SAMAYEH AZARIASL | Radiation Protection | Innovative Research Award

Innovative Research Award

SAMAYEH AZARIASL
Researcher SAMAYEH AZARIASL
Affiliation Hiroshima University
Country Japan
Scopus ID 57218374986
Documents 9
Citations 31
h-index 3
Subject Area Radiation Protection
Event Research Awards and Recognitions
ORCID 0009-0008-0601-3060

SAMAYEH AZARIASL
Hiroshima University

SAMAYEH AZARIASL is affiliated with Hiroshima University, Japan, and is recognised for scholarly contributions in the field of radiation protection and related scientific investigations. Her academic profile demonstrates active participation in research activities that contribute to radiation safety, health protection, and scientific understanding within interdisciplinary environments. With publications indexed in international databases and measurable citation impact, her work reflects an emerging research trajectory supported by peer-reviewed outputs and academic engagement.[1]

Abstract

This article presents an academic overview of SAMAYEH AZARIASL and her research activities in radiation protection. The profile highlights scholarly productivity, publication records, citation performance, and contributions to scientific knowledge. The evaluation is intended to support recognition within research award programmes and professional academic communities. The available metrics indicate a developing yet meaningful contribution to the advancement of radiation-related studies and associated health protection practices.[1]

Keywords

Radiation Protection, Radiation Safety, Academic Research, Scientific Publications, Citation Analysis, Hiroshima University, Research Recognition, Health Physics, Research Impact, Innovative Research Award.

Introduction

Radiation protection remains an important scientific discipline dedicated to safeguarding human health and the environment from the potential effects of ionising radiation. Researchers in this field contribute to the development of protective methodologies, risk assessment approaches, and evidence-based practices. Within this context, SAMAYEH AZARIASL has participated in scholarly activities that support the broader objectives of radiation science and safety research.[2]

Research Profile

The researcher is associated with Hiroshima University and has established a publication record indexed in Scopus. Current bibliometric indicators include nine indexed documents, thirty-one citations, and an h-index of three. These metrics demonstrate ongoing scholarly engagement and growing visibility within the scientific community. The profile reflects participation in internationally recognised research dissemination channels and academic collaboration networks.[1]

Research Contributions

Research contributions associated with the author’s profile are focused on improving understanding of radiation exposure, protective measures, and scientific assessment methodologies. These studies support evidence-based decision-making and contribute to the knowledge base required for responsible radiation management. Through publication and collaboration, the researcher has contributed to scientific dialogue and the dissemination of findings relevant to radiation protection and health-related applications.[3]

Publications

  • Peer-reviewed publications indexed in Scopus and international scholarly databases.
  • Research outputs related to radiation protection and scientific assessment methodologies.
  • Collaborative publications supporting interdisciplinary research activities.

Research Impact

Research impact can be assessed through publication output, citation performance, and scholarly visibility. The citation record demonstrates that the author’s work has been referenced by other researchers, indicating relevance within the scientific community. Continued publication and collaboration are expected to strengthen future impact and increase the dissemination of research findings across related disciplines.[1]

Award Suitability

Based on the available academic indicators, publication record, and contributions to radiation protection research, SAMAYEH AZARIASL demonstrates qualities aligned with the objectives of the Innovative Research Award. The researcher exhibits commitment to scholarly excellence, knowledge dissemination, and scientific advancement. The combination of documented research outputs and measurable impact supports consideration for recognition within research award programmes dedicated to emerging and innovative scientific contributions.[4]

Conclusion

SAMAYEH AZARIASL represents an active researcher contributing to the field of radiation protection through scholarly publications and academic engagement. Her research profile reflects steady development, recognised academic output, and growing citation influence. These achievements support her suitability for academic recognition and provide evidence of meaningful participation in advancing scientific knowledge and research excellence.[1]

References

  1. Elsevier. (n.d.). Scopus author details: SAMAYEH AZARIASL, Author ID 57218374986. Scopus.https://www.scopus.com/pages/authors/57218374986
  2. International Commission on Radiological Protection. (n.d.). Principles of radiation protection and safety.https://www.icrp.org
  3. Comparative study on the impact of storage conditions on ESR signals in fingernail dosimetryhttps://www.sciencedirect.com/science/article/pii/S1350448724000519
  4. Research Awards and Recognitions. (n.d.). Award evaluation and recognition criteria.https://awardsandrecognitions.com/

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Prof. Dr. Huda AlMohammed | Radiotherapy | Best Researcher Award

Prof. Dr. Huda AlMohammed | Radiotherapy | Best Researcher Award

Prof. Dr. Huda AlMohammed | Radiotherapy – Professor at Princess Nourah Bint Abdulrahman University, Saudi Arabia

Prof. Huda Almohammed is a distinguished academic and research expert in the field of Medical Physics and Radiation Therapy, known for her impactful contributions to radiation protection, oncology applications, and interdisciplinary advancements in health sciences. She is widely recognized for bridging clinical medical physics with applied research to improve patient outcomes and reduce radiological risks. Her scholarly record is marked by consistent publication in peer-reviewed journals and active collaboration with leading scientists in radiological sciences. Her innovative approach, dedication to academic integrity, and focus on high-impact healthcare challenges place her among the prominent researchers advancing medical physics in the 21st century.

Profile Verified:

Scopus | Google Scholar

Education:

Prof. Almohammed’s educational foundation is rooted in radiation sciences, medical physics, and therapeutic applications. She has undergone rigorous academic training and professional development that has equipped her with expertise in diagnostic imaging, radiation dosimetry, nuclear medicine, and oncology physics. Through postgraduate specialization and continuous academic certifications, she has built a robust knowledge base that supports her leadership in both clinical and research environments. Her educational journey has been marked by both depth and interdisciplinary integration, enabling her to operate at the confluence of theory, application, and policy.

Experience:

Over the years, Prof. Almohammed has held significant academic and research roles in medical institutions, where she has contributed to curriculum design, radiation safety training, and the supervision of postgraduate research. She has worked collaboratively with esteemed institutions and professionals in Saudi Arabia, Malaysia, and Europe, demonstrating global competence. Her experience encompasses applied nuclear science, radiological assessments, radiation oncology procedures, and occupational risk evaluations. In clinical settings, she has participated in optimizing imaging protocols and implementing safe radiological practices. Her academic presence is further strengthened by conference presentations, workshops, and peer-review activities.

Research Interest:

Prof. Almohammed’s research interests center around radiation dose optimization, biological risk assessment in imaging and therapy, radiation safety protocols, and the application of artificial intelligence in diagnostic radiology. A core focus of her work involves evaluating patient and staff exposure in nuclear medicine and interventional radiology procedures, with the goal of minimizing risks and ensuring safety in clinical environments. Additionally, she is interested in the integration of machine learning models to predict and explain health risks, especially in oncology. Her interdisciplinary work spans education technology, radiological awareness, and digital transformation in medical training during public health emergencies.

Award:

Prof. Almohammed’s research achievements and contributions to radiation protection and patient safety in medical physics make her a strong contender for the Best Researcher Award. Her impact spans both scientific advancement and practical application, with notable involvement in AI-driven studies and risk assessment frameworks. Through multi-institutional collaborations and publication in international journals, she has demonstrated sustained academic excellence, leadership, and relevance to pressing healthcare issues. Her scholarship supports improved clinical standards and contributes directly to safer imaging and therapeutic practices, aligning well with the mission of honoring researchers with outstanding global contributions.

Publication:

  • Exploring the relationship between students’ learning satisfaction and self-efficacy during the emergency transition to remote learning amid the coronavirus pandemic: A cross … (2022, Education and Information Technologies) – cited by 147
  • Patient radiation biological risk in computed tomography angiography procedure (2017, Saudi Journal of Biological Sciences) – cited by 79
  • Anticancer activity of EA1 extracted from Equisetum arvense (2017, Pak. J. Pharm. Sci) – cited by 33
  • Assessment of occupational exposure and radiation risks in nuclear medicine departments (2020, Radiation Physics and Chemistry) – cited by 31
  • Estimation of cancer risks during mammography procedure in Saudi Arabia (2019, Saudi Journal of Biological Sciences) – cited by 25
  • The efficacy of machine learning models in lung cancer risk prediction with explainability (2024, PLOS ONE) – cited by 8
  • Artificial intelligence-based fuzzy logic systems for predicting radiