Journal Papers

  1. Stig Uteng; Eduardo Quevedo; Gustavo Marrero Callicó; Irene Castaño; Gregorio Carretero; Pablo Almeida; Aday García; Javier A. Hernández; Fred Godtliebsen. Curve-Based Classification Approach for Hyperspectral Dermatologic Data Processing. Sensors. 21 – 3-680, MDPI, 20/01/2021. Disponible en Internet en: <https://www.mdpi.com/1424-8220/21/3/680>. ISSN 1424-8220.

  2. Francesca Manni; Fons van der Sommen; Himar Fabelo; Svitlana Zinger; Caifeng Shan; Erik Edström; Adrian Elmi-Terander; Samuel Ortega; Gustavo Marrero Callicó; Peter H. N. de With. Hyperspectral Imaging for Glioblastoma Surgery: Improving Tumor Identification Using a Deep Spectral-Spatial Approach. Sensors. 20 – 23, pp. 1 – 20. MDPI, 05/12/2020. Disponible en Internet en: <https://www.mdpi.com/1424-8220/20/23/6955>. ISSN 1424-8220.


  3. Samuel Ortega; Martin Halicek; Himar Fabelo; Gustavo Marrero Callicó; Baowei Fei. Hyperspectral and multispectral imaging in digital and computational pathology: a systematic review [Invited]. Biomedical Optics Express. 11 – 6, pp. 3195 – 3233. 01/06/2020. Disponible en Internet en: <https://www.osapublishing.org/abstract.cfm?URI=boe-11-6-3195>. ISSN 2156-7085.


  4. Daniel Ulises Campos-Delgado; Omar Gutierrez-Navarro; Jose J. Rico-Jiménez; Elvis Duran; Himar Fabelo; S. Ortega; Gustavo Marrero Callicó; Javier A. Jo. Extended Blind End-member andAbundance Extraction for BiomedicalImaging Applications. IEEE Access. 7, pp. 178539 – 178552. Piscataway, New Jersey(Estados Unidos de América): IEEE, 12/12/2019. Disponible en Internet en: <http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=8931797&isnumber=6514899>. ISSN 2169-3536.


  5. Beatriz Martínez; Raquel León; Himar Fabelo; Samuel Ortega; Juan F. Piñeiro; Adam Szolna; María Hernández; Carlos Espino; Aruma J. O’Shanahan; David Carrera; Sara Bisshopp; Coralia Sosa; Mariano Marquez; Rafael Camacho; María de la Luz Plaza; Jesús Morera; Gustavo M. Callicó. Most Relevant Spectral Bands Identification for Brain Cancer Detection Using Hyperspectral Imaging. Sensors. 19 – 24, pp. 1 – 28. MDPI, 12/12/2019. Disponible en Internet en: <https://www.mdpi.com/1424-8220/19/24/5481>. ISSN 1424-8220.


  6. Raquel Lazcano; Daniel Madroñal; Giordana Florimbi; Jaime Sancho; Sergio Sánchez; Raquel León; Himar Fabelo; Samuel Ortega; Emanuele Torti; Rubén Salvador; Margarita Marrero-Martin; Francesco Leporati; Eduardo Juarez; Gustavo Marrero Callicó; César Sanz. Parallel Implementations Assessment of a Spatial-Spectral Classifier for Hyperspectral Clinical Applications. IEEE Access. 7, pp. 152316 – 152333. Piscataway (Estados Unidos de América): IEEE, 02/09/2019. Disponible en Internet en: <https://ieeexplore.ieee.org/document/8822420>. ISSN 2169-3536.


  7. Samuel Ortega; Raúl Guerra; María Diaz; Himar Fabelo; Sebastián López; Gustavo Marrero Callicó; Roberto Sarmiento. Hyperspectral Push-Broom Microscope Development and Characterization. IEEE Access. 7, pp. 122473 – 122491. PISCATAWAY(Estados Unidos de América): IEEE, 29/08/2019. Disponible en Internet en: <https://ieeexplore.ieee.org/document/8815768>. ISSN 2169-3536.


  8. Martin Halicek; Himar Fabelo; Samuel Ortega; Gustavo Marrero Callicó; Baowei Fei. In-Vivo and Ex-Vivo Tissue Analysis through Hyperspectral Imaging Techniques: Revealing the Invisible Features of Cancer. Cancers. 11(6) – 756, pp. 1 – 30. Basel(Suiza): MDPI, 30/05/2019. Disponible en Internet en: <https://www.mdpi.com/2072-6694/11/6/756>. ISSN 2072-6694.


  9. Himar Fabelo; Samuel Ortega; Adam Szolna; Diederik Bulters; Juan F. Piñeiro; Silvester Kabwama; Arum J-O’Shanahan; Harry Bulstrode; Sara Bisshopp; B. Ravi Kiran; Daniele Ravi; Raquel Lazcano; Daniel Madroñal; Coralia Sosa; Carlos Espino; Mariano Marquez; María De La Luz Plaza; Rafael Camacho; David Carrera; María Hernández; Gustavo Marrero Callicó; Jesús Morera; Bogdan Stanciulescu; Guang-Zhong Yang; Rubén Salvador; Eduardo Juarez; Cesar Sanz; Roberto Sarmiento. In-Vivo Hyperspectral Human Brain Image Database for Brain Cancer Detection. IEEE Access. 7, pp. 39098 – 39116. Piscataway (Estados Unidos de América): IEEE, 14/03/2019. Disponible en Internet en: <https://ieeexplore.ieee.org/document/8667294>. ISSN 2169-3536.


  10. Himar Fabelo; Martin Halicek; Samuel Ortega; Maysan Shahedi; Adam Szolna; Juan Francisco Piñeiro; Coralia Sosa; Aruma J. O’Shanahan; Sara Bisshopp; Carlos Espino; Mariano Marquez; María Hernández; David Carrera; Jesús Morera; Gustavo Marrero Callicó; Roberto Sarmiento; Baowei Fei. Deep Learning-Based Framework for In Vivo Identification of Glioblastoma Tumor using Hyperspectral Images of Human Brain. Sensors. 19 – 4, pp. 1 – 25. Basel(Suiza): MDPI, 22/02/2019. Disponible en Internet en: <https://www.mdpi.com/1424-8220/19/4/920/htm>. ISSN 1424-8220.


