Liu Xianglei, Skripka Artiom, Lai Yingming, Jiang Cheng, Liu Jingdan, Vetrone Fiorenzo, Liang Jinyang
Centre Énergie Matériaux Télécommunications, Institut National de la Recherche Scientifique, 1650 boulevard Lionel-Boulet, Varennes, Québec, J3X1S2, Canada.
Nanomaterials for Bioimaging Group, Departamento de Física de Materiales, Facultad de Ciencias, Universidad Autónoma de Madrid, Madrid, 28049, Spain and The Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
Nat Commun. 2021 Nov 4;12(1):6401. doi: 10.1038/s41467-021-26701-1.
Photoluminescence lifetime imaging of upconverting nanoparticles is increasingly featured in recent progress in optical thermometry. Despite remarkable advances in photoluminescent temperature indicators, existing optical instruments lack the ability of wide-field photoluminescence lifetime imaging in real time, thus falling short in dynamic temperature mapping. Here, we report video-rate upconversion temperature sensing in wide field using single-shot photoluminescence lifetime imaging thermometry (SPLIT). Developed from a compressed-sensing ultrahigh-speed imaging paradigm, SPLIT first records wide-field luminescence intensity decay compressively in two views in a single exposure. Then, an algorithm, built upon the plug-and-play alternating direction method of multipliers, is used to reconstruct the video, from which the extracted lifetime distribution is converted to a temperature map. Using the core/shell NaGdF:Er,Yb/NaGdF upconverting nanoparticles as the lifetime-based temperature indicators, we apply SPLIT in longitudinal wide-field temperature monitoring beneath a thin scattering medium. SPLIT also enables video-rate temperature mapping of a moving biological sample at single-cell resolution.
上转换纳米粒子的光致发光寿命成像在光学测温的最新进展中越来越受到关注。尽管光致发光温度指示器取得了显著进展,但现有的光学仪器缺乏实时进行宽场光致发光寿命成像的能力,因此在动态温度映射方面存在不足。在此,我们报告了使用单次光致发光寿命成像测温法(SPLIT)在宽场中进行视频速率上转换温度传感。SPLIT是从压缩感知超高速成像范式发展而来的,它首先在单次曝光中通过两个视角压缩记录宽场发光强度衰减。然后,基于即插即用交替方向乘子法构建的算法用于重建视频,从中提取的寿命分布被转换为温度图。使用核壳结构的NaGdF:Er,Yb/NaGdF上转换纳米粒子作为基于寿命的温度指示器,我们将SPLIT应用于薄散射介质下的纵向宽场温度监测。SPLIT还能够以单细胞分辨率对移动的生物样本进行视频速率温度映射。