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多模态宽场双光子激发成像:体内应用技术的表征

Multimodal wide-field two-photon excitation imaging: characterization of the technique for in vivo applications.

作者信息

Hwang Jae Youn, Wachsmann-Hogiu Sebastian, Ramanujan V Krishnan, Nowatzyk Andreas G, Koronyo Yosef, Medina-Kauwe Lali K, Gross Zeev, Gray Harry B, Farkas Daniel L

出版信息

Biomed Opt Express. 2011 Jan 13;2(2):356-64. doi: 10.1364/BOE.2.000356.

Abstract

We report fast, non-scanning, wide-field two-photon fluorescence excitation with spectral and lifetime detection for in vivo biomedical applications. We determined the optical characteristics of the technique, developed a Gaussian flat-field correction method to reduce artifacts resulting from non-uniform excitation such that contrast is enhanced, and showed that it can be used for ex vivo and in vivo cellular-level imaging. Two applications were demonstrated: (i) ex vivo measurements of beta-amyloid plaques in retinas of transgenic mice, and (ii) in vivo imaging of sulfonated gallium(III) corroles injected into tumors. We demonstrate that wide-field two photon fluorescence excitation with flat-field correction provides more penetration depth as well as better contrast and axial resolution than the corresponding one-photon wide field excitation for the same dye. Importantly, when this technique is used together with spectral and fluorescence lifetime detection modules, it offers improved discrimination between fluorescence from molecules of interest and autofluorescence, with higher sensitivity and specificity for in vivo applications.

摘要

我们报告了一种用于体内生物医学应用的快速、非扫描、宽场双光子荧光激发技术,并结合了光谱和寿命检测。我们确定了该技术的光学特性,开发了一种高斯平场校正方法以减少由非均匀激发导致的伪影,从而增强对比度,并表明它可用于离体和体内细胞水平成像。展示了两个应用实例:(i)对转基因小鼠视网膜中β-淀粉样蛋白斑的离体测量,以及(ii)对注入肿瘤的磺化镓(III)卟啉进行体内成像。我们证明,与相同染料的相应单光子宽场激发相比,经平场校正的宽场双光子荧光激发具有更大的穿透深度以及更好的对比度和轴向分辨率。重要的是,当该技术与光谱和荧光寿命检测模块一起使用时,它能更好地区分感兴趣分子的荧光和自发荧光,在体内应用中具有更高的灵敏度和特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8657/3038450/113542913794/boe-2-2-356-g001.jpg

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