  11. Himar Fabelo; Samuel Ortega; Elizabeth Casselden; Jane Loh; Harry Bulstrode; Ardalan Zolnourian; Paul Grundy; Gustavo Marrero Callicó; Diederik Bulters; Roberto Sarmiento. SVM Optimization for Brain Tumor Identification Using Infrared Spectroscopic Samples. Sensors. 18 – 12, pp. 1 – 15. MDPI, 18/12/2018. Disponible en Internet en: <https://www.mdpi.com/1424-8220/18/12/4487>. ISSN 1424-8220.


  12. Giordana Florimbi; Himar Fabelo; Emanuele Torti; Raquel Lezcano; Daniel Madroñal; Samuel Ortega; Ruben Salvador; Francesco Leporati; Giovanni Danese; Abelardo Baez-Quevedo; Gustavo Marrero Callicó; Eduardo Juarez; Cesar Sanz; Roberto Sarmiento. Accelerating the K-Nearest Neighbors Filtering Algorithm to Optimize the Real-Time Classification of Human Brain Tumor in Hyperspectral Images. Sensors. 18 – 7, pp. 2314-1 – 2314-20. Basel(Suiza): MDPI, 17/07/2018. Disponible en Internet en: <http://www.mdpi.com/1424-8220/18/7/2314>. ISSN 1424-8220.


  13. Himar Fabelo; Samuel Ortega; Raquel Lezcano; Daniel Madroñal; Gustavo Marrero Callicó; Eduardo Juarez; Ruben Salvador; Diederik Bulters; Harry Bulstrode; Adam Szolna; Juan F. Piñeiro; Coralia Sosa; Aruma J. O’Shanahan; Sara Bishop; María Hernandez; Jesús Morera; Daniele Ravi; B. Ravi Kiran; Aurelio Vega; Abelardo Baez-Quevedo; Guang-Zhong Yang; Bogdan Stanciulescu; Roberto Sarmiento. An Intraoperative Visualization System Using Hyperspectral Imaging to Aid in Brain Tumor Delineation. Sensors. 18 – 2, pp. 430-1 – 430-21. Basel(Suiza): MDPI, 01/02/2018. Disponible en Internet en: <https://www.mdpi.com/1424-8220/18/2/430>. ISSN 1424-8220.


  14. Samuel Ortega; Himar Fabelo; Rafael Camacho; María de Luz Plaza; Gustavo Marrero Callicó; Roberto Sarmiento. Detecting brain tumor in pathological slides using hyperspectral imaging. Biomedical Optics Express. 9 – 2, pp. 818 – 831. OSA – Optical Society of America, 25/01/2018. Disponible en Internet en: <http://www.osapublishing.org/boe/abstract.cfm?URI=boe-9-2-818>. ISSN 2156-7085.

  15. Daniele Ravi; Himar Fabelo; Gustavo Marrero Callicó; Guang Zhong Yang. Manifold Embedding and Semantic Segmentation for Intraoperative Guidance with Hyperspectral Brain Imaging. IEEE Transactions on Medical Imaging. 36 – 9, pp. 1845 – 1857. Piscataway(Estados Unidos de América): IEEE, 01/09/2017. Disponible en Internet en: <http://ieeexplore.ieee.org/document/7907323>. ISSN 0278-0062.

  16. S. Ortega; H. Fabelo; R. Camacho; M. L. Plaza; Gustavo Marrero Callicó; R. Lazcano; D. Madroñal; R. Salvador; E. Juarez; R. Sarmiento. P03.18 Detection of human brain cancer in pathological slides using hyperspectral images. Neuro-Oncology. 19 – suppl_3, pp. iii37 – iii37. Cary(Estados Unidos de América): Oxford Univ Press Inc, 03/05/2017. Disponible en Internet en: <http://dx.doi.org/10.1093/neuonc/nox036.133>. ISSN 1522-8517.


  17. J. F. Piñeiro; D. Bulters; S. Ortega; H. Fabelo; S. Kabwama; C. Sosa; S. Bishop; A. Martinez-Gonzalez; A. Szolna; Gustavo Marrero Callicó. P04.20 Hyperspectral imaging for brain tumour identification and boundaries delineation in real-time during neurosurgical operations. Neuro-Oncology. 19 – suppl_3, pp. iii44 – iii44. Cary(Estados Unidos de América): OXFORD UNIV PRESS INC, 01/05/2017. Disponible en Internet en: <https://academic.oup.com/neuro-oncology/article/19/suppl_3/iii44/3743963?searchresult=1>. ISSN 1522-8517.


  18. Gustavo Marrero Callicó. Graphene: Image sensors go broadband. Nature Photonics. 11 – 6, pp. 332 – 333. Londres(Reino Unido): Springer Nature, 01/06/2017. Disponible en Internet en: <http://rdcu.be/s87r>. ISSN 1749-4885.


  19. Daniel U. Campos-Delgado; Inés A. Cruz-Guerrero; Juan N. Mendoza-Chavarría; Aldo R. Mejía-Rodríguez; Samuel Ortega; Himar Fabelo; Gustavo M. Callicó. Nonlinear extended blind end-member and abundance extraction for hyperspectral images. Signal Processing. 201, pp. 108718 – 108718. 12/2022. Disponible en Internet en: <https://www.sciencedirect.com/science/article/pii/S0165168422002572>. ISSN 0165-1684.


  20. Abián Hernandez-Guedes; Idafen Santana-Pérez; Natalia Arteaga-Marrero; Himar Fabelo; Gustavo Marrero Callicó; Juan Ruiz-Alzola. Performance Evaluation of Deep Learning Models for Image Classification Over Small Datasets: Diabetic Foot Case Study. IEEE Access. 10, pp. 124373 – 124386. IEEE, 28/11/2022. Disponible en Internet en: <https://ieeexplore.ieee.org/document/9964207>. ISSN 2169-3536.


  21. Beatriz Martínez-Vega; Mariia Tkachenko; Marianne Matkabi; Samuel Ortega; Himar Fabelo; Francisco Balea-Fernández; Marco La Salvia; Emanuele Torti; Francesco Leporati; Gustavo Marrero Callicó; Claire Chalopin. Evaluation of Preprocessing Methods on Independent Medical Hyperspectral Databases to Improve Analysis. Sensors. 22 – 22, pp. 1 – 19. MDPI, 18/11/2022. Disponible en Internet en: <https://www.mdpi.com/1424-8220/22/22/8917>. ISSN 1424-8220.


  22. Marco La Salvia; Emanuele Torti; Raquel León; Himar Fabelo; Samuel Ortega; Francisco Balea-Fernández; Beatriz Martínez-Vega; Irene Castaño; Pablo Almeida; Gregorio Carretero; Javier A. Hernández; Gustavo Marrero Callicó; Francesco Leporati. Neural Networks-Based On-Site Dermatologic Diagnosis through Hyperspectral Epidermal Images. Sensors. 22 – 19, pp. 1 – 15. MDPI, 21/09/2022. Disponible en Internet en: <https://www.mdpi.com/1424-8220/22/19/7139>. ISSN 1424-8220.


  23. Marco La Salvia; Emanuele Torti; Raquel León; Himar Fabelo; Samuel Ortega; Beatriz Martínez-Vega; Gustavo Marrero Callicó; Francesco Leporati. Deep Convolutional Generative Adversarial Networks to Enhance Artificial Intelligence in Healthcare: A Skin Cancer Application. Sensors. 22 – 16, pp. 1 – 12. MDPI, 17/08/2022. Disponible en Internet en: <https://www.mdpi.com/1424-8220/22/16/6145>. ISSN 1424-8220.


  24. Antonio J. Rodríguez-Almeida; Himar Fabelo; Samuel Ortega; Alejandro Deniz; Francisco J. Balea-Fernández; Eduardo Quevedo; Cristina Soguero-Ruiz; Ana M. Wagner; Gustavo M. Callicó. Synthetic Patient Data Generation and Evaluation in Disease Prediction Using Small and Imbalanced Datasets. IEEE Journal of Biomedical and Health Informatics. pp. 1 – 12. IEEE, 11/08/2022.


  25. Pedro Jesús Rodríguez de Rivera; Mirian Rodríguez de Rivera; Fabiola Socorro; Gustavo Marrero Callicó; Jose Antonio Calbet; Manuel Rodríguez de Rivera. Heat flow, heat capacity and thermal resistance of localized surfaces of the human body using a new calorimetric sensor. Journal of Thermal Analysis and Calorimetry. 147 – 13, pp. 7385 – 7398. Springer Netherlands, 07/2022. Disponible en Internet en: <https://link.springer.com/article/10.1007/s10973-021-11062-0#citeas>. ISSN 1388-6150.


  26. Alejandro Morales; Pablo Horstrand; Raúl Guerra; Raquel León; Samuel Ortega; María Díaz; José M. Melián; Sebastián López; José F. López; Gustavo Marrero Callicó; Ernestina Martel; Roberto Sarmiento. Laboratory Hyperspectral Image Acquisition System Setup and Validation. Sensors. 22 – 6, pp. 1 – 25. MDPI, 10/03/2022. Disponible en Internet en: <https://www.mdpi.com/1424-8220/22/6/2159>. ISSN 1424-8220.


  27. Raquel León; Himar Fabelo; Samuel Ortega; Juan F. Pineiro; Adam Szolna; María Hernandez; Carlos Espino; Aruma J. O’Shanahan; David Carrera; Sara Bisshopp; Coralia Sosa; Mariano Marquez; Jesús Morera; Bernardino Clavo; Gustavo M. Callicó. VNIR-NIR hyperspectral imaging fusion targeting intraoperative brain cancer detection. Scientific Reports. 11 – 1, pp. 19696 – 19708. Nature Research, 04/10/2021. Disponible en Internet en: <https://doi.org/10.1038/s41598-021-99220-0>. ISSN 2045-2322.


  28. Judit Álamo; Eduardo Quevedo; Alejandro Santana Coll; Samuel Ortega; Himar Fabelo; Gustavo M. Callicó; Alberto Zapatera. Sustainable Educational Robotics. Contingency Plan during Lockdown in Primary School. Sustainability. 13 – 15, pp. 1 – 16. MDPI, 27/07/2021. Disponible en Internet en: <https://www.mdpi.com/2071-1050/13/15/8388>. ISSN 2071-1050.


  29. Bernardino Clavo; Gregorio Martínez-Sánchez; Francisco Rodríguez-Esparragón; Delvys Rodríguez-Abreu; Saray Galván; David Aguiar-Bujanda; Juan A Díaz-Garrido; Silvia Cañas; Laura B Torres-Mata; Himar Fabelo; Teresa Téllez; Norberto Santana-Rodríguez; Leandro Fernández-Pérez; Gustavo Marrero Callicó. Modulation by Ozone Therapy of Oxidative Stress in Chemotherapy-Induced Peripheral Neuropathy: The Background for a Randomized Clinical Trial. International Journal of Molecular Sciences. 22 – 2802, pp. 1 – 19. MDPI, 10/03/2021. ISSN 1422-0067.


  30. Samuel Ortega; Jose Cabrera; Eduardo Quevedo; Himar Fabelo; Gustavo Marrero Callicó. Influence on the change of methodology in the practical laboratories of power electronics subject. Computer Applications in Engineering Education. HOBOKEN(Estados Unidos de América): Wiley, 20/12/2020. ISSN 1061-3773.


  31. Francisco Balea-Fernández; Beatriz Martínez-Vega; Samuel Ortega; Himar Fabelo; Raquel León; Gustavo Marrero Callicó; Cristina Bibao-Sieyro. Analysis of Risk Factors in Dementia through Machine Learning. Journal of Alzheimer’s Disease. 79 – 2021, pp. 845 – 861. Hindawi, 09/11/2020. ISSN 1387-2877.


  32. Emanuele Torti; Raquel León; Marco La Salvia; Giordana Florimbi; Beatriz Martínez-Vega; Himar Fabelo; Samuel Ortega; Gustavo Marrero Callicó; Francesco Leporati. Parallel Classification Pipelines for Skin Cancer Detection Exploiting Hyperspectral Imaging on Hybrid Systems. Electronics. 9 – 1503, pp. 1 – 21. Basel (Suiza): MDPI, 13/09/2020. Disponible en Internet en: <https://www.mdpi.com/2079-9292/9/9/1503>. ISSN 2079-9292.


