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Characterization of gradient-index lens-fiber spacing toward applications in two-photon fluorescence endoscopy

机译:梯度折射率透镜纤维间距的表征及其在双光子荧光内窥镜中的应用

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摘要

We report on the experimental investigation into the characterization of two-photon fluorescence microscopy based on the separation distance of a single-mode optical fiber coupler and a gradient-index (GRIN) rod lens. The collected two-photon fluorescence signal exhibits a maximum intensity at a defined separation distance (gap length) where the increasing effective excitation numerical aperture is balanced by the decreasing confocal emission collection. A maximum signal is found at gap lengths of approximately 2, 1.25, and 1.75 mm for GRIN lenses with pitches of 0.23, 0.25, and 0.29 wavelength at 830 nm. The maximum two-photon fluorescence signal collected corresponds to a threefold reduction of axial resolution (38.5 (mu)m at 1.25 mm), compared with the maximum resolution (11.6 (mu)m at 5.5 mm), as shown by the three-dimensional imaging of 10 (mu)m beads. These results demonstrate an intrinsic trade-off between signal collection and axial resolution.
机译:我们报告基于单模光纤耦合器和梯度折射率(GRIN)棒状透镜的分离距离的双光子荧光显微镜表征的实验研究。所收集的双光子荧光信号在定义的分离距离(间隙长度)处显示最大强度,其中增加的有效激发数值孔径通过减少的共聚焦发射收集来平衡。对于在830 nm处节距为0.23、0.25和0.29的GRIN透镜,在间隙长度约为2、1.25和1.75 mm处发现了最大信号。如三维图所示,与最大分辨率(5.5 mm时为11.6μm)相比,收集到的最大双光子荧光信号对应于轴向分辨率(1.25 mm时为38.5μm)降低了三倍。 10μm珠的成像。这些结果证明了信号收集和轴向分辨率之间的内在平衡。

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