微透镜
计算机科学
光学
投影(关系代数)
迭代重建
计算机视觉
可视化
视野
人工智能
显微镜
像素
显微镜
图像分辨率
计算
计算复杂性理论
分辨率(逻辑)
作者
Feng Tian,Junjie Hu,Weijian Yang
标识
DOI:10.1002/lpor.202100072
摘要
Recent development of lensless imagers has enabled three-dimensional (3D) imaging through a thin piece of optics in close proximity to a camera sensor. A general challenge of wide-field lensless imaging is the high computational complexity and slow speed to reconstruct 3D objects through iterative optimization process. Here, we demonstrated GEOMScope, a lensless 3D microscope that forms image through a single layer of microlens array and reconstructs objects through a geometrical-optics-based pixel back projection algorithm and background suppressions. Compared to others, our method allows local reconstruction, which significantly reduces the required computation resource and increases the reconstruction speed by orders of magnitude. This enables near real-time object reconstructions across a large volume of 23x23x5 mm^3, with a lateral resolution of 40 um and axial resolution of 300 um. Our system opens new avenues for broad biomedical applications such as endoscopy, which requires both miniaturized device footprint and real-time high resolution visualization.
科研通智能强力驱动
Strongly Powered by AbleSci AI