  33. Alejandro Cruz-Guerrero; Raquel León; Daniel Campos-Delgado; Samuel Ortega; Himar Fabelo; Gustavo Marrero Callicó. Classification of Hyperspectral in-vivo Brain Tissue Based on Linear Unmixing. Applied Sciences. 10 – 16, pp. 5686-1 – 5686-20. MDPI, 15/08/2020. ISSN 2076-3417.


  34. S. Ortega; H. Fabelo; M. Halicek; R. Camacho; M. de la Luz Plaza; Gustavo Marrero Callicó; B. Fei. Hyperspectral superpixel-wise glioblastoma tumor detection in histological samples. Applied Sciences (Switzerland). 10 – 13, pp. 1 – 21. MDPI, 28/06/2020. Disponible en Internet en: <http://dx.doi.org/10.3390/app10134448>. ISSN 2076-3417.


  35. P.J. Rodríguez de Rivera; M. Rodríguez de Rivera; F. Socorro; M. Rodríguez de Rivera; Gustavo Marrero Callicó. A Method to Determine Human Skin Heat Capacity Using a Non-Invasive Calorimetric Sensor. Sensors (Basel, Switzerland). 20 – 12, pp. 3431-1 – 3431-20. MDPI, 17/06/2020. Disponible en Internet en: <http://dx.doi.org/10.3390/s20123431>. ISSN 1424-8220.


  36. Raquel León; Beatriz Martínez-Vega; Himar Fabelo; Samuel Ortega; Verónica Melian; Irene Castaño; Gregorio Carretero; Pablo Almeida; Aday García; Eduardo Quevedo; Javier A. Hernández; Bernardino Clavo; Gustavo Marrero Callicó. Non-Invasive Skin Cancer Diagnosis Using Hyperspectral Imaging for In-Situ Clinical Support. Journal of Clinical Medicine. 9 – 6, pp. 1662 – 1 – 1662 – 22. MDPI, 01/06/2020. Disponible en Internet en: <https://www.mdpi.com/2077-0383/9/6/1662>. ISSN 2077-0383.


  37. Samuel Ortega; Martin Halicek; Himar Fabelo; Rafael Camacho; María de la Luz Plaza; Fred Godtliebsen; Gustavo Marrero Callicó; Baowei Fei. Hyperspectral Imaging for the Detection of Glioblastoma Tumor Cells in H&E Slides Using Convolutional Neural Networks. Sensors. 20 – 7, pp. 1911 – 1911. 30/05/2020. Disponible en Internet en: <https://www.mdpi.com/1424-8220/20/7/1911>. ISSN 1424-8220.


  38. P.J. Rodríguez de Rivera; M. Rodríguez de Rivera; F. Socorro; M. Rodríguez de Rivera; Gustavo Marrero Callicó. Human skin thermal properties determination using a calorimetric sensor. Journal of Thermal Analysis and Calorimetry. 2020, Springer, 09/04/2020. ISSN 1388-6150.


  39. Stig Uteng; Thomas Johansen; Jose I. Zaballos; Samuel Ortega; Lasse Holmström; Gustavo Marrero Callicó; Himar Fabelo; Fred Godtliebsen. Early Detection of Change by Applying Scale-Space Methodology to Hyperspectral Images. Applied Sciences. 10 – 7, pp. 2298-1 – 2298-13. MDPI, 27/03/2020. ISSN 2076-3417.


  40. P. J. Rodríguez de Rivera; Mi. Rodríguez de Rivera; F. Socorro; M. Rodríguez de Rivera; Gustavo Marrero Callicó. Modelling and simulation of the operation of a calorimetric sensor for medical application. Journal of Thermal Analysis and Calorimetry. 2020, Springer, 27/03/2020. ISSN 1388-6150.


  41. Giordana Florimbi; Himar Fabelo; Emanuele Torti; Samuel Ortega; Margarita Marrero-Martin; Gustavo Marrero Callicó; Giovanni Danese; Francesco Leporati. Towards Real-Time Computing of Intraoperative Hyperspectral Imaging for Brain Cancer Detection using Multi-GPU Platforms. IEEE Access. pp. 1 – 16. 03/01/2020. Disponible en Internet en: <https://ieeexplore.ieee.org/document/8949497>. ISSN 2169-3536.


  42. M. Medina Castellano; A. Amaro Acosta; E. Quevedo Gutiérrez; G. Marrero Callicó; Á. Santana del Pino; J. García Hernández; A. Martín Martínez. OC03.03: IOTA ADNEX model as disruptive technology in customised clinical management of borderline ovarian tumour: a model of progress avoid overuse in oncology. Ultrasound in Obstetrics & Gynecology. 56 – S1, pp. 8 – 9. WILEY, 2020. Disponible en Internet en: <https://obgyn.onlinelibrary.wiley.com/doi/abs/10.1002/uog.22216>.


  43. A. Amaro Acosta; M. Medina Castellano; E. Quevedo Gutiérrez; G. Marrero Callicó; Á. Santana del Pino; J. García Hernández; A. Martín Martínez. OC03.05: One step forward: undertake the challenge of increasing the diagnostic accuracy of the IOTA ADNEX model in solid tumours. Ultrasound in Obstetrics & Gynecology. 56 – S1, pp. 9 – 9. WILEY, 2020. Disponible en Internet en: <https://obgyn.onlinelibrary.wiley.com/doi/abs/10.1002/uog.22218>.


  44. M. Medina Castellano; A. Amaro Acosta; E. Quevedo Gutiérrez; G. Marrero Callicó; Á. Santana del Pino; M. Laseca Modrego; J. García Hernández; A. Martín Martínez. VP61.05: Efficient and customised use of IOTA ADNEX model as a clinical management tool in a tailor-made treatment of adnexal tumour suspected of malignancy. Ultrasound in Obstetrics & Gynecology. 56 – S1, pp. 332 – 332. 2020. Disponible en Internet en: <https://obgyn.onlinelibrary.wiley.com/doi/abs/10.1002/uog.23346>.


