default search action
Luca Giancardo
Person information
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2025
- [j14]Samiksha Pachade, Prasanna Porwal, Manesh Kokare, Girish Deshmukh, Vivek Sahasrabuddhe, Zhengbo Luo, Feng Han, Zitang Sun, Li Qihan, Sei-ichiro Kamata, Edward Ho, Edward Wang, Asaanth Sivajohan, Saerom Youn, Kevin Lane, Jin Chun, Xinliang Wang, Yunchao Gu, Sixu Lu, Young-tack Oh, Hyunjin Park, Chia-Yen Lee, Hung Yeh, Kai-Wen Cheng, Haoyu Wang, Jin Ye, Junjun He, Lixu Gu, Dominik Müller, Iñaki Soto Rey, Frank Kramer, Hidehisa Arai, Yuma Ochi, Takami Okada, Luca Giancardo, Gwenolé Quellec, Fabrice Mériaudeau:
RFMiD: Retinal Image Analysis for multi-Disease Detection challenge. Medical Image Anal. 99: 103365 (2025) - 2024
- [j13]Shikha Tripathi, Alejandro Acien, Ashley A Holmes, Teresa Arroyo-Gallego, Luca Giancardo:
Generalizing Parkinson's disease detection using keystroke dynamics: a self-supervised approach. J. Am. Medical Informatics Assoc. 31(6): 1239-1246 (2024) - 2023
- [j12]Runzhi Zhou, Alice Z. Chuang, Robert M. Feldman, Luca Giancardo:
MVGL-Net: A generalizable multi-view convolutional network for anterior segment OCT. Biomed. Signal Process. Control. 85: 104778 (2023) - [j11]Shikha Tripathi, Teresa Arroyo-Gallego, Luca Giancardo:
Keystroke-Dynamics for Parkinson's Disease Signs Detection in an At-Home Uncontrolled Population: A New Benchmark and Method. IEEE Trans. Biomed. Eng. 70(1): 182-192 (2023) - [c26]Shikha Tripathi, Alejandro Acien, Ashley A Holmes, Teresa Arroyo-Gallego, Luca Giancardo:
Self-Supervised Learning with Touchscreen Typing. A Generalizable Strategy for Parkinson's Disease Detection Across Datasets. BCB 2023: 91:1 - [c25]Ivan Coronado, Samiksha Pachade, H. Dawoodally, Sergio Salazar Marioni, Juntao Yan, Rania Abdelkhaleq, M. Bahrainian, Amanda Jagolino-Cole, Roomasa Channa, Sunil A. Sheth, Luca Giancardo:
Foveal Avascular Zone Segmentation Using Deep Learning-Driven Image-Level Optimization and Fundus Photographs. ISBI 2023: 1-5 - [c24]Samiksha Pachade, Surabhi Datta, Y. Dong, Sergio Salazar Marioni, Rania Abdelkhaleq, A. Niktabe, Kirk Roberts, Sunil A. Sheth, Luca Giancardo:
Self-Supervised Learning with Radiology Reports, A Comparative Analysis of Strategies for Large Vessel Occlusion and Brain CTA Images. ISBI 2023: 1-5 - [c23]Shikha Tripathi, Pietro Mattioli, C. Liguori, A. Chiaravalloti, Dario Arnaldi, Luca Giancardo:
Brain Hemisphere Dissimilarity, a Self-Supervised Learning Approach for alpha-synucleinopathies prediction with FDG PET. ISBI 2023: 1-5 - [i4]Surabhi Datta, Tasneem Kaochar, Hio Cheng Lam, Nelly Nwosu, Luca Giancardo, Alice Z. Chuang, Robert M. Feldman, Kirk Roberts:
Eye-SpatialNet: Spatial Information Extraction from Ophthalmology Notes. CoRR abs/2305.11948 (2023) - [i3]Tanjida Kabir, Luyao Chen, Muhammad F. Walji, Luca Giancardo, Xiaoqian Jiang, Shayan Shams:
Dental CLAIRES: Contrastive LAnguage Image REtrieval Search for Dental Research. CoRR abs/2306.15651 (2023) - 2021
- [j10]Sheeba J. Sujit, Eliana Bonfante, Azin Aein, Ivan Coronado, Roy Riascos-Castaneda, Luca Giancardo:
Deep learning enabled brain shunt valve identification using mobile phones. Comput. Methods Programs Biomed. 210: 106356 (2021) - [j9]Samiksha Pachade, Prasanna Porwal, Dhanshree Thulkar, Manesh Kokare, Girish Deshmukh, Vivek Sahasrabuddhe, Luca Giancardo, Gwenolé Quellec, Fabrice Mériaudeau:
Retinal Fundus Multi-Disease Image Dataset (RFMiD): A Dataset for Multi-Disease Detection Research. Data 6(2): 14 (2021) - [j8]Kendall J. Kiser, Arko Barman, Sonja Stieb, Clifton D. Fuller, Luca Giancardo:
Novel Autosegmentation Spatial Similarity Metrics Capture the Time Required to Correct Segmentations Better Than Traditional Metrics in a Thoracic Cavity Segmentation Workflow. J. Digit. Imaging 34(3): 541-553 (2021) - [j7]Samiksha Pachade, Prasanna Porwal, Manesh Kokare, Luca Giancardo, Fabrice Mériaudeau:
NENet: Nested EfficientNet and adversarial learning for joint optic disc and cup segmentation. Medical Image Anal. 74: 102253 (2021) - [c22]Zhao Li, Rongbin Li, Kendall J. Kiser, Luca Giancardo, W. Jim Zheng:
Segmenting thoracic cavities with neoplastic lesions: a head-to-head benchmark with fully convolutional neural networks. BCB 2021: 33:1-33:8 - [c21]Ivan Coronado, Rania Abdelkhaleq, Juntao Yan, Sergio Salazar Marioni, Amanda Jagolino-Cole, Roomasa Channa, Samiksha Pachade, Sunil A. Sheth, Luca Giancardo:
Towards Stroke Biomarkers on Fundus Retinal Imaging: A Comparison Between Vasculature Embeddings and General Purpose Convolutional Neural Networks. EMBC 2021: 3873-3876 - [c20]Shuyang Fan, Mehmet Enes Inam, Danilo A. Peña, Peng Roc Chen, Luca Giancardo:
X-Ray Based Automatic Detection Of Brain Coil Compaction Using Unsupervised Learning. ISBI 2021: 625-629 - [d1]Samiksha Pachade, Prasanna Porwal, Dhanshree Thulkar, Manesh Kokare, Girish Deshmukh, Vivek Sahasrabuddhe, Luca Giancardo, Gwenolé Quellec, Fabrice Mériaudeau:
Retinal Fundus Multi-disease Image Dataset (RFMiD). IEEE DataPort, 2021 - 2020
- [c19]Arko Barman, Victor Lopez-Rivera, Songmi Lee, Farhaan S. Vahidy, James Z. Fan, Sean I. Savitz, Sunil A. Sheth, Luca Giancardo:
Combining symmetric and standard deep convolutional representations for detecting brain hemorrhage. Medical Imaging: Computer-Aided Diagnosis 2020
2010 – 2019
- 2019
- [c18]Seymanur Capoglu, Jude P. Savarraj, Sunil A. Sheth, H. Alex Choi, Luca Giancardo:
Representation Learning of 3D Brain Angiograms, an Application for Cerebral Vasospasm Prediction. EMBC 2019: 3394-3398 - [c17]Arko Barman, Mehmet Enes Inam, Songmi Lee, Sean I. Savitz, Sunil Sheth, Luca Giancardo:
Determining Ischemic Stroke From CT-Angiography Imaging Using Symmetry-Sensitive Convolutional Networks. ISBI 2019: 1873-1877 - [i2]Rui Zhang, Luca Giancardo, Danilo A. Peña, Yejin Kim, Hanghang Tong, Xiaoqian Jiang:
From Brain Imaging to Graph Analysis: a study on ADNI's patient cohort. CoRR abs/1905.05861 (2019) - 2018
- [j6]Prasanna Porwal, Samiksha Pachade, Manesh Kokare, Luca Giancardo, Fabrice Mériaudeau:
Retinal image analysis for disease screening through local tetra patterns. Comput. Biol. Medicine 102: 200-210 (2018) - [c16]Xinyuan Zhang, Sicheng Zhou, Luca Giancardo, Cui Tao:
Computer Aided Diagnosis of Chest X-rays using by Combining Deep Convolutional Neural Networks. AMIA 2018 - [c15]Luca Giancardo, Timothy M. Ellmore, Jessika Suescun, Laura Ocasio, Arash Kamali, Roy Riascos-Castaneda, Mya C. Schiess:
Longitudinal connectome-based predictive modeling for REM sleep behavior disorder from structural brain connectivity. Medical Imaging: Computer-Aided Diagnosis 2018: 105750J - 2017
- [j5]Teresa Arroyo-Gallego, María-Jesus Ledesma-Carbayo, Álvaro Sánchez-Ferro, Ian Butterworth, Carlos S. Mendoza, Michele Matarazzo, Paloma Montero, Roberto Lopez-Blanco, Verónica P. Casaliglla, Rocio Trincado, Luca Giancardo:
Detection of Motor Impairment in Parkinson's Disease Via Mobile Touchscreen Typing. IEEE Trans. Biomed. Eng. 64(9): 1994-2002 (2017) - [c14]Luca Giancardo, Kirk Roberts, Zhongming Zhao:
Representation Learning for Retinal Vasculature Embeddings. FIFI/OMIA@MICCAI 2017: 243-250 - 2016
- [i1]Luca Giancardo, Álvaro Sánchez-Ferro, Teresa Arroyo-Gallego, Ian Butterworth, Carlos S. Mendoza, Paloma Montero, Michele Matarazzo, José A. Obeso, Martha L. Gray, Raúl San José Estépar:
Computer keyboard interaction as an indicator of early Parkinson's disease. CoRR abs/1604.08620 (2016) - 2015
- [j4]Amir Fazlollahi, Fabrice Mériaudeau, Luca Giancardo, Victor L. Villemagne, Christopher Rowe, Paul A. Yates, Olivier Salvado, Pierrick Bourgeat:
Computer-aided detection of cerebral microbleeds in susceptibility-weighted imaging. Comput. Medical Imaging Graph. 46: 269-276 (2015) - [c13]Aurélien Bourquard, Ian Butterworth, Álvaro Sánchez-Ferro, Luca Giancardo, Luis Soenksen, Carolina Cerrato, Rafael Flores, Carlos Castro-Gonzalez:
Analysis of white blood cell dynamics in nailfold capillaries. EMBC 2015: 7470-7473 - 2013
- [j3]Sharib Ali, Desire Sidibé, Kedir M. Adal, Luca Giancardo, Edward Chaum, Thomas P. Karnowski, Fabrice Mériaudeau:
Statistical atlas based exudate segmentation. Comput. Medical Imaging Graph. 37(5-6): 358-368 (2013) - [c12]Luca Giancardo, Thomas P. Karnowski, Kenneth W. Tobin, Fabrice Mériaudeau, Edward Chaum:
Validation of microaneurysm-based diabetic retinopathy screening across retina fundus datasets. CBMS 2013: 125-130 - [c11]Thomas P. Karnowski, Luca Giancardo, Yaqin Li, Kenneth W. Tobin, Edward Chaum:
Retina image analysis and ocular telehealth: The oak ridge national laboratory-hamilton eye institute case study. EMBC 2013: 7140-7143 - [c10]Luca Dodero, Sebastiano Vascon, Luca Giancardo, Alessandro Gozzi, Diego Sona, Vittorio Murino:
Automatic White Matter Fiber Clustering Using Dominant Sets. PRNI 2013: 216-219 - 2012
