Mirsky Simcha K, Barnea Itay, Shaked Natan T
Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel.
ACS Photonics. 2022 Apr 20;9(4):1295-1303. doi: 10.1021/acsphotonics.1c01804. Epub 2022 Apr 8.
Three-dimensional (3D) optical imaging of rapidly moving biological cells is difficult to achieve as such samples cannot be scanned over time. Here, we present a dynamic scan-free optical tomography approach for stain-free 3D imaging of biological cells using our new double six-pack tomography technique, whereby 12 off-axis holograms are captured in a single camera exposure without sacrificing resolution or field of view. The proposed system illuminates the sample from 12 angles simultaneously, and 3D refractive index (RI) tomograms are reconstructed from each recorded video frame of the dynamic sample. The technique is verified experimentally by recording flowing silica beads, 3 μm in diameter, with the resulting tomogram RI accuracy being 98.5%. A live swimming sperm cell is also imaged, and dynamic 3D imaging results for both beads and sperm cell are presented. The proposed technique represents a 12-fold increase in dynamic holographic data for tomography.
对快速移动的生物细胞进行三维(3D)光学成像具有挑战性,因为此类样本无法随时间进行扫描。在此,我们展示了一种动态免扫描光学断层扫描方法,用于使用我们新的双六组断层扫描技术对生物细胞进行无标记3D成像,通过该技术可在单次相机曝光中捕获12个离轴全息图,而不会牺牲分辨率或视野。所提出的系统同时从12个角度照射样本,并从动态样本的每个记录视频帧重建3D折射率(RI)断层图像。通过记录直径为3μm的流动二氧化硅珠对该技术进行了实验验证,所得断层图像的RI精度为98.5%。还对活的游动精子细胞进行了成像,并展示了珠子和精子细胞的动态3D成像结果。所提出的技术使断层扫描的动态全息数据增加了12倍。