  45. Abelardo Baez; Himar Fabelo; Samuel Ortega; Giordana Florimbi; Emanuele Torti; Abián Hernández; Francesco Leporati; Giovanni Danese; Gustavo M. Callicó; Roberto Sarmiento. High-Level Synthesis of Multiclass SVM Using Code Refactoring to Classify Brain Cancer from Hyperspectral Images. Electronics. 8 – 12, pp. 1 – 17. MDPI, 06/12/2019. Disponible en Internet en: <https://www.mdpi.com/2079-9292/8/12/1494>. ISSN 2079-9292.


  46. Martin Halicek; Himar Fabelo; Samuel Ortega; James V. Little; Xu Wang; Amy Y. Chen; Gustavo Marrero Callicó; Larry Myers; Baran D. Sumer; Baowei Fei. Hyperspectral imaging for head and neck cancer detection: specular glare and variance of the tumor margin in surgical specimens. Journal of Medical Imaging. 6 – 03, pp. 1 – 1. Bellingham(Estados Unidos de América): 14/09/2019. Disponible en Internet en: <https:// www.spiedigitallibrary.org/journals/journal-of-medical-imaging/volume-6/issue-03/035004/Hyperspectral-imaging for-head-and-neck-cancer-detection–specular/10.1117/1.JMI.6.3.035004.full>. ISSN 2329-4302.


  47. Raquel Lezcano; Daniel Madroñal; Himar Fabelo; Samuel Ortega; Rubén Salvador; Gustavo Marrero Callicó; Eduardo Juarez; Cesar Sanz. Adaptation of an iterative PCA to a manycore architecture for hyperspectral image processing. Journal of Signal Processing Systems for Signal Image and Video Technology. 91 – 7, pp. 759 – 771. SPRINGER, 15/07/2019. Disponible en Internet en: <https://link.springer.com/article/10.1007/s11265-018-1380-9#citeas>. ISSN 1939-8018.


  48. Thomas Haugland Johansen; Kajsa Møllersen; Samuel Ortega; Himar Fabelo; Aday García; Gustavo Marrero Callicó; Fred Godtliebsen. Recent advances in hyperspectral imaging for melanoma detection. Wiley Interdisciplinary Reviews: Computational Statistics. 0 – 0, pp. e1465-1 – e1465-17. Hoboken(Estados Unidos de América): Wiley-Blackwell, 22/04/2019. Disponible en Internet en: <https://onlinelibrary.wiley.com/doi/abs/10.1002/wics.1465>. ISSN 1939-0068.


  49. Samuel Ortega; Himar Fabelo; Dimitris Iakovidis; Anastasios Koulaouzidis; Gustavo Marrero Callicó. Use of Hyperspectral/Multispectral Imaging in Gastroenterology. Shedding Some–Different–Light into the Dark. Journal of Clinical Medicine. 8 – 36, pp. 1 – 21. Basel (Suiza): MDPI, 01/01/2019. Disponible en Internet en: <http://www.mdpi.com/2077-0383/8/1/36>. ISSN 2077-0383.


  50. Emanuele Torti; Giordana Florimbi; Francesca Castelli; Samuel Ortega; Himar Fabelo; Gustavo Marrero Callicó; Margarita Marrero Martin; Francesco Leporati. Parallel K-means Clustering for Brain Cancer Detection using Hyperspectral Images. Electronics. 7 – 11, pp. 283-1 – 283-19. Basel(Suiza): MDPI, 30/10/2018. Disponible en Internet en: <https://www.mdpi.com/2079-9292/7/11/283>. ISSN 2079-9292.


  51. E. Torti; A. Fontanella; G. Florimbi; F. Leporati; H. Fabelo; S. Ortega; Gustavo Marrero Callicó. Acceleration of brain cancer detection algorithms during surgery procedures using GPUs. Microprocessors and Microsystems. 61 – 2018, pp. 171 – 178. Amsterdam(Holanda): Elsevier, 01/09/2018. Disponible en Internet en: <https://www.sciencedirect.com/science/article/pii/S0141933118300589>. ISSN 0141-9331.


  52. Eduardo Quevedo; Luis Sánchez; Gustavo Marrero Callicó; Félix Tobajas; Jesús de la cruz; Valentín de Armas; Roberto Sarmiento. Super-Resolution with selective filter based on adaptive window and variable macro-block size. Journal on Real-Time Image Processing. Springer-Verlag, 01/08/2018.


  53. Himar Fabelo; Samuel Ortega; Daniele Ravi; Bangalore Ravi Kiran; Coralia Sosa; Diederik Bulters; Gustavo Marrero Callicó; Harry Bulstrode; Adam Szolna; Juan F. Piñeiro; Silvester Kabwama; Daniel Madroñal; Raquel Lezcano; Aruma O’Shanahan; Sara Bisshopp; María Hernández; Abelardo Baez; Guang-Zhong Yang; Bogdan Stanciulescu; Rubén Salvador; Eduardo Juarez; Roberto Sarmiento. Spatio-Spectral Classification of Hyperspectral Images for Brain Cancer Detection During Surgical Operations. PLOS ONE. 13 – 3, pp. 1 – 27. San Francisco(Estados Unidos de América): 19/03/2018. Disponible en Internet en: <https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0193721>. ISSN 1932-6203.


  54. Eduardo Quevedo; Eric Delory; Gustavo Marrero Callicó; Félix Tobajas; Roberto Sarmiento. Underwater Video Enhancement using Multi-Camera Super-Resolution. Optics Communications. 404, pp. 94 – 102. Amsterdam(Holanda): ELSEVIER SCIENCE BV, 01/12/2017. Disponible en Internet en: <https://www.sciencedirect.com/science/article/abs/pii/S0030401817305291?via%3Dihub>. ISSN 0030-4018.


  55. Elisa Marenzi; Emanuele Torti; Francesco Leporati; Eduardo Quevedo; Gustavo Marrero Callicó. Block Matching Super-Resolution Parallel GPU Implementation for Computational Imaging. IEEE Transactions on Consumer Electronics. 63 – 4, pp. 368 – 376. Piscataway(Estados Unidos de América): IEEE, 01/11/2017. Disponible en Internet en: <https://ieeexplore.ieee.org/document/8246793>. ISSN 0098-3063.