- [j2]Luca Giancardo, Fabrice Mériaudeau, Thomas P. Karnowski, Yaqin Li, Seema Garg, Kenneth W. Tobin, Edward Chaum:
Exudate-based diabetic macular edema detection in fundus images using publicly available datasets. Medical Image Anal. 16(1): 216-226 (2012) - [c9]Luca Giancardo, Diego Sona, Diego Scheggia, Francesco Papaleo, Vittorio Murino:
Segmentation and tracking of multiple interacting mice by temperature and shape information. ICPR 2012: 2520-2523 - [c8]Luca Giancardo, Diego Sona, Alessandro Gozzi, Angelo Bifone, Vittorio Murino, Sara Migliarini, Giulia Pacini, Barbara Pelosi, Massimo Pasqualetti:
Automatic Tractography Analysis through Sparse Networks in Case-Control Studies. PRNI 2012: 77-80 - 2011
- [b1]Luca Giancardo:
Automated fundus images analysis techniques to screen retinal diseases in diabetic patients. (Analyse de "Fundus" image par le diagnostique de la retinopathie diabétique). University of Burgundy, Dijon, France, 2011 - [j1]Luca Giancardo, Fabrice Mériaudeau, Thomas P. Karnowski, Kenneth W. Tobin, Enrico Grisan, Paolo Favaro, Alfredo Ruggeri, Edward Chaum:
Textureless Macula Swelling Detection With Multiple Retinal Fundus Images. IEEE Trans. Biomed. Eng. 58(3): 795-799 (2011) - [c7]K. Devisetti, Thomas P. Karnowski, Luca Giancardo, Yaqin Li, Edward Chaum:
Geographic atrophy segmentation in infrared and autofluorescent retina images using supervised learning. EMBC 2011: 3958-3961 - [c6]Luca Giancardo, Fabrice Mériaudeau, Thomas P. Karnowski, Yaqin Li, Kenneth W. Tobin, Edward Chaum:
Microaneurysm detection with radon transform-based classification on retina images. EMBC 2011: 5939-5942 - [c5]Thomas P. Karnowski, Deniz Aykac, Luca Giancardo, Yaqin Li, T. Nichols, Kenneth W. Tobin, Edward Chaum:
Automatic detection of retina disease: Robustness to image quality and localization of anatomy structure. EMBC 2011: 5959-5964 - [c4]Hector J. Santos-Villalobos, Thomas P. Karnowski, Deniz Aykac, Luca Giancardo, Yaqin Li, T. Nichols, Kenneth W. Tobin, Edward Chaum:
Statistical characterization and segmentation of drusen in fundus images. EMBC 2011: 6236-6241 - [c3]Luca Giancardo, Fabrice Mériaudeau, Thomas P. Kamowski, Yaqin Li, Kenneth W. Tobin, Edward Chaum:
Automatic quality enhancement and nerve fibre layer artefacts removal in retina fundus images by off axis imaging. ICIP 2011: 49-52 - [c2]Luca Giancardo, Fabrice Mériaudeau, Thomas P. Karnowski, Yaqin Li, Kenneth W. Tobin, Edward Chaum:
Automatic retina exudates segmentation without a manually labelled training set. ISBI 2011: 1396-1400 - 2010
- [c1]Luca Giancardo, Fabrice Mériaudeau, Thomas P. Karnowski, Kenneth W. Tobin, Yaqin Li, Edward Chaum:
Microaneurysms detection with the radon cliff operator in retinal fundus images. Medical Imaging: Image Processing 2010: 76230U
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 2024-10-23 20:32 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint