Imtiaz Ahmad | Mathematical Sciences | Research Excellence Award

Prof. Dr. Imtiaz Ahmad | Mathematical Sciences | Research Excellence Award

Professor | University of Malakand | Pakistan

Dr. Imtiaz Ahmad is a distinguished researcher in the field of mathematics, with a strong focus on algebraic structures, graph theory, and mathematical modeling. His scholarly contributions encompass Abel-Grassmann’s groupoids, semigroups, fuzzy algebra, and the application of mathematical models to epidemiological dynamics. He has demonstrated consistent research productivity with 39 documents, accumulating over 380 citations and achieving an h-index of 10, reflecting the academic impact and relevance of his work within the global research community. His publications span reputable international journals, covering both theoretical advancements and applied mathematical modeling, particularly in infectious disease dynamics such as COVID-19, Ebola, and hepatitis. His research integrates abstract algebra with real-world problem-solving, contributing to interdisciplinary knowledge. Prof. Ahmad’s work continues to support the advancement of mathematical sciences through analytical rigor, innovation, and sustained scholarly engagement.

Citation Metrics (Scopus)

 

400

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380
 
Citations

39
 
Documents

10
 
h-index

 

Citations

 

Documents

 

h-index

Featured Publications

 

 

 

Ideals in CA-AG-Groupoids

Indian Journal of Pure and Applied Mathematics, 2018

 

Normal Bipolar Soft Subgroups

Fuzzy Information and Engineering, 2021

Nicolò Colistra | Mathematical Sciences | Research Excellence Award

Dr. Nicolò Colistra | Mathematical Sciences | Research Excellence Award

Ricercatore | ENEA | Italy 

Dr. Nicolò Colistra is a biomedical engineer and AI researcher whose work integrates machine learning, biomedical sensing, and intelligent systems to advance healthcare diagnostics, treatment optimization, and human performance assessment. His research spans artificial intelligence for oncology and cardiology, predictive modeling for clinical decision-making, and the development of multi-scale digital twin architectures. He has contributed to high-impact innovations in cardiotoxicity assessment through big-data pipelines, automated drug-screening platforms, and advanced signal-processing algorithms, alongside significant achievements in microfabrication, biosensor design, optical systems, and clean-room prototyping. His applied research also includes the engineering of wearable and robotic systems for gait analysis, athletic performance prediction, and human–machine interaction. Dr. Colistra’s academic influence is demonstrated by 187 citations, 11 publications, and an h-index of 6, underscoring his growing visibility in biomedical engineering, AI-driven health technologies, and translational innovation. He has collaborated with leading institutions including ENEA, the University of Rome Tor Vergata, the Italian Institute of Technology, and IBM Research, contributing to multidisciplinary projects that bridge engineering, medicine, and computational sciences. His work has been showcased at major international conferences, reflecting global engagement in biomedical imaging, electroporation, bioengineering, and neurosensor technologies. Through the integration of AI, advanced sensing, and multi-disciplinary engineering, Dr. Colistra’s research contributes to safer drug development, improved cardiovascular risk evaluation, enhanced athlete monitoring, and more precise diagnostic pathways, ultimately supporting societal goals of better healthcare, prevention, and performance optimization.

Profiles: Scopus | ORCID | ResearchGate

Featured Publications

  • Crusi, R., Colistra, N., Camera, F., Monti, G., Zappatore, M. S., Merla, C., & Tarricone, L. (2025). Cardiac pulsed-field ablation: Deep learning solutions for multi-parameter predictions. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology.

  • Colistra, N., Manzi, V., Maikano, S., Laterza, F., D’Onofrio, R., & Verrelli, C. M. (2025). A new linear two-state dynamical model for athletic performance prediction in elite-level soccer players. Mathematics.

  • Iachetta, G., Melle, G., Colistra, N., Tantussi, F., De Angelis, F., & Dipalo, M. (2023). Long-term in vitro recording of cardiac action potentials on microelectrode arrays for chronic cardiotoxicity assessment. Archives of Toxicology.

  • Iachetta, G., Melle, G., Colistra, N., Tantussi, F., De Angelis, F., & Dipalo, M. (2022). Chronic cardiotoxicity assessment by cell optoporation on microelectrode arrays. bioRxiv.

  • Iachetta, G., Colistra, N., Melle, G., Deleye, L., Tantussi, F., De Angelis, F., & Dipalo, M. (2021). Improving reliability and reducing costs of cardiotoxicity assessments using laser-induced cell poration on microelectrode arrays. Toxicology and Applied Pharmacology.