  56. D. Madroñal; R. Lazcano; R. Salvador; H. Fabelo; S. Ortega; Gustavo Marrero Callicó; E. Juarez; C. Sanz. SVM-based Real-Time Hyperspectral Image Classifier on a Manycore Architecture. Journal of Systems Architecture. 80, pp. 30 – 40. Amsterdam(Holanda): ELSEVIER SCIENCE BV, 01/10/2017. Disponible en Internet en: <https://www.sciencedirect.com/science/article/pii/S1383762116302910?via%3Dihub>. ISSN 1383-7621.


  57. R. Lazcano; D. Madroñal; R. Salvador; K. Desnos; M. Pelcat; R. Guerra; H. Fabelo; S. Ortega; S. López; Gustavo Marrero Callicó; E. Juarez; C. Sanz. Porting a PCA-based hyperspectral image dimensionality reduction algorithm for brain cancer detection on a manycore architecture. Journal of Systems Architecture. 77, pp. 101 – 111. Amsterdam(Holanda): ELSEVIER SCIENCE BV, 01/06/2017. Disponible en Internet en: <http://www.sciencedirect.com/science/article/pii/S1383762116302934>. ISSN 1383-7621.


  58. Silvester Kabwama; Diederik Bulters; Harry Bulstrode; Himar Fabelo Gómez; Samuel Ortega Sarmiento; Gustavo Marrero Callicó; Bogdan Stanciulescu; Ravi Kiran; Daniele Ravi; Adam Szolna; Juan Francisco Piñeiro. Intra-operative hyperspectral imaging for brain tumour detection and delineation: Current progress on the HELICoid project. International Journal of Surgery. 36 – suppl_8, pp. S140 – S140. Amsterdam(Holanda): ELSEVIER SCIENCE BV, 01/12/2016. Disponible en Internet en: <https://www.sciencedirect.com/science/article/pii/S1743919116310536?via%3Dihub>. ISSN 1743-9191.


  59. Teresa Cervero; Andrés Otero; Sebastián López; Eduardo de la Torre; Gustavo Marrero Callicó; Teresa Riesgo; Roberto Sarmiento. A scalable H.264/AVC deblocking filter architecture. Journal of Real-Time Image Processing. 12 – 1, pp. 81 – 105. Heidelberg(Alemania): 01/06/2016. Disponible en Internet en: <https://link.springer.com/article/10.1007%2Fs11554-013-0359-9>. ISSN 1861-8200.


  60. Adam Szolna; Jesús Mortar; Gustavo Marrero Callicó; Himar Fabelo; Samuel Ortega. O-ONC-03 – Hyperspectral Imaging as a Novel Instrument for Intraoperative Brain Tumor Detection. Neurocirugía. 27 – Esp Congr, pp. 166 – 166. Barcelona(España): ELSEVIER ESPANA SLU, 01/05/2016. Disponible en Internet en: <https://www.revistaneurocirugia.com/es-congresos-congresso-internacional-neurocirurgia-congreso-internacional-neurocirugia–26-sesion-sp-melhores-comunicacoes-orais-2208-hyperspectral-imaging-as-novel-instrument-23746-pdf>. ISSN 1130-1473.


  61. Eduardo Quevedo; Jesús de la Cruz; Luis Sánchez; Gustavo Marrero Callicó; Félix Tobajas. Super Resolution with Adaptive Macro-Block Topology Applied to a Multi Camera System. IEEE Transactions on Consumer Electronics. 65 – 2, IEEE, 08/07/2015.


  62. Rubén Marrero; Sebastián López; Gustavo Marrero Callicó; M.A. Veganzones; Antonio Plaza; J. Chanussot; Roberto Sarmiento. A Novel Negative Abundance-Oriented Hyperspectral Unmixing Algorithm. IEEE Transactions on Geoscience and Remote Sensing. 53 – 7, pp. 3772 – 3790. IEEE, 01/07/2015.


  63. Eduardo Quevedo; Jesús de la Cruz; Gustavo Marrero Callicó; Félix Tobajas; Roberto Sarmiento. Video Enhancement using Spatial and Temporal Super-Resolution from a Mult Camera System. IEEE Transactions on Consumer Electronics. 60 – 3, pp. 420 – 428. IEEE, 03/11/2014. Disponible en Internet en: <http://ieeexplore.ieee.org/xpl/login.jsp?tp=&arnumber=6937326&url=http%3A%2F%2Fieeexplore.ieee.org%2Fstamp%2Fstamp.jsp%3Ftp%3D%26arnumber%3D6937326>.


  64. Teresa Cervero; Sebastián López; Gustavo Marrero Callicó; Jose López; Roberto Sarmiento. Scalable architectures for real-time hyperspectral unmixing. Microelectronics Journal. 45 – 10, pp. 1292 – 1303. 01/10/2014. Disponible en Internet en: <http://www.sciencedirect.com/science/article/pii/S0026269214000809>.


  65. Gustavo Marrero Callicó; Sebastián López; Beatriz Aguilar; Jose López; Roberto Sarmiento. Parallel Implementation of the Modified Vertex Component Analysis Algorithm for Hyperspectral Unmixing Using OpenCL. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 7 – 8, pp. 3650 – 3659. IEEE, 11/08/2014.


  66. Sebastián López; Javier F. Moure; Antonio Plaza; Gustavo Marrero Callicó; Jose F. López; Roberto Sarmiento. A New Preprocessing Technique for Fast Hyperspectral Endmember Extraction. IEEE Geoscience and Remote Sensing Letters. 10 – 5, pp. 1070 – 1074. 01/09/2013.


  67. Sebastián López; Pablo Horstrand; Gustavo Marrero Callicó; Jose F. López; Roberto Sarmiento. A Novel Architecture for Hyperspectral Endmember Extraction by Means of the Modified Vertex Component Analysis (MVCA) Algorithm. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 5 – 6, pp. 1837 – 1848. 01/12/2012.


