Attenuation of optical fields owing to scattering and absorption limits the penetration depth for imaging. Whilst aberration correction may be used, this is difficult to implement over a large field-of-view in heterogeneous tissue. Attenuation-compensation allows tailoring of the maximum lobe of a propagation-invariant light field and promises an increase in depth penetration for imaging. Here we show this promising approach may be implemented in multi-photon (two-photon) light-sheet fluorescence microscopy and, furthermore, can be achieved in a facile manner utilizing a graded neutral density filter, circumventing the need for complex beam shaping apparatus. A "gold standard" system utilizing a spatial light modulator for beam shaping is used to benchmark our implementation. The approach will open up enhanced depth penetration in light-sheet imaging to a wide range of end users.
Multi-photon attenuation-compensated light-sheet fluorescence microscopy.
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作者:Veettikazhy Madhu, Nylk Jonathan, Gasparoli Federico, Escobet-Montalbán AdriÃ, Hansen Anders Kragh, Marti Dominik, Andersen Peter Eskil, Dholakia Kishan
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2020 | 起止号: | 2020 May 15; 10(1):8090 |
| doi: | 10.1038/s41598-020-64891-8 | ||
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