From post

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed.

 

Другие публикации лиц с тем же именем

Particle Filtering for Multiple Object Tracking in Dynamic Fluorescence Microscopy Images: Application to Microtubule Growth Analysis., , , , и . IEEE Trans. Med. Imaging, 27 (6): 789-804 (2008)VAMPIRE: Improved Method for Automated Center Lumen Line Definition in Atherosclerotic Carotid Arteries in CTA Data., , , , и . MICCAI (1), том 3216 из Lecture Notes in Computer Science, стр. 525-532. Springer, (2004)Evaluation of Diffusion Techniques for Improved Vessel Visualization and Quantification in Three-Dimensional Rotational Angiography., , , и . MICCAI, том 2208 из Lecture Notes in Computer Science, стр. 177-185. Springer, (2001)3D Neuron Microscopy Image Segmentation via the Ray-Shooting Model and a DC-BLSTM Network., , , , и . IEEE Trans. Medical Imaging, 40 (1): 26-37 (2021)Multiple object tracking in molecular bioimaging by Rao-Blackwellized marginal particle filtering., , , , , , , , и . Medical Image Anal., 12 (6): 764-777 (2008)ESDMR-Net: A Lightweight Network With Expand-Squeeze and Dual Multiscale Residual Connections for Medical Image Segmentation., , и . CoRR, (2023)Advanced Level-Set-Based Cell Tracking in Time-Lapse Fluorescence Microscopy., , , , и . IEEE Trans. Med. Imaging, 29 (3): 852-867 (2010)Diffusion-enhanced visualization and quantification of vascular anomalies in three-dimensional rotational angiography: Results of an in-vitro evaluation., , , и . Medical Image Anal., 6 (3): 215-233 (2002)3-D Quantification of Filopodia in Motile Cancer Cells., , , , и . IEEE Trans. Med. Imaging, 38 (3): 862-872 (2019)Automated Neuron Detection in High-Content Fluorescence Microscopy Images Using Machine Learning., , , , , , , и . Neuroinformatics, 17 (2): 253-269 (2019)