Tomar Alankrit, Engelmann Shaun A, Woods Aaron L, Dunn Andrew K
Department of Eletrical and Computer Engineering, The University of Texas at Austin, 2501 Speedway, Austin, TX 78712, USA.
Department of Biomedical Engineering, The University of Texas at Austin, 107 W. Dean Keeton, Austin, TX 78712, USA.
Biomed Opt Express. 2024 Aug 6;15(9):5053-5066. doi: 10.1364/BOE.520977. eCollection 2024 Sep 1.
We present a novel approach for deep vascular imaging in rodent cortex at excitation wavelengths susceptible to water absorption using two-photon microscopy with photons of dissimilar wavelengths. We demonstrate that non-degenerate two-photon excitation (ND-2PE) enables imaging in the water absorption window from 1400-1550 nm using two excitation sources with temporally overlapped pulses at 1300 nm and 1600 nm that straddle the absorption window. We explore the brightness spectra of indocyanine green (ICG) and assess its suitability for imaging in the water absorption window. Further, we demonstrate imaging of the rodent cortex vascular structure up to 1.2 mm using ND-2PE. Lastly, a comparative analysis of ND-2PE at 1435 nm and single-wavelength, two-photon imaging at 1300 nm and 1435 nm is presented. Our work extends the excitation range for fluorescent dyes to include water absorption regimes and underscores the feasibility of deep two-photon imaging at these wavelengths.
我们提出了一种新颖的方法,用于在啮齿动物皮层中进行深度血管成像。该方法利用双光子显微镜,使用不同波长的光子,在易受水吸收影响的激发波长下进行成像。我们证明,非简并双光子激发(ND-2PE)能够在1400 - 1550 nm的水吸收窗口内进行成像,通过两个激发源产生时间上重叠的脉冲,分别为1300 nm和1600 nm,这两个波长跨越了吸收窗口。我们探索了吲哚菁绿(ICG)的亮度光谱,并评估了其在水吸收窗口内成像的适用性。此外,我们展示了使用ND-2PE对高达1.2 mm的啮齿动物皮层血管结构进行成像。最后,对1435 nm处的ND-2PE与1300 nm和1435 nm处的单波长双光子成像进行了对比分析。我们的工作扩展了荧光染料的激发范围,使其包括水吸收区域,并强调了在这些波长下进行深度双光子成像的可行性。