论文标题
使用二维光谱映射和双光检查频谱的频率映射和频率多路复用
Scan-less full-field fluorescence-lifetime dual-comb microscopy using two-dimensional spectral mapping and frequency multiplexing of dual-optical-comb beats
论文作者
论文摘要
荧光寿命成像显微镜(FLIM)是定量荧光成像的强大工具,因为荧光寿命与荧光分子的浓度无关或激发/检测效率,并且可以稳健地进行光泽。但是,由于FLIM基于点对点测量值,因此需要对焦点进行机械扫描以形成图像,从而阻碍快速成像。在本文中,我们基于二维(2D)图像像素和频率 - 磁性RF信号之间的一对一对应关系演示了无扫描的全场FLIM。在射频区域中的2D光谱映射和高密度频率多路复用,有效地采用了双光学频率梳之间的大量双光击拍。荧光振幅和寿命的双峰图像是从荧光RF梳子模式的振幅和相光谱中获得的,而无需机械扫描。所提出的方法将有助于生命科学中的快速定量荧光成像。
Fluorescence lifetime imaging microscopy (FLIM) is a powerful tool for quantitative fluorescence imaging because fluorescence lifetime is independent of concentration of fluorescent molecules or excitation/detection efficiency and is robust to photobleaching. However, since FLIM is based on point-to-point measurements, mechanical scanning of a focal spot is needed for forming an image, which hampers rapid imaging. In this article, we demonstrate scan-less full-field FLIM based on a one-to-one correspondence between two-dimensional (2D) image pixels and frequency-multiplexed RF signals. A vast number of dual-optical-comb beats between dual optical frequency combs is effectively adopted for 2D spectral mapping and high-density frequency multiplexing in radio-frequency region. Bimodal images of fluorescence amplitude and lifetime are obtained with high quantitativeness from amplitude and phase spectra of fluorescence RF comb modes without the need for mechanical scanning. The proposed method will be useful for rapid quantitative fluorescence imaging in life science.