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Coherent Anti-Stokes Raman Scattering Microscopy of Cellular Lipid Storage

机译:细胞脂质存储的相干抗斯托克斯拉曼散射显微镜

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摘要

With the increasing number of studies using nonlinear microscopy in the biosciences, an awareness for the potentials of nonlinear optics has begun to emerge among a broader audience. Coherent anti-Stokes Raman scattering (CARS) microscopy is one of the most technically challenging methods in this category, forming images of molecular distributions based on their vibrations by a multiphoton interaction process. The primary strength of CARS microscopy lies in the ability of imaging lipids; the full 3-D distribution in living cells can be mapped without exogenous tags. Thus, CARS microscopy has a strong potential to become a central instrument for in vivo studies of the lipid metabolism at cellular level, improving present understanding of the mechanisms behind the many metabolism-related diseases, the impact of natural bioactive components in foods, and supporting the development of efficient pharmaceuticals as well as bioengineering processes exploiting the metabolism of microorganisms for the production of alternative energy sources. We illustrate this wide range of biological applications of CARS microscopy with a series of examples from our research.
机译:随着生物科学领域中使用非线性显微镜的研究数量不断增加,对非线性光学潜能的认识已开始在更广泛的受众中出现。相干抗斯托克斯拉曼散射(CARS)显微镜是该类别中技术上最具挑战性的方法之一,它通过多光子相互作用过程根据其振动形成分子分布图像。 CARS显微镜的主要优势在于对脂质成像的能力。可以绘制活细胞中的完整3-D分布而无需外源标签。因此,CARS显微镜具有很强的潜力,可以成为在细胞水平上进行脂质代谢的体内研究的中心仪器,可以提高对许多与代谢有关的疾病背后的机制,食品中天然生物活性成分的影响以及支持的目前了解。开发有效的药物以及利用微生物代谢产生替代能源的生物工程工艺。我们通过一系列研究实例说明了CARS显微镜在生物学领域的广泛应用。

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