Müller Michiel, Zumbusch Andreas
Swammerdam Institute for Life Sciences, University of Amsterdam, P.O. Box 94062, 1090 GB Amsterdam, The Netherlands.
Chemphyschem. 2007 Oct 22;8(15):2156-70. doi: 10.1002/cphc.200700202.
Coherent anti-Stokes Raman scattering (CARS) microscopy is presented as a new nonlinear optical technique. The combination of vibrational spectroscopy and microscopy allows highly sensitive investigations of unlabelled samples. CARS is an ideal tool for studying a broad variety of samples. The main drawback of the technique is its non-zero-background nature, which implies that the signal has to be detected against a nonresonant background. The need to solve this problem is reflected in the rapid technological developments that have been observed during the last decade. Recent results show that CARS microscopy has the potential to become an important complementary technique that can be used with other well-established microscopic methods. Although it has some limitations, it offers unique access to many problems that cannot be tackled with conventional techniques. For this reason, it can be expected that the impressive growth of the field will continue.
相干反斯托克斯拉曼散射(CARS)显微镜作为一种新型非线性光学技术被提出。振动光谱学与显微镜技术的结合使得对未标记样品进行高灵敏度研究成为可能。CARS是研究多种样品的理想工具。该技术的主要缺点是其具有非零背景特性,这意味着信号必须在非共振背景下进行检测。解决这一问题的需求反映在过去十年中所观察到的快速技术发展上。最近的结果表明,CARS显微镜有潜力成为一种重要的补充技术,可与其他成熟的显微方法一起使用。尽管它有一些局限性,但它为许多传统技术无法解决的问题提供了独特的研究途径。因此,可以预期该领域令人瞩目的发展将持续下去。