数字全息显微术
数字全息术
全息术
光学
显微镜
光学(聚焦)
全息干涉法
数字成像
相(物质)
计算机科学
计算机视觉
活体细胞成像
材料科学
人工智能
物理
数字图像
图像处理
化学
图像(数学)
量子力学
生物化学
细胞
作者
Patrik Langehanenberg,Björn Kemper,Dieter Dirksen,Gert von Bally
出处
期刊:Applied optics
[The Optical Society]
日期:2008-04-18
卷期号:47 (19): D176-D176
被引量:352
摘要
Digital holography enables a multifocus quantitative phase microscopy for the investigation of reflective surfaces and for marker-free live cell imaging. For digital holographic long-term investigations of living cells an automated (subsequent) robust and reliable numerical focus adjustment is of particular importance. Four numerical methods for the determination of the optimal focus position in the numerical reconstruction and propagation of the complex object waves of pure phase objects are characterized, compared, and adapted to the requirements of digital holographic microscopy. Results from investigations of an engineered surface and human pancreas tumor cells demonstrate the applicability of Fourier-weighting- and gradient-operator-based methods for robust and reliable automated subsequent numerical digital holographic focusing.
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