Innovative Research Award
Mohammadreza Hafezi
Heidelberg University, Germany
| Mohammadreza Hafezi | |
|---|---|
| Affiliation | Heidelberg University |
| Country | Germany |
| Scopus ID | 37103996600 |
| Documents | 36 |
| Citations | 1,664 |
| h-index | 19 |
| Subject Area | Medizin-Chirurgie |
| Event | Business Global Awards |
Mohammadreza Hafezi is a researcher affiliated with Heidelberg University whose indexed scholarly work includes studies in surgical medicine, transplantation-related research, vascular reconstruction, and experimental diagnostic imaging. His publication record includes collaborative investigations addressing clinically relevant and technically demanding questions, providing a basis for consideration within an Innovative Research Award framework. The available bibliometric information records 36 documents, 1,664 citations, and an h-index of 19.
Abstract
Mohammadreza Hafezi’s documented research activity reflects interdisciplinary surgical investigation conducted within the Heidelberg academic environment. His publications address renal artery reconstruction, kidney autotransplantation, experimental elastography, and modulation of hepatic blood flow following extensive liver resection. These studies combine clinical, systematic-review, and experimental approaches and demonstrate engagement with methodological questions relevant to modern surgical practice. [1] [2]
Keywords
Innovative research; transplantation surgery; renal artery aneurysm; kidney autotransplantation; hepatic surgery; portocaval shunt; elastography; surgical innovation; experimental medicine; Heidelberg University.
Introduction
Innovation in surgical research frequently emerges through the integration of operative techniques, imaging methodologies, vascular management, and evidence synthesis. Hafezi’s indexed publications illustrate this multidisciplinary orientation. His collaborative work has examined both experimental models and clinical evidence, with an emphasis on technically complex problems in transplantation and vascular surgery. [2] [3]
Research Profile
The research profile represented by the supplied publication record spans surgical reconstruction, transplantation, experimental organ models, and quantitative assessment of physiological changes. The work is characterized by collaboration across surgical and diagnostic disciplines and by the use of models that can inform understanding of complex clinical procedures.
Research Contributions
- Contribution to research on kidney autotransplantation as a reconstructive option for selected renal artery aneurysms. [2]
- Participation in experimental research investigating portocaval shunting and transhepatic flow after extended hepatectomy. [1]
- Contribution to imaging research using ARFI shear-wave elastography in an experimental porcine kidney model. [3]
Publications
Among the supplied publications, Hafezi is a co-author of the 2022 Scientific Reports article examining portocaval shunting after extended hepatectomy, the 2022 systematic review on renal artery repair with kidney autotransplantation, and the 2018 study of ARFI shear-wave elastography in an ex vivo porcine kidney model. [1] [2] [3]
Research Impact
The supplied bibliometric record reports 1,664 citations and an h-index of 19 across 36 documents. These indicators provide quantitative evidence of scholarly visibility, although citation metrics should be interpreted alongside publication quality, methodological contribution, collaboration, and relevance to clinical or scientific practice. The cited publications demonstrate engagement with research questions extending from experimental models to systematic clinical evidence. [2]
Award Suitability
For the Innovative Research Award associated with Business Global Awards, Hafezi’s profile can be assessed on the basis of documented publication activity, interdisciplinary collaboration, methodological diversity, and measurable scholarly impact. The evidence supports consideration of research innovation in surgical and translational contexts without implying that bibliometric indicators alone establish award eligibility.
Conclusion
Mohammadreza Hafezi’s research record reflects sustained participation in collaborative investigations across transplantation, vascular surgery, hepatic surgery, and diagnostic imaging. The combination of 36 documents, 1,664 citations, and an h-index of 19, together with the documented studies, provides a substantive scholarly profile for evaluation within an academic recognition framework.
External Links
References
- Golriz, M., Majlesara, A., Khajeh, E., et al. (2022). Portocaval shunt can optimize transhepatic flow following extended hepatectomy: a short-term study in a porcine model. Scientific Reports, 12, 1668.
https://doi.org/10.1038/s41598-022-05327-3 - Ramouz, A., Hafezi, M., Ali-Hasan-Al-Saegh, S., et al. (2022). Renal Artery Repair with Kidney Autotransplantation for Renal Artery Aneurysms. European Journal of Vascular and Endovascular Surgery, 63(5), 732–742.
https://doi.org/10.1016/j.ejvs.2022.01.015 - Muttray, J., Mehrabi, A., Hafezi, M., et al. (2018). ARFI shear-wave elastography with simulation of acute urinary tract obstruction in an ex vivo porcine kidney model. Diagnostic and Interventional Radiology, 24(5), 308–315.
https://doi.org/10.5152/dir.2018.17353 - Elsevier. (n.d.). Scopus author details: Mohammadreza Hafezi, Author ID 37103996600. Scopus.
https://www.scopus.com/pages/authors/37103996600 - Heidelberg University. (n.d.). University research and academic information.
- Business Global Awards. (n.d.). Official award website.
businessglobalawards.com