Michael Liebling

Affiliations: 
Electrical & Computer Engineering University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
Communications & Signal Processing
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"Michael Liebling"
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Publications

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Marelli F, Ernst A, Mercader N, et al. (2023) PAAQ: Paired Alternating AcQuisitions for virtual high frame rate multichannel cardiac fluorescence microscopy. Biological Imaging. 3: e20
Marelli F, Liebling M. (2023) Efficient compressed sensing reconstruction for 3D fluorescence microscopy using OptoMechanical Modulation Tomography (OMMT) with a 1+2D regularization. Optics Express. 31: 31718-31733
Shajkofci A, Liebling M. (2020) Spatially-Variant CNN-based Point Spread Function Estimation for Blind Deconvolution and Depth Estimation in Optical Microscopy. Ieee Transactions On Image Processing : a Publication of the Ieee Signal Processing Society
Mariani O, Ernst A, Mercader N, et al. (2020) Reconstruction of Image Sequences From Ungated and Scanning-Aberrated Laser Scanning Microscopy Images of the Beating Heart Ieee Transactions On Computational Imaging. 6: 385-395
Jaques C, Pignat E, Calinon S, et al. (2019) Temporal super-resolution microscopy using a hue-encoded shutter. Biomedical Optics Express. 10: 4727-4741
Chan KG, Liebling M. (2017) Direct inversion algorithm for focal plane scanning optical projection tomography. Biomedical Optics Express. 8: 5349-5358
Poon KL, Liebling M, Kondrychyn I, et al. (2016) Development of the cardiac conduction system in zebrafish. Gene Expression Patterns : Gep
Chan KG, Streichan SJ, Trinh LA, et al. (2016) Simultaneous Temporal Superresolution and Denoising for Cardiac Fluorescence Microscopy Ieee Transactions On Computational Imaging. 2: 348-358
Trivedi V, Truong TV, Trinh le A, et al. (2015) Dynamic structure and protein expression of the live embryonic heart captured by 2-photon light sheet microscopy and retrospective registration. Biomedical Optics Express. 6: 2056-66
Staudt DW, Liu J, Thorn KS, et al. (2014) High-resolution imaging of cardiomyocyte behavior reveals two distinct steps in ventricular trabeculation. Development (Cambridge, England). 141: 585-93
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