化学成像
材料科学
全息术
红外线的
显微镜
显微镜
强度(物理)
衍射
断层摄影术
光学
高光谱成像
计算机科学
物理
人工智能
作者
Jian Zhao,Alex Matlock,Hongbo Zhu,Ziqi Song,Jiabei Zhu,Biao Wang,Fukai Chen,Yuewei Zhan,Zhicong Chen,Yihong Xu,Xingchen Lin,Lei Tian,Ji‐Xin Cheng
标识
DOI:10.1038/s41467-022-35329-8
摘要
Recovering molecular information remains a grand challenge in the widely used holographic and computational imaging technologies. To address this challenge, we developed a computational mid-infrared photothermal microscope, termed Bond-selective Intensity Diffraction Tomography (BS-IDT). Based on a low-cost brightfield microscope with an add-on pulsed light source, BS-IDT recovers both infrared spectra and bond-selective 3D refractive index maps from intensity-only measurements. High-fidelity infrared fingerprint spectra extraction is validated. Volumetric chemical imaging of biological cells is demonstrated at a speed of ~20 s per volume, with a lateral and axial resolution of ~350 nm and ~1.1 µm, respectively. BS-IDT's application potential is investigated by chemically quantifying lipids stored in cancer cells and volumetric chemical imaging on Caenorhabditis elegans with a large field of view (~100 µm x 100 µm).
科研通智能强力驱动
Strongly Powered by AbleSci AI