Department of Bioengineering, University of California, Los Angeles, CA 90095.
Electrical and Computer Engineering Department, University of California, Los Angeles, CA 90095.
Proc Natl Acad Sci U S A. 2024 Oct;121(40):e2402556121. doi: 10.1073/pnas.2402556121. Epub 2024 Sep 25.
Fluorescence lifetime imaging microscopy (FLIM) is a powerful imaging technique that enables the visualization of biological samples at the molecular level by measuring the fluorescence decay rate of fluorescent probes. This provides critical information about molecular interactions, environmental changes, and localization within biological systems. However, creating high-resolution lifetime maps using conventional FLIM systems can be challenging, as it often requires extensive scanning that can significantly lengthen acquisition times. This issue is further compounded in three-dimensional (3D) imaging because it demands additional scanning along the depth axis. To tackle this challenge, we developed a computational imaging technique called light-field tomographic FLIM (LIFT-FLIM). Our approach allows for the acquisition of volumetric fluorescence lifetime images in a highly data-efficient manner, significantly reducing the number of scanning steps required compared to conventional point-scanning or line-scanning FLIM imagers. Moreover, LIFT-FLIM enables the measurement of high-dimensional data using low-dimensional detectors, which are typically low cost and feature a higher temporal bandwidth. We demonstrated LIFT-FLIM using a linear single-photon avalanche diode array on various biological systems, showcasing unparalleled single-photon detection sensitivity. Additionally, we expanded the functionality of our method to spectral FLIM and demonstrated its application in high-content multiplexed imaging of lung organoids. LIFT-FLIM has the potential to open up broad avenues in both basic and translational biomedical research.
荧光寿命成像显微镜(FLIM)是一种强大的成像技术,通过测量荧光探针的荧光衰减率,能够在分子水平上可视化生物样本。这提供了关于分子相互作用、环境变化和生物系统内定位的关键信息。然而,使用传统的 FLIM 系统创建高分辨率寿命图可能具有挑战性,因为它通常需要广泛的扫描,这会显著延长采集时间。在三维(3D)成像中,这个问题更加复杂,因为它需要沿深度轴进行额外的扫描。为了解决这个挑战,我们开发了一种称为光场层析荧光寿命成像(LIFT-FLIM)的计算成像技术。我们的方法允许以高效的数据方式获取体积荧光寿命图像,与传统的点扫描或线扫描 FLIM 成像仪相比,大大减少了所需的扫描步骤数量。此外,LIFT-FLIM 允许使用低维探测器测量高维数据,这些探测器通常成本低,且具有更高的时间带宽。我们在各种生物系统上使用线性单光子雪崩二极管阵列展示了 LIFT-FLIM,展示了无与伦比的单光子检测灵敏度。此外,我们扩展了我们的方法的功能,使其适用于光谱 FLIM,并展示了其在肺类器官的高内涵多路复用成像中的应用。LIFT-FLIM 有可能在基础和转化生物医学研究中开辟广泛的途径。