From post

A deep learning approach to classify atherosclerosis using intracoronary optical coherence tomography.

, , , , и . Medical Imaging: Computer-Aided Diagnosis, том 10950 из SPIE Proceedings, стр. 109500N. SPIE, (2019)

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

Simultaneous Multi-Surface Fitting for Vessel Wall Layer Delineation., , , , и . BHI, стр. 1-4. IEEE, (2019)Multi-state Models for the Analysis of Survival Studies in Biomedical Research: An Alternative to Composite Endpoints., , , и . BIOINFORMATICS, стр. 194-199. SCITEPRESS, (2020)A deep learning approach to classify atherosclerosis using intracoronary optical coherence tomography., , , , и . Medical Imaging: Computer-Aided Diagnosis, том 10950 из SPIE Proceedings, стр. 109500N. SPIE, (2019)From Nonclinical Research to Clinical Trials and Patient-registries: Challenges and Opportunities in Biomedical Research, и . Revista Española de Cardiología (English Edition), 70 (12): 1121-1133 (декабря 2017)Recerca clínica; RCT; Estudis pragmàtics; CV.Estimating the internal elastic membrane cross-sectional area of coronary arteries autonomously using optical coherence tomography images., , , , , , и . BHI, стр. 109-112. IEEE, (2017)Automated Segmentation of Bioresorbable Vascular Scaffold Struts in Intracoronary Optical Coherence Tomography Images., , , , , и . BIBE, стр. 297-302. IEEE Computer Society, (2017)