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Pump-probe spectroscopy and imaging of heme proteins: temperature effects and data analysis

机译:泵浦探针光谱法和血红素蛋白成像:温度效应和数据分析

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Ultrafast pump-probe microscopy enables visualization of non-fluorescent materials in biological tissue, such as melanin and hemoglobin. Whereas transient absorption has been primarily a physical chemistry technique, used to gain insight into molecular and electronic structure, pump-probe microscopy represents a paradigm shift in translating transient absorption into an analytical technique, which can clearly resolve pigments with nearly indistinguishable linear absorption spectra. Extending this technique to other important targets, such as mitochondrial respiratory chain hemes, will require new laser sources and new data processing techniques to estimate heme content from the pump-probe response. We will present recent developments on both of these fronts. The laser system we have developed to elicit a pump probe response of respiratory chain hemes is based on an amplified Yb:fiber ultrafast laser that uses modest spectral broadening followed by sum frequency generation to produce a tunable pulse pair in the visible region. Wavelength tuning is accomplished by changing quasi-phase matching conditions. We will present preliminary imaging data in addition to discussing management of sample heating problems that arise from performing transient absorption measurements at the high repetition rates needed for imaging microscopy. In the second part of the talk, we will present the use of regularized and non-negative least squares fitting, along with feature-preserving noise removal to estimate composition of a pixel from its pump-probe response.
机译:超快的泵浦探针显微镜可以使生物组织中的非荧光物质(例如黑色素和血红蛋白)可视化。瞬态吸收主要是一种物理化学技术,用于深入了解分子和电子结构,而泵浦探针显微镜则代表了将瞬态吸收转化为分析技术的范式转变,该技术可以清晰地分辨几乎没有区别的线性吸收光谱的颜料。将此技术扩展到其他重要目标(如线粒体呼吸链血红素),将需要新的激光源和新的数据处理技术,以根据泵浦探针响应估算血红素含量。我们将介绍这两个方面的最新发展。我们开发的用于引起呼吸链血红素的泵浦探针响应的激光系统基于放大的Yb:纤维超快激光器,该激光器使用适度的光谱展宽,然后产生总和频率,以在可见光区域产生可调脉冲对。通过改变准相位匹配条件来完成波长调谐。除了讨论样品热问题的管理外,我们还将提供初步的成像数据,这些问题是由于以成像显微镜所需的高重复率执行瞬态吸收测量而引起的。在演讲的第二部分中,我们将介绍使用正则化和非负最小二乘拟合,以及保留特征的噪声去除,以根据其泵浦探测响应来估计像素的成分。

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