default search action
José Rouco
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j25]Álvaro S. Hervella, Lucía Ramos, José Rouco, Jorge Novo, Marcos Ortega:
Explainable artificial intelligence for the automated assessment of the retinal vascular tortuosity. Medical Biol. Eng. Comput. 62(3): 865-881 (2024) - [j24]David Rivas-Villar, Álvaro S. Hervella, José Rouco, Jorge Novo:
ConKeD: multiview contrastive descriptor learning for keypoint-based retinal image registration. Medical Biol. Eng. Comput. 62(12): 3721-3736 (2024) - [j23]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Multi-Adaptive Optimization for multi-task learning with deep neural networks. Neural Networks 170: 254-265 (2024) - [c38]Álvaro S. Hervella, José Rouco, Jorge Novo, Clara I. Sánchez, Marcos Ortega:
Recurrent Task Specialization Network for Segmentation-aided Vascular Landmarks Detection in Retinal Images. ECAI 2024: 688-695 - [i7]David Rivas-Villar, Álvaro S. Hervella, José Rouco, Jorge Novo:
ConKeD: Multiview contrastive descriptor learning for keypoint-based retinal image registration. CoRR abs/2401.05901 (2024) - [i6]David Rivas-Villar, Álvaro S. Hervella, José Rouco, Jorge Novo:
ConKeD++ - Improving descriptor learning for retinal image registration: A comprehensive study of contrastive losses. CoRR abs/2404.16773 (2024) - 2023
- [j22]Daniel Iglesias Morís, Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Context encoder transfer learning approaches for retinal image analysis. Comput. Biol. Medicine 152: 106451 (2023) - [j21]José Morano, Álvaro S. Hervella, José Rouco, Jorge Novo, José Ignacio Fernández-Vigo, Marcos Ortega:
Weakly-supervised detection of AMD-related lesions in color fundus images using explainable deep learning. Comput. Methods Programs Biomed. 229: 107296 (2023) - 2022
- [j20]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
End-to-end multi-task learning for simultaneous optic disc and cup segmentation and glaucoma classification in eye fundus images. Appl. Soft Comput. 116: 108347 (2022) - [j19]David Rivas-Villar, Álvaro S. Hervella, José Rouco, Jorge Novo:
Color fundus image registration using a learning-based domain-specific landmark detection methodology. Comput. Biol. Medicine 140: 105101 (2022) - [j18]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Multimodal image encoding pre-training for diabetic retinopathy grading. Comput. Biol. Medicine 143: 105302 (2022) - [j17]Kristen M. Meiburger, Francesco Marzola, Guillaume Zahnd, Francesco Faita, Christos P. Loizou, Nolann Lainé, Catarina Carvalho, David A. Steinman, Lorenzo Gibello, Rosa Maria Bruno, Ricarda Clarenbach, Martina Francesconi, Andrew Nicolaides, Hervé Liebgott, Aurélio Campilho, Reza Ghotbi, Efthyvoulos Kyriacou, Nassir Navab, Maura Griffin, Andrie G. Panayiotou, Rachele Gherardini, Gianfranco Varetto, Elisabetta Bianchini, Constantinos S. Pattichis, Lorenzo Ghiadoni, José Rouco, Maciej Orkisz, Filippo Molinari:
Carotid Ultrasound Boundary Study (CUBS): Technical considerations on an open multi-center analysis of computerized measurement systems for intima-media thickness measurement on common carotid artery longitudinal B-mode ultrasound scans. Comput. Biol. Medicine 144: 105333 (2022) - [j16]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Retinal microaneurysms detection using adversarial pre-training with unlabeled multimodal images. Inf. Fusion 79: 146-161 (2022) - [j15]Joaquim de Moura, Plácido L. Vidal, Jorge Novo, José Rouco, Manuel G. Penedo, Marcos Ortega:
Feature definition and comprehensive analysis on the robust identification of intraretinal cystoid regions using optical coherence tomography images. Pattern Anal. Appl. 25(1): 1-15 (2022) - [c37]David Rivas-Villar, José Morano, José Rouco, Manuel G. Penedo, Jorge Novo:
Deep Features-Based Approaches for Phytoplankton Classification in Microscopy Images. EUROCAST 2022: 419-426 - [c36]José Morano, David Rivas-Villar, Álvaro S. Hervella, José Rouco, Jorge Novo:
Impact of Increased Centerline Weight on the Joint Segmentation and Classification of Arteries and Veins in Color Fundus Images. EUROCAST 2022: 435-443 - [c35]José Morano, Álvaro S. Hervella, José Rouco, Jorge Novo, José Ignacio Fernández-Vigo, Marcos Ortega:
Improving AMD Diagnosis by the Simultaneous Identification of Associated Retinal Lesions. ICIAP (1) 2022: 148-159 - [c34]José Morano, Álvaro S. Hervella, Jorge Novo, José Rouco:
Web-based platform for the automatic analysis and visualization of vascular diagnostic markers in ophthalmological images. XoveTIC 2022: 60-62 - [c33]David Rivas-Villar, Álvaro S. Hervella, José Rouco, Jorge Novo:
Deep learning-based detection of domain-specific retinal landmarks for color fundus image registration. XoveTIC 2022: 127-129 - [i5]José Morano, Álvaro S. Hervella, José Rouco, Jorge Novo, José Ignacio Fernández-Vigo, Marcos Ortega:
Improving AMD diagnosis by the simultaneous identification of associated retinal lesions. CoRR abs/2205.10885 (2022) - [i4]José Morano, Álvaro S. Hervella, Jorge Novo, José Rouco:
Simultaneous segmentation and classification of the retinal arteries and veins from color fundus images. CoRR abs/2209.09582 (2022) - [i3]José Morano, Álvaro S. Hervella, José Rouco, Jorge Novo, José Ignacio Fernández-Vigo, Marcos Ortega:
Weakly-supervised detection of AMD-related lesions in color fundus images using explainable deep learning. CoRR abs/2212.00565 (2022) - 2021
- [j14]José Morano, Álvaro S. Hervella, Jorge Novo, José Rouco:
Simultaneous segmentation and classification of the retinal arteries and veins from color fundus images. Artif. Intell. Medicine 118: 102116 (2021) - [j13]David Rivas-Villar, José Rouco, Rafael Carballeira, Manuel G. Penedo, Jorge Novo:
Fully automatic detection and classification of phytoplankton specimens in digital microscopy images. Comput. Methods Programs Biomed. 200: 105923 (2021) - [j12]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Self-supervised multimodal reconstruction pre-training for retinal computer-aided diagnosis. Expert Syst. Appl. 185: 115598 (2021) - [c32]Daniel Iglesias Morís, Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Context encoder self-supervised approaches for eye fundus analysis. IJCNN 2021: 1-8 - 2020
- [j11]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Learning the retinal anatomy from scarce annotated data using self-supervised multimodal reconstruction. Appl. Soft Comput. 91: 106210 (2020) - [j10]Álvaro S. Hervella, José Rouco, Jorge Novo, Manuel G. Penedo, Marcos Ortega:
Deep multi-instance heatmap regression for the detection of retinal vessel crossings and bifurcations in eye fundus images. Comput. Methods Programs Biomed. 186: 105201 (2020) - [j9]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Self-supervised multimodal reconstruction of retinal images over paired datasets. Expert Syst. Appl. 161: 113674 (2020) - [j8]Joaquim de Moura, Plácido L. Vidal, Jorge Novo, José Rouco, Manuel G. Penedo, Marcos Ortega:
Intraretinal Fluid Pattern Characterization in Optical Coherence Tomography Images. Sensors 20(7): 2004 (2020) - [j7]David Rivas-Villar, José Rouco, Manuel G. Penedo, Rafael Carballeira, Jorge Novo:
Automatic Detection of Freshwater Phytoplankton Specimens in Conventional Microscopy Images. Sensors 20(22): 6704 (2020) - [c31]José Morano, Álvaro S. Hervella, Noelia Barreira, Jorge Novo, José Rouco:
Multimodal Transfer Learning-Based Approaches for Retinal Vascular Segmentation. ECAI 2020: 1866-1873 - [c30]Álvaro S. Hervella, Lucía Ramos, José Rouco, Jorge Novo, Marcos Ortega:
Multi-Modal Self-Supervised Pre-Training for Joint Optic Disc and Cup Segmentation in Eye Fundus Images. ICASSP 2020: 961-965 - [i2]José Morano, Álvaro S. Hervella, Noelia Barreira, Jorge Novo, José Rouco:
Multimodal Transfer Learning-based Approaches for Retinal Vascular Segmentation. CoRR abs/2012.10160 (2020)
2010 – 2019
- 2019
- [j6]Víctor Manuel Mondéjar-Guerra, Jorge Novo, José Rouco, Manuel G. Penedo, Marcos Ortega:
Heartbeat classification fusing temporal and morphological information of ECGs via ensemble of classifiers. Biomed. Signal Process. Control. 47: 41-48 (2019) - [j5]Joaquim de Moura, Jorge Novo, José Rouco, Pablo Charlón, Marcos Ortega:
Artery/Vein Vessel Tree Identification in Near-Infrared Reflectance Retinographies. J. Digit. Imaging 32(6): 947-962 (2019) - [c29]Víctor Manuel Mondéjar-Guerra, José Rouco, Jorge Novo, Marcos Ortega:
An end-to-end deep learning approach for simultaneous background modeling and subtraction. BMVC 2019: 266 - [c28]Shaon Sutradhar, José Rouco, Marcos Ortega:
Blind-spot network for image anomaly detection: A new approach to diabetic retinopathy screening. ESANN 2019 - [c27]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Impact of the Circular Region of Interest on the Performance of Multimodal Reconstruction of Retinal Images. EUROCAST (2) 2019: 222-230 - [c26]Shaon Sutradhar, José Rouco, Marcos Ortega:
Unsupervised Anomaly Map for Image-Based Screening. EUROCAST (2) 2019: 239-246 - [c25]Víctor Manuel Mondéjar-Guerra, Jorge Novo, José Rouco, Marcos Ortega, Manuel G. Penedo:
Automatic ECG Screening as a Supporting Tool on a Telemedicine Framework. EUROCAST (2) 2019: 289-296 - [c24]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Self-Supervised Deep Learning for Retinal Vessel Segmentation Using Automatically Generated Labels from Multimodal Data. IJCNN 2019: 1-8 - [c23]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Deep Multimodal Reconstruction of Retinal Images Using Paired or Unpaired Data. IJCNN 2019: 1-8 - 2018
- [c22]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Multimodal registration of retinal images using domain-specific landmarks and vessel enhancement. KES 2018: 97-104 - [c21]Lucía Ramos, Jorge Novo, José Rouco, S. Romeo, M. D. Álvarez, Marcos Ortega:
Multi-expert analysis and validation of objective vascular tortuosity measurements. KES 2018: 482-489 - [c20]José Rouco, Catarina B. Carvalho, Ana Domingues, Elsa Azevedo, Aurélio Campilho:
A robust anisotropic edge detection method for carotid ultrasound image processing. KES 2018: 723-732 - [c19]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Retinal Image Understanding Emerges from Self-Supervised Multimodal Reconstruction. MICCAI (1) 2018: 321-328 - [i1]Álvaro S. Hervella, José Rouco, Jorge Novo, Marcos Ortega:
Multimodal Registration of Retinal Images Using Domain-Specific Landmarks and Vessel Enhancement. CoRR abs/1803.00951 (2018) - 2017
- [c18]Joaquim de Moura, Jorge Novo, José Rouco, Manuel G. Penedo, Marcos Ortega:
Automatic Identification of Intraretinal Cystoid Regions in Optical Coherence Tomography. AIME 2017: 305-315 - [c17]Sergio Baamonde, Joaquim de Moura, Jorge Novo, José Rouco, Marcos Ortega:
Feature Definition and Selection for Epiretinal Membrane Characterization in Optical Coherence Tomography Images. ICIAP (2) 2017: 456-466 - [c16]Joaquim de Moura, Jorge Novo, José Rouco, Manuel G. Penedo, Marcos Ortega:
Automatic Detection of Blood Vessels in Retinal OCT Images. IWINAC (2) 2017: 3-10 - [c15]Joaquim de Moura, Jorge Novo, José Rouco, Manuel G. Penedo, Marcos Ortega:
Automatic vessel detection by means of brightness profile characterization in OCT images. KES 2017: 980-988 - [c14]Joaquim de Moura, Plácido L. Vidal, Jorge Novo, José Rouco, Marcos Ortega:
Feature definition, analysis and selection for cystoid region characterization in Optical Coherence Tomography. KES 2017: 1369-1377 - 2016
- [j4]José Rouco, Elsa Azevedo, Aurélio Campilho:
Automatic Lumen Detection on Longitudinal Ultrasound B-Mode Images of the Carotid Using Phase Symmetry. Sensors 16(3): 350 (2016) - 2015
- [c13]Teresa Araujo, Guilherme Aresta, José Rouco, Carmen Ferreira, Elsa Azevedo, Aurélio J. C. Campilho:
Optical Flow Based Approach for Automatic Cardiac Cycle Estimation in Ultrasound Images of the Carotid. ICIAR 2015: 360-367 - 2014
- [c12]José Rouco, Jorge Novo, Aurélio J. C. Campilho:
On the Automatic Normalization of Plaque Regions in Ultrasound Images of the Carotid. ICIAR (2) 2014: 177-184 - [c11]Jorge Novo, José Rouco, Ana Maria Mendonça, Aurélio J. C. Campilho:
Reliable Lung Segmentation Methodology by Including Juxtapleural Nodules. ICIAR (2) 2014: 227-235 - 2013
- [c10]José Rouco, Aurélio J. C. Campilho:
Robust common carotid artery lumen detection in B-mode ultrasound images using local phase symmetry. ICASSP 2013: 929-933 - 2011
- [j3]David Calvo, Marcos Ortega, Manuel G. Penedo, José Rouco:
Automatic detection and characterisation of retinal vessel tree bifurcations and crossovers in eye fundus images. Comput. Methods Programs Biomed. 103(1): 28-38 (2011) - 2010
- [c9]Lucía Ramos, Jorge Novo, José Rouco, Antonio Mosquera González, Manuel G. Penedo:
Color Video Segmentation by Dissimilarity Based on Edges. HAIS (2) 2010: 264-271
2000 – 2009
- 2009
- [j2]Marcos Ortega, Manuel G. Penedo, José Rouco, Noelia Barreira, María J. Carreira:
Retinal Verification Using a Feature Points-Based Biometric Pattern. EURASIP J. Adv. Signal Process. 2009 (2009) - [j1]Marcos Ortega, Manuel G. Penedo, José Rouco, Noelia Barreira, María J. Carreira:
Personal verification based on extraction and characterisation of retinal feature points. J. Vis. Lang. Comput. 20(2): 80-90 (2009) - [c8]David Calvo, Marcos Ortega, Manuel G. Penedo, José Rouco:
Characterisation of Feature Points in Eye Fundus Images. CIARP 2009: 449-456 - [c7]José Rouco, Manuel G. Penedo, Marcos Ortega, Antonio Mosquera González:
Texture Description in Local Scale Using Texton Histograms with Universal Dictionary. DICTA 2009: 47-52 - [c6]Marcos Ortega, José Rouco, Jorge Novo, Manuel G. Penedo:
Vascular Landmark Detection in Retinal Images. EUROCAST 2009: 211-217 - [c5]David Calvo, Marcos Ortega, Manuel G. Penedo, José Rouco, Beatriz Remeseiro:
Characterisation of Retinal Feature Points Applied to a Biometric System. ICIAP 2009: 355-363 - 2008
- [c4]Noelia Barreira, Manuel G. Penedo, Carmen Alonso-Montes, José Rouco:
Handling Topological Changes in the Topological Active Volumes Model. ICIAR 2008: 122-131 - [c3]Noelia Barreira, Manuel G. Penedo, Marcos Ortega, José Rouco:
On the Improvement of the Topological Active Volumes Model - A Tetrahedral Approach. VISAPP (1) 2008: 529-534 - 2007
- [c2]José Rouco, Marta Penas, Manuel G. Penedo, Marcos Ortega, Carmen Alonso-Montes:
Certainty Measure of Pairwise Line Segment Perceptual Relations Using Fuzzy Logic. CIARP 2007: 477-486 - 2005
- [c1]José Rouco, Noelia Barreira, Manuel G. Penedo, Xosé M. Pardo:
Conversion into Three-Dimensional Implicit Surface Representation from Topological Active Volumes Based Segmentation. IbPRIA (1) 2005: 60-68
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-12-15 02:20 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint