首页> 外文期刊>Journal of Neuroscience Methods >Efficient large core fiber-based detection for multi-channel two-photon fluorescence microscopy and spectral unmixing.
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Efficient large core fiber-based detection for multi-channel two-photon fluorescence microscopy and spectral unmixing.

机译:高效的基于大芯纤维的多通道双光子荧光显微镜和光谱分解检测。

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Low-magnification high-numerical aperture objectives maximize the collection efficiency for scattered two-photon excited fluorescence (2PEF), but non-descanned detection schemes for such objectives demand optical components much bigger than standard microscope optics. Fiber coupling offers the possibility of removing bulky multi-channel detectors from the collection site, but coupling and transmission losses are generally believed to outweigh the benefits of optical fibers. We present here two new developments based on large-core fiber-optic fluorescence detection that illustrate clear advantages over conventional air-coupled 2PEF detection schemes. First, with minimal modifications of a commercial microscope, we efficiently couple the output of a 20x/NA0.95 objective to a large-core liquid light guide and we obtain a 7-fold collection gain when imaging astrocytes at 100 mum depth in acute brain slices of adult ALDH1L1-GFP mice. Second, combining 2PEF microscopy and 4-color detection on a custom microscope, mode scrambling inside a 2-mm plastic optical fiber is shown to cancel out the spatially non-uniform spectral sensitivity observed with air-coupled detectors. Spectral unmixing of images of brainbow mice taken with a fiber-coupled detector revealed a uniform color distribution of hippocampal neurons across a large field of view. Thus, fiber coupling improves both the efficiency and the homogeneity of 2PEF collection.
机译:低放大倍率的高数值孔径物镜使散射的双光子激发荧光(2PEF)的收集效率最大化,但是针对此类物镜的非去扫描检测方案需要比标准显微镜光学器件大得多的光学组件。光纤耦合提供了从收集地点移除笨重的多通道检测器的可能性,但是通常认为耦合和传输损耗超过了光纤的优势。在这里,我们介绍了基于大芯光纤荧光检测的两个新开发成果,这些开发成果展示了与传统的空气耦合2PEF检测方案相比明显的优势。首先,通过对商用显微镜的最小改动,我们将20x / NA0.95物镜的输出有效耦合到大芯液体光导,当在急性脑中对100 mm深度的星形胶质细胞成像时,我们可以获得7倍的采集增益的成年ALDH1L1-GFP小鼠切片。其次,结合了2PEF显微镜和定制显微镜上的4色检测,显示了在2毫米塑料光纤内进行模式加扰,以抵消通过空气耦合检测器观察到的空间不均匀光谱灵敏度。用光纤耦合检测器拍摄的脑弓小鼠图像的光谱解混显示,在大视野中海马神经元的颜色分布均匀。因此,纤维耦合提高了2PEF收集的效率和均匀性。

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