Helmchen Fritjof, Denk Winfried
Abt Zellphysiologie, Max-Planck Institut für medizinische Forschung, Jahnstrasse 29, Heidelberg, Germany.
Curr Opin Neurobiol. 2002 Oct;12(5):593-601. doi: 10.1016/s0959-4388(02)00362-8.
Multiphoton laser-scanning microscopy is still developing rapidly, both technologically and by broadening its range of application. Technical progress has been made in the optimization of fluorophores, in increasing the imaging depth of multiphoton microscopy, and in microscope miniaturization. These advances further facilitate the study of neuronal structure and signaling in living and even in behaving animals, in particular in combination with the expression of fluorescent proteins. In addition, nonlinear optical contrast mechanisms other than multiphoton excitation of fluorescence are being explored.
多光子激光扫描显微镜在技术层面以及通过拓展其应用范围仍在迅速发展。在荧光团优化、增加多光子显微镜的成像深度以及显微镜小型化方面均取得了技术进步。这些进展进一步推动了对活体甚至行为动物中神经元结构和信号传导的研究,特别是与荧光蛋白表达相结合时。此外,除了多光子荧光激发之外,其他非线性光学对比机制也正在被探索。