Dr. Emmanouil Zoulias | Biomedical | Research Excellence Award

Dr. Emmanouil Zoulias | Biomedical | Research Excellence Award

Laboratory Teaching Faculty | National and Kapodistrian University of Athens | Greece

Dr. Emmanouil Zoulias is an experienced researcher and IT expert specializing in artificial intelligence, machine learning, and biomedical and educational informatics, with extensive contributions to public health and digital technologies. He has developed and integrated advanced AI, web-based, and simulation-driven solutions, while contributing to European projects in e-health, telemedicine, and education technologies. His research impact is reflected in 334 Scopus citations from 292 documents, with 71 publications and an h-index of 9, along with 594 Google Scholar citations and an h-index of 13.

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Citations
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                   🟦 Citations 🟥 i10-index 🟩 h-index

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Featured Publications

Forecasting transmission and distribution system flexibility needs for severe weather condition resilience
– Applied Sciences, 2022

Active System Management Approach for Flexibility Services to the Greek transmission system
– Energies, 2022

Development of a flexibility platform for active system management in Greece
– Applied Sciences, 2023

Computer-aided diagnosis of thyroid malignancy using AI classification
– IEEE T-ITB

Impacts of robotic assisted surgery on hospital strategic planning
– Procedia

Gilles Pagès | Health & Medicine | Research Excellence Award

Dr. Gilles Pagès | Health & Medicine | Research Excellence Award

Director of Research Exceptional Class | INSERM | France

Dr. Gilles Pagès is an internationally recognized scientist whose research has made substantial contributions to molecular and cellular biology, particularly in the fields of autophagy, intracellular signaling pathways, and mechanisms of disease progression. His work has played a pivotal role in understanding the regulation of mitogen-activated protein kinases (MAPKs), specifically p42MAPK and p44MAPK, which are fundamental to cell proliferation, differentiation, and survival processes. He has significantly advanced knowledge on the nuclear translocation of MAPKs in response to growth factors, thereby elucidating essential regulatory steps in fibroblast signaling. Additionally, his groundbreaking study demonstrating defective thymocyte maturation in ERK1 knockout models has deepened scientific understanding of immune system development, highlighting critical links between signal transduction and immune function. Dr. Pagès has also contributed to receptor biology, including research on thrombin receptor function related to calcium mobilization. He is recognized globally for co-authoring the comprehensive consensus resource “Guidelines for the use and interpretation of assays for monitoring autophagy,” which remains a cornerstone reference widely used to standardize experimental approaches and ensure accurate interpretation in autophagy research across disciplines. With publications in top-tier journals such as Science and PNAS and exceptional citation impact reflecting widespread influence, his work supports advancement in disease modeling, oncology, and therapeutic innovations. Dr. Pagès continues to drive scientific progress through rigorous experimental research, impactful knowledge dissemination, and leadership in collaborative initiatives that strengthen the global research community.

Profile: Scopus | ORCID | Google Scholar

Featured Publications

Klionsky, D. J., Abdel-Aziz, A. K., Abdelfatah, S., Abdellatif, M., Abdoli, A., Abel, S., … Pagès, G. (2021). Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition). Autophagy, 17(1), 1–382.

Pagès, G., Lenormand, P., L’Allemain, G., Chambard, J. C., Meloche, S., & Pouysségur, J. (1993). Mitogen-activated protein kinases p42mapk and p44mapk are required for fibroblast proliferation. Proceedings of the National Academy of Sciences, 90(18), 8319–8323.

Pagès, G., Guérin, S., Grall, D., Bonino, F., Smith, A., Anjuere, F., Auberger, P., … Pouysségur, J. (1999). Defective thymocyte maturation in p44 MAP kinase (Erk 1) knockout mice. Science, 286(5443), 1374–1377.

Lenormand, P., Sardet, C., Pagès, G., L’Allemain, G., Brunet, A., & Pouysségur, J. (1993). Growth factors induce nuclear translocation of MAP kinases (p42mapk and p44mapk) but not of their activator MAP kinase kinase (p45mapkk) in fibroblasts. The Journal of Cell Biology, 122(5), 1079–1088.

Rasmussen, U. B., Vouret-Craviari, V., Jallat, S., Schlesinger, Y., Pagès, G., … G. G. (1991). cDNA cloning and expression of a hamster α-thrombin receptor coupled to Ca2+ mobilization. FEBS Letters, 288(1–2), 123–128.