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Brain Activity Quantification for Sport Audiovisual Content Visualization using EEG.

, , , , , and . BIOSIGNALS, page 145-149. SciTePress, (2015)

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Brain Activity Quantification for Sport Audiovisual Content Visualization using EEG., , , , , and . BIOSIGNALS, page 145-149. SciTePress, (2015)Assessment of sparse-based inpainting for retinal vessel removal., , , and . Sig. Proc.: Image Comm., (2017)Comparison of Local Analysis Strategies for Exudate Detection in Fundus Images., , and . IDEAL (1), volume 11314 of Lecture Notes in Computer Science, page 174-183. Springer, (2018)Deep Learning-Based Approach for the Semantic Segmentation of Bright Retinal Damage., , and . IDEAL (1), volume 11314 of Lecture Notes in Computer Science, page 164-173. Springer, (2018)Towards Automatic Glaucoma Assessment: An Encoder-decoder CNN for Retinal Layer Segmentation in Rodent OCT images., , , , , , , and . EUSIPCO, page 1-5. IEEE, (2019)Computer Aid-System to Identify the First Stage of Prostate Cancer Through Deep-Learning Techniques., , , , and . EUSIPCO, page 1-5. IEEE, (2019)Granulometry-Based Descriptor for Pathological Tissue Discrimination in Histopathological Images., , , and . ICIP, page 1413-1417. IEEE, (2018)Identification of Individual Glandular Regions Using LCWT and Machine Learning Techniques., , , , and . IDEAL (1), volume 11314 of Lecture Notes in Computer Science, page 642-650. Springer, (2018)Design and Development of an Automatic Blood Detection System for Capsule Endoscopy Images., , , , , and . IDEAL (2), volume 11872 of Lecture Notes in Computer Science, page 105-113. Springer, (2019)First-Stage Prostate Cancer Identification on Histopathological Images: Hand-Driven versus Automatic Learning., , and . Entropy, 21 (4): 356 (2019)