence of low-resolution (LR) projection images, where resolution is limited by the sensor's pixel size. This image sequence is then processed with a pixel super-resolution algorithm to reconstruct a single high resolution (HR) image, where features beyond the Nyquist rate of the LR images are resolved. We demonstrate the device's capabilities by imaging microspheres, protist Euglena gracilis, and Entamoeba invadens cysts with sub-cellular resolution and establish that our prototype has a resolution limit of 0.75 microns. Furthermore, we also apply the same pixel super-resolution algorithm to reconstruct HR videos in which the dynamic interaction between the fluid and the sample, including the in-plane and out-of-plane rotation of the sample within the flow, can be monitored in high resolution. We believe that the powerful combination of both the pixel super-resolution and optofluidic microscopy techniques within our SROFM is a significant step forwards toward a simple, cost-effective, high throughput and highly compact imaging solution for biomedical and bioscience needs.

摘要

我们报告了一种完全片上、无透镜、亚像素分辨率的光流型显微镜(SROFM)的实现。该设备利用微流控技术将标本直接输送到互补金属氧化物半导体(CMOS)传感器上,生成一系列低分辨率(LR)投影图像,其分辨率受传感器像素尺寸的限制。然后,通过像素超分辨率算法处理该图像序列,重建单个高分辨率(HR)图像,其中可以分辨出 LR 图像奈奎斯特率之外的特征。我们通过对微球、原生动物眼虫和内变形虫包囊进行亚细胞分辨率成像,展示了该设备的功能,并确定了我们的原型的分辨率极限为 0.75 微米。此外,我们还应用相同的像素超分辨率算法来重建 HR 视频,其中可以在高分辨率下监测流体和样品之间的动态相互作用,包括样品在流动中的平面内和平面外旋转。我们相信,SROFM 中像素超分辨率和光流型显微镜技术的强大结合,是朝着满足生物医学和生物科学需求的简单、经济高效、高通量和高度紧凑的成像解决方案迈出的重要一步。

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