Masahiro Tanabe | Medicine and Health Sciences | Innovative Research Award

Innovative Research Award

Masahiro Tanabe
Affiliation Yamaguchi University Graduate School of Medicine
Country Japan
Scopus ID 35785023100
Documents 99
Citations 740
h-index 13
Subject Area Medicine and Health Sciences
Event International Research Awards

Masahiro Tanabe

Yamaguchi University Graduate School of Medicine, Japan

The Innovative Research Award recognizes researchers whose scholarly activities demonstrate sustained scientific contributions, measurable research impact, and continued advancement within their respective disciplines. Masahiro Tanabe, affiliated with Yamaguchi University Graduate School of Medicine, has established an academic profile through peer-reviewed publications indexed in Scopus, contributing to the advancement of medicine and health sciences. His publication record, citation performance, and interdisciplinary research activities reflect consistent engagement with internationally recognized scientific literature.[1]

Abstract

Masahiro Tanabe has developed a scholarly record characterized by peer-reviewed scientific publications, measurable citation performance, and continued participation in biomedical research. His academic profile demonstrates contributions to medicine and health sciences through collaborative investigations, evidence-based methodologies, and dissemination of research findings in internationally indexed journals. Such achievements provide an objective foundation for consideration within academic recognition programs emphasizing research quality, productivity, and scientific influence.[1][2]

Keywords

Medicine, Health Sciences, Clinical Research, Biomedical Science, Translational Medicine, Peer-reviewed Publications, Citation Analysis, Research Excellence, Academic Recognition, Scopus, Evidence-based Medicine, International Research Awards.

Introduction

Academic awards acknowledge sustained scientific excellence through objective indicators such as publication quality, citation performance, collaboration, and research relevance. Within medicine and health sciences, scholarly contributions support evidence-based healthcare, clinical innovation, and interdisciplinary scientific advancement. Researchers demonstrating continuous publication activity and measurable academic influence contribute significantly to the global scientific community.[3]

Research Profile

Masahiro Tanabe is affiliated with the Yamaguchi University Graduate School of Medicine, Japan. According to the available Scopus author profile, the researcher has produced 99 indexed publications that have collectively received approximately 740 citations and achieved an h-index of 13. These indicators represent sustained scholarly productivity and continuing engagement with international scientific literature.[1]

Research Contributions

The research activities associated with Masahiro Tanabe emphasize scientific investigation within medicine and health sciences. Publications have contributed to expanding biomedical knowledge through clinical and translational research, collaborative studies, and dissemination of evidence supporting improved healthcare practices. Continued publication activity indicates active participation in advancing scientific understanding within the international medical research community.[2]

Publications

The available bibliometric record identifies 99 Scopus-indexed publications. The publication portfolio demonstrates consistent scholarly communication through peer-reviewed journals and collaborative research. Indexed publications remain a widely accepted measure of scientific productivity and international academic visibility.[1]

Research Impact

Bibliometric indicators provide quantitative evidence of research influence. Approximately 740 citations and an h-index of 13 indicate that multiple publications have received sustained scholarly attention within the scientific community. Citation metrics complement peer review by demonstrating continued utilization and recognition of published research.[1][3]

Award Suitability

Based on publicly available bibliometric indicators and institutional affiliation, Masahiro Tanabe demonstrates characteristics commonly evaluated within international research recognition programs. These include sustained publication output, measurable citation impact, scientific collaboration, and continued contributions to medicine and health sciences. Such objective academic indicators align with evaluation principles commonly applied by research award committees.[1]

Conclusion

Masahiro Tanabe’s scholarly profile reflects sustained participation in biomedical research supported by internationally indexed publications and measurable citation performance. The combination of publication productivity, academic influence, and institutional affiliation illustrates continued engagement in advancing medicine and health sciences. These characteristics provide an objective basis for consideration within academic recognition initiatives such as the International Research Awards.[1]

References

  1. Elsevier. (2026). Scopus author details: Masahiro Tanabe, Author ID 35785023100. Scopus.https://www.scopus.com/authid/detail.uri?authorId=35785023100
  2. Masahiro Tanabe, (2026). Digital Object Identifier (DOI) System.https://www.mdpi.com/2379-139X/12/6/84
  3. International Research Awards.(2026). https://researchawards.net/

Ylenia Della Rocca | Medicine and Health Sciences | Research Excellence Award

Prof. Ylenia Della Rocca | Medicine and Health Sciences | Research Excellence Award 

Link University | Italy

Ylenia Della Rocca is an Associate Professor of Histology and Embryology and Physiology whose research profile is internationally recognized in the fields of stem cell biology, regenerative medicine, and advanced in vitro modeling for precision medicine. Her scientific activity is strongly interdisciplinary, integrating histology, embryology, molecular biology, biomaterials, and translational medicine, with a particular focus on induced pluripotent stem cells (iPSCs), extracellular vesicles, and 3D culture systems. Her core research line centers on the reprogramming of autologous human gingival mesenchymal stem cells into iPSCs and their differentiation toward functional cell types, especially cardiomyocytes and neural lineages. This work has led to innovative strategies for cardiac regeneration and personalized regenerative therapies, culminating in a patented non-integrative reprogramming and cardiomyogenic differentiation process. Through advanced molecular and morphological analyses, her studies elucidate the signaling pathways governing cell fate, inflammation, hypoxia response, and extracellular matrix remodeling. A distinctive element of her research is the development and application of organ-on-a-chip and tissue-on-a-chip platforms, including bone-on-a-chip and cardiac models, to study disease mechanisms, environmental pollutant toxicity, and therapeutic responses. Within national and international projects, she has contributed to the creation of physiologically relevant in vitro systems that reduce reliance on animal models while increasing translational relevance. Her work on environmental pollutants, such as bisphenol A and pesticides, has clarified their impact on inflammatory, apoptotic, and epigenetic pathways in stem cells and endothelial models.

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