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Nonlinear optical characterization of retinal molecules

机译:视网膜分子的非线性光学表征

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The measurements on the nonlinear absorption coefficient for the whole retina and separated molecular components have been determined using open-aperture z-scan. Our recent retinal damage studies have shown that the threshold for retinal damage decreases below one nanosecond. Laserinduced breakdown has been implicated in the threshold-level mechanism for damage. The threshold is reduced below 100 fs, where LIB is the damage mechanism. Our hypothesis for this experiment is that non-linear optical properties of the constituents of the retina will affect the absorption coefficient of the retina for ultrashort pulse laser exposure and lower the retinal damage threshold for these exposures by lowering the laser-induced breakdown threshold in the tissues. This suggests that nonlinear absorption effects should be considered in the analysis of any data that relate energy deposition rates from laser exposures in tissue to thermal or photomechanical damage mechanisms for cell death. We describe the impact of these measurements on retinal damage thresholds and damage mechanisms for various pulse regimes.
机译:使用开口孔径Z扫描确定了整个视网膜和分离分子组分的非线性吸收系数的测量。我们最近的视网膜损伤研究表明,视网膜损伤的阈值降低了一个纳秒以下。激光诱导的分解已经涉及阈值级机制以造成损坏。阈值减少到100 fs以下,其中lib是损坏机制。我们对该实验的假设是视网膜的成分的非线性光学性质将影响超短脉冲激光曝光的视网膜的吸收系数,并通过降低激光诱导的击穿阈值来降低这些曝光的视网膜损伤阈值组织。这表明在分析中应考虑非线性吸收效应,这些数据应在与组织中的激光暴露中与组织中的激光暴露率相关的任何数据,以热量或光学力学损伤机制进行细胞死亡。我们描述了这些测量对各种脉冲制度的视网膜损伤阈值和损坏机制的影响。

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