  68. Sebastián López; Pablo Horstrand; Gustavo Marrero Callicó; José López; Roberto Sarmiento. A Low-Computational-Complexity Algorithm for Hyperspectral Endmember Extraction: Modified Vertex Component Analysis. IEEE Geoscience and Remote Sensing Letters. 9 – 3, pp. 502 – 506. 01/05/2012.


  69. Lucana Santos; Sebastián López; Gustavo Marrero Callicó; Jose Francisco López; Roberto Sarmiento. Performance Evaluation of the H.264/AVC Video Coding Standard for Lossy Hyperspectral Image Compression. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. pp. 451 – 461. 01/04/2012.


  70. Tomasz Szydzik; Gustavo Marrero Callicó; Antonio Núñez. Efficient FPGA Implementation of a High-Quality Super-Resolution Algorithm with Real-Time Performance. IEEE Transaction on Consumer Electronics. 57 – 2, pp. 664 – 672. 01/05/2011.


  71. Sebastián López; Gustavo Marrero Callicó; Félix Tobajas; José Francisco López; Roberto Sarmiento. A Novel Real-Time DSP-Based video Super-Resolution System. IEEE Transaction on Consumer Electronics. 55 – 4, pp. 2264 – 2270. 01/11/2009.


  72. Sebastián López; Gustavo Marrero Callicó; Félix Tobajas; Valentín de Armas Sosa; José Francisco López; Roberto Sarmiento. Grouped Approach for the Design of H.264/AVC Motion Estimation Architectures. ETRI Journal. 30 – 6, pp. 862 – 864. 01/12/2008.


  73. Gustavo Marrero Callicó; Sebastián López Suárez; Oliver Sosa; José López; Roberto Sarmiento. Analysis of Fast Block Matching Motion Estimation Algorithms for Video Super-Resolution Systems. IEEE Transaction on Consumer Electronics. 54 – 3, pp. 1430 – 1438. 01/08/2008.


  74. Sebastián López Suárez; Gustavo Marrero Callicó; José López; Félix Tobajas; Valentín de Armas Sosa; Roberto Sarmiento. A Flexible Template for H.264/AVC Block Matching Motion Estimation Architectures. IEEE Transaction on Consumer Electronics. 54 – 2, pp. 845 – 851. 01/05/2008.


  75. Félix Tobajas; Gustavo Marrero Callicó; Pedro A. Pérez; Valentín de Armas Sosa; Roberto Sarmiento. An Efficient Double-Filter Hardware Architecture for H.264/AVC Deblocking Filtering. IEEE Transaction on Consumer Electronics. 54 – 1, pp. 131 – 139. 01/02/2008.


  76. Dácil Barreto; Luis D. Álvarez; Rafael Molina; Angelos Katsaggelos; Gustavo Marrero Callicó. Region-Based Super-Resolution for Compression. Multidimensional Systems and Signal Processing, special issue on papers presented at the I International Conference in Super Resolution (Hong Kong 2006). 18 – 2-3, pp. 59 – 81. Springer, 01/09/2007.


  77. Luz García; Gustavo Marrero Callicó; Víctor Reyes; Dácil Barreto; Tomás Bautista; Antonio Núñez. Towards a Configurable SoC MPEG-4 Advanced Simple Profile Decoder. IET Computers and Digital Techniques, special section on Design of Circuits and Integrated Systems. 1 – 5, pp. 451 – 460. 01/09/2007.


  78. Gustavo Marrero Callicó; Antonio Núñez. Mobile receiver design increases the resolution of compressed video. SPIE newsroom Electronic Imaging & Signal Processing. 2007 – 1, pp. 1 – 3. 01/08/2007.


  79. Gustavo Marrero Callicó; Dácil Barreto Dos Santos; Sebastián López Suárez; Carlos Tarajano Beracoechea; José López Feliciano; Roberto Sarmiento Rodríguez; Antonio Núñez Ordóñez. Técnicas de súper-resolución para la mejora de calidad en secuencias de vídeo comprimido. Vector Plus. 30, pp. 34 – 45. Fundación Universitaria de Las Palmas de Gran Canaria, 07/2007.


  80. Sebastián López; Félix Tobajas; Gustavo Marrero Callicó; Pedro A. Pérez; Valentín de Armas; Jose F. López; Roberto Sarmiento. A Novel High Performance Architecture for H.264/AVC Deblocking Filtering. ETRI Journal. 29 – 3, pp. 396 – 398. 01/06/2007. ISSN 1225-6463


  81. Gustavo Marrero Callicó; Rafael Peset Llopis; Sebastián López Suarez; Jose Francisco López; Antonio Núñez; Ramanathan Sethuraman; Roberto Sarmiento. Low-Cost Super-Resolution Algorithms Implementation over a HW/SW Video Compression Platform. EURASIP Journal on Applied Signal Processing. Special Issue on Super-Resolution. 2006 – 10, pp. 1 – 29. Hindawi Publishing Corporation, 01/12/2006. ISSN 1687-0433


  82. Sebastián López; Gustavo Marrero Callicó; Jose Francisco López; Roberto Sarmiento. Compresión de vídeo mediante técnicas de post-procesamiento. Vector Plus. 25, pp. 27 – 36. Fundación Universitaria de Las Palmas de Gran Canaria, 06/2005. ISSN 1134-5306


  83. Sebastián López; Gustavo Marrero Callicó; Jose Francisco López; Roberto Sarmiento. Adaptative Motion vector post-processing for low cost rate-distortion optimization. Electronics Letters. 39 – 24, pp. 1720 – 1721. 27/11/2003. Disponible en Internet en: <https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=1251538>. ISSN 0013-5194


  84. Gustavo Marrero Callicó; Samuel Ortega Sarmiento; Eduardo Juarez Martínez. PROYECTO HELICOID: detección de tumores cerebrales mediante imágenes hiperespectrales. bit. 208, pp. 64 – 68. Colegio Oficial de Ingenieros de Telecomunicación, 04/2018.


  85. Gustavo Marrero Callicó. Avances en la detección de los márgenes de tumores cerebrales usando imágenes hiperespectrales. Zona Teleco Canarias. Julio 2017 – 27, pp. 54 – 59. EITE – Escuela de Ingeniería de Telecomunicación y Electrónica, 01/07/2017.


