时间分辨率
薄层荧光显微镜
超短脉冲
显微镜
可视化
生物成像
帧速率
光学切片
荧光寿命成像显微镜
光学成像
数字微镜装置
光谱成像
计算机科学
材料科学
生物系统
光学
心脏成像
生物运动
视野
医学影像学
图像分辨率
生物标本
生物医学工程
活体细胞成像
物理
计算机视觉
动力学(音乐)
采样(信号处理)
迭代重建
分辨率(逻辑)
作者
Ruipeng Guo,Xueli Pan,Qilin Deng,Abrar Ahmed,Qianwan Yang,J. E. Greene,Tongyu Li,Suet Ying Chan,Zhixiong Chen,Guorong Hu,Hui Feng,Lei Tian
标识
DOI:10.1073/pnas.2531386123
摘要
, DEM enables simultaneous visualization of neutrophils and premalignant tumors in freely swimming zebrafish. In immobilized specimens, it provides robust, sensor-level optical sectioning near the heart, suppressing diffuse background to reveal fine vascular networks and active blood circulation into and out of the cardiac chambers. DEM further enables quantitative mapping of blood-flow dynamics in the zebrafish tail, resolving arterial-venous differences and capturing heartbeat-driven oscillations that reflect cardiac pumping with high temporal fidelity. By uniting ultrafast acquisition, dual-channel capability, volumetric coverage, and intrinsic optical sectioning within a single event-driven architecture, DEM offers a powerful platform for visualizing rapid multicellular interactions and physiological dynamics in living systems.
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