Rapid adaptive optical recovery of optimal resolution over large volumes.

Rapid adaptive optical recovery of optimal resolution over large volumes.
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DOI:
10.1038/nmeth.2925
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发表时间:
2014-06
期刊:
影响因子:
48
通讯作者:
Betzig, Eric
Betzig, Eric
中科院分区:
生物学1区
文献类型:
--
作者:
Wang, Kai;Milkie, Daniel E.;Saxena, Ankur;Engerer, Peter;Misgeld, Thomas;Bronner, Marianne E.;Mumm, Jeff;Betzig, Eric

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使用去扫描、激光诱导引导星星和直接波前传感,我们演示了在高数值孔径和14 ms更新速率下复杂光学像差的自适应校正。这使得我们能够补偿生物样品中经常遇到的像差的快速空间变化,并在大体积(> 240 μm)上恢复衍射限制成像。我们将其应用于斑马鱼脑内精细神经元过程和亚细胞动力学的成像。
Using a de-scanned, laser-induced guide star and direct wavefront sensing, we demonstrate adaptive correction of complex optical aberrations at high numerical aperture and a 14 ms update rate. This permits us to compensate for the rapid spatial variation in aberration often encountered in biological specimens, and recover diffraction-limited imaging over large (> 240 μm) volumes. We applied this to image fine neuronal processes and subcellular dynamics within the zebrafish brain.
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