  86. Gustavo Marrero Callicó; Himar Fabelo Gómez; Samuel Ortega Sarmiento. Proyecto de Investigación HELICoiD. Zona Teleco Canarias. Enero 2016 – 21, pp. 35 – 41. EITE – Escuela de Ingeniería de Telecomunicación y Electrónica, 01/01/2016


  87. Inés A Cruz-Guerrero; Daniel U Campos-Delgado; Aldo R Mejia-Rodríguez; Himar Fabelo; Samuel Ortega; Gustavo Marrero Callicó. A hybrid approach to the hyperspectral classification of in vivo brain tissue: linear unmixing with spatial coherence and machine learning. Artificial Intelligence in Cancer Diagnosis and Prognosis, Volume 3. pp. 1 – 25. IOP Publishing, 10/2022. Disponible en Internet en: <https://dx.doi.org/10.1088/978-0-7503-3603-1ch9>. ISBN 978-0-7503-3603-1


  88. Raquel León; Abián Hernández; Himar Fabelo; Samuel Ortega; Francisco Balea-Fernández; Gustavo Marrero Callicó. SWIR Hyperspectral Imaging to Assess Neurocognitive Disorders Using Blood Plasma Samples. Short-Wavelength Infrared Windows for Biomedical Applications. pp. 407 – 438. Bellingham(Estados Unidos de América): SPIE Press, 12/2021. Disponible en Internet en: <https://www.spiedigitallibrary.org/ebooks/PM/ Short-Wavelength-Infrared-Windows-for-Biomedical-Applications/13/SWIR-Hyperspectral-Imaging-to-Assess-Neurocognitive-Disorders-Using-Blood-Plasma/10.1117/3.2604326.ch13>. ISBN 9781510646230


  89. Samuel Ortega; Himar Fabelo; Dimitris Iakovidis; Anastasios Koulaouzidis; Gustavo Marrero Callicó. Use of Hyperspectral/Multispectral Imaging in Gastroenterology. Shedding Some–Different–Light into the Dark. Diagnosis and Treatment of Small Bowel Disorders. pp. 97 – 118. MDPI, 01/2021. Disponible en Internet en: <https://www.mdpi.com/books/pdfview/book/3353>. ISBN 978-3-03943-873-0


  90. Samuel Ortega; Martin Halicek; Himar Fabelo; Eduardo Quevedo; Baowei Fei; Gustavo M. Callicó. Information Extraction Techniques in Hyperspectral Imaging Biomedical Applications. Multimedia Information Retrieval. IntechOpen, 10/10/2020. Disponible en Internet en: <https://www.intechopen.com/online-first/information-extraction-techniques-in-hyperspectral-imaging-biomedical-applications?fbclid=IwAR3DhfQng1TszDtHCCseeC31z02s2HpOn-uKKp8_qasoljHo7ko2xpIEW_g>.


  91. Eduardo Quevedo; Gustavo Marrero Callicó. Colorimetry and Image Processing. Color Reconstruction and Resolution Enhancement Using Super-Resolution. pp. 43 – 60. InTech Open Science, 24/01/2018. Disponible en Internet en: <https://www.intechopen.com/books/colorimetry-and-image-processing/color-reconstruction-and-resolution-enhancement-using-super-resolution>. ISBN 978-953-51-3744-3


  92. Eduardo Quevedo; Gustavo Marrero Callicó; Félix Tobajas Guerrero. Recent Advances in Image and Video Coding. Chapter 5 – Approach to Super-Resolution Through the Concept of Multicamera Imaging. pp. 101 – 123. INTECH, 23/11/2016. Disponible en Internet en: <http://www.intechopen.com/books/recent-advances-in-image-and-video-coding/approach-to-super-resolution-through-the-concept-of-multicamera-imaging>. ISBN 978-953-51-2775-8


  93. Andrés Otero; Teresa Cervero; Eduardo de la Torre; Sebastián López; Gustavo Marrero Callicó; Teresa Riesgo; Roberto Sarmiento. Run-Time Scalable Architecture for Deblocking Filtering in H.264/AVC – SVC Video Codecs. Embedded Systems Design with FPGAs. pp. 173 – 199. Springer, 2013. ISBN 978-1-4614-1361-5


  94. Jesús Barba; Miguel Damas; Jesús González; Gustavo Marrero Callicó; Antonio Martínez; Jorge Portilla; Francisco Ramos; Goiuria Sagardui; Miguel A Vega-Rodríguez. IV Jornadas de Computación Empotrada (JCE 2013). Actas de las Jornadas de Computación Empotrada. Elche, Comunidad Valenciana(España): Servicio de Publicaciones, Universidad Complutense de Madrid, 2013. ISBN 978-84-695-8317-3. Proceedings of the Congress.


  95. Jesús Barba; Miguel Damas; Jesús González; Gustavo Marrero Callicó; Antonio Martínez; Jorge Portilla; Francisco Ramos; Goiuria Sagardui; Miguel A Vega-Rodríguez. III Jornadas de Computación Empotrada (JCE 2012). Actas de las Jornadas de Computación Empotrada. Elche, Comunidad Valenciana(España): Servicio de Publicaciones, Universidad Miguel Hernández, 2012. ISBN 978-84-695-4424-2. Proceedings of the Congress.


  96. Eduardo Quevedo; Jesús de la Cruz; Gustavo Marrero Callicó; Félix Tobajas; Roberto Sarmiento. Video Enhancement using Spatial and Temporal Super-Resolution from a Multi-Camera System. IEEE Transactions on Consumer Electronics. 60 -3, pp. 420 -428. IEEE, 08/2014. Available online at: <http://ieeexplore.ieee.org/xpl/ login.jsp?tp=&arnumber=6937326&url=http%3A%2F%2Fieeexplore.ieee.org%2Fstamp%2Fstamp.jsp%3Ftp%3D %26arnumber%3D6937326>.


  97. Eduardo Quevedo; Alexis Quesada Arencibia; David Horat; Gustavo Marrero Callicó; Félix Tobajas. Computation Time Optimization in Super-Resolution applications. Lecture Notes in Computer Science. 8112, pp. 101 -108. 12/2013.