Search Results - min+guo

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Accelerating Multiview Registration and Iterative Deconvolution to Improve Spatial Resolution and Contrast in Fluorescence Microscopy
This technology includes algorithms and software that improve the speed of iterative deconvolution, a common method for improving spatial resolution and contrast in fluorescence microscopy images. These algorithms also improve the registration of multiview datasets, and apply deep learning to accelerate spatially varying deconvolution.
Published: 8/12/2024   |   Inventor(s): Hari Shroff, Yue Li, Yicong Wu, Patrick La Riviere, Min Guo, Huafeng Liu
Keywords(s):  
Category(s): Application > Research Materials, Application > Software / Apps, ResearchProducts > Research Equipment
Improvement of Axial Resolution via Photoswitching and Standing Wave Illumination
This technology includes an illuminator and reflector that enables flexible standing wave illumination on an inverted microscope stand, and procedures for using such illumination to improve axial resolution in confocal or instant SIM imaging systems. The axial resolution in conventional fluorescence microscopy is typically limited by diffraction to...
Published: 8/12/2024   |   Inventor(s): Hari Shroff, John Giannini, Yicong Wu, Patrick La Riviere, Min Guo, Jiji Chen, Harshad Vishwasrao
Keywords(s):  
Category(s): Application > Research Materials, Application > Software / Apps, ResearchProducts > Computational models/software, ResearchProducts > Research Equipment
Computational Alleviation of Depth-dependent Degradation in Fluorescence Images
This technology includes an approach that dramatically lessens the effects of depth-dependent degradation in fluorescence microscopy images. First, we develop realistic ‘forward models’ of the depth dependent degradation and apply these forward models to shallow imaging planes that are expected to be relatively free of such degradation....
Published: 8/12/2024   |   Inventor(s): Hari Shroff, Yicong Wu, Min Guo, Patrick La Riviere
Keywords(s):  
Category(s): Application > Software / Apps, Collaboration Sought > Licensing, ResearchProducts > Computational models/software
Instant Total Internal Reflection Fluorescence/Structured Illumination Microscopy (instant TIRF/SIM)
This technology includes a method which enables high-speed, super-resolution microscopy at a very high signal-to-noise ratio (SNR), for biological applications within ~200 nm (the evanescent wave decay length) of a coverslip surface. Instant TIRF/SIM may be implemented simply by modifying and adding to the excitation optics that are already present...
Published: 8/12/2024   |   Inventor(s): Hari Shroff, Justin Taraska, Abhishek Kumar, Min Guo
Keywords(s):  
Category(s): Application > Research Materials, Collaboration Sought > Licensing, ResearchProducts > Research Equipment
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