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Characterizing the beam steering and distortion of Gaussian and Bessel beams focused in tissues with microscopic heterogeneities

机译:用微观异质性表征聚焦在组织中的高斯光束和贝塞尔光束的光束转向和畸变

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Bessel beams have recently been investigated as a means of improving deep-tissue microscopy in highly scattering and heterogeneous media. It has been suggested that the long depth-of-field and self-reconstructing property of a Bessel beam enables an increased penetration depth of the focused beam in tissues compared to a conventional Gaussian beam. However, a study is needed to better quantify the magnitude of the beam steering as well as the distortion of focused Gaussian and Bessel beams in tissues with microscopic heterogeneities. Here, we have developed an imaging method and quantitative metrics to evaluate the motion and distortion of low-numerical-aperture (NA) Gaussian and Bessel beams focused in water, heterogeneous phantoms, and fresh mouse esophagus tissues. Our results indicate that low-NA Bessel beams exhibit reduced beam-steering artifacts and distortions compared to Gaussian beams, and are therefore potentially useful for microscopy applications in which pointing accuracy and beam quality are critical, such as dual-axis confocal (DAC) microscopy.
机译:最近,对贝塞尔光束进行了研究,以作为在高度散射和异质介质中改善深部组织显微镜的一种手段。已经提出,与传统的高斯光束相比,贝塞尔光束的长景深和自重构特性使得聚焦光束在组织中的穿透深度增加。但是,需要进行研究以更好地量化具有微观异质性的组织中光束转向的幅度以及聚焦高斯光束和贝塞尔光束的畸变。在这里,我们已经开发出一种成像方法和定量指标来评估聚焦在水,异质体模和新鲜小鼠食道组织中的低数值孔径(NA)高斯和贝塞尔光束的运动和畸变。我们的结果表明,与高斯光束相比,低NA贝塞尔光束表现出更少的光束转向伪像和畸变,因此对于指向精度和光束质量至关重要的显微镜应用(例如双轴共聚焦(DAC)显微镜)可能具有实用性。

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