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Novel three-dimensional analysis tool for vascular trees indicates complete micro-networks, not single capillaries, as the angiogenic endpoint in mice overexpressing human VEGF165 in the brain.

, , , , , , , , , and . NeuroImage, 39 (4): 1549-1558 (2008)

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Synchrotron X-Ray Phase Contrast Imaging and Deep Neural Networks for Cardiac Collagen Quantification in Hypertensive Rat Model., , , , , , and . FIMH, volume 11504 of Lecture Notes in Computer Science, page 187-195. Springer, (2019)Phase contrast imaging: a new tool for biomedical investigations., , , , , , and . ISBI, page 1100-1103. IEEE, (2006)Hierarchical Assessment of Vascular Alterations in a Mouse Model for Alzheimer's Disease., , , , , , and . ISBI, page 149-152. IEEE, (2006)Microstructural Analysis of Cardiac Endomyocardial Biopsies with Synchrotron Radiation-Based X-Ray Phase Contrast Imaging., , , , , , and . FIMH, volume 10263 of Lecture Notes in Computer Science, page 23-31. Springer, (2017)Novel three-dimensional analysis tool for vascular trees indicates complete micro-networks, not single capillaries, as the angiogenic endpoint in mice overexpressing human VEGF165 in the brain., , , , , , , , , and . NeuroImage, 39 (4): 1549-1558 (2008)Improving analytical tomographic reconstructions through consistency conditions., , , and . CoRR, (2016)A Forward Regridding Method With Minimal Oversampling for Accurate and Efficient Iterative Tomographic Algorithms., , , , and . IEEE Trans. Image Processing, 25 (3): 1207-1218 (2016)Iterative FBP for improved reconstruction of X-ray differential phase-contrast tomograms., , , , and . ISBI, page 1260-1263. IEEE, (2013)High-throughput, Scalable, Quantitative, Cellular Phenotyping using X-Ray Tomographic Microscopy., , , and . IWBBIO, page 1483-1498. Copicentro Editorial, (2014)Hierarchical microimaging for multiscale analysis of large vascular networks., , , , , , , and . NeuroImage, 32 (2): 626-636 (2006)