Oron Dan, Silberberg Yaron
Cold Spring Harb Protoc. 2015 Feb 2;2015(2):145-51. doi: 10.1101/pdb.top085928.
Axial localization of multiphoton excitation to a single plane is achieved by temporal focusing of an ultrafast pulsed excitation. We take advantage of geometrical dispersion in an extremely simple experimental setup, where an ultrashort pulse is temporally stretched and hence its peak intensity is lowered outside the focal plane of the microscope. Using this strategy, out-of-focus multiphoton excitation is dramatically reduced, and the achieved axial resolution is comparable to line-scanning multiphoton microscopy for wide-field excitation and to point-scanning multiphoton microscopy for line excitation. In this introduction, we provide a detailed description of the considerations in choosing the experimental parameters, as well as the alignment of a temporal focusing add-on to a multiphoton microscope. We also review current advances and applications for this technique.
通过超快脉冲激发的时间聚焦,可实现多光子激发在单个平面上的轴向定位。我们在一个极其简单的实验装置中利用几何色散,在该装置中,超短脉冲在时间上被展宽,因此其峰值强度在显微镜焦平面之外降低。使用这种策略,离焦多光子激发被显著降低,并且所实现的轴向分辨率与用于宽场激发的线扫描多光子显微镜以及用于线激发的点扫描多光子显微镜相当。在本引言中,我们详细描述了选择实验参数时的注意事项,以及将时间聚焦附加装置与多光子显微镜对准的方法。我们还综述了该技术的当前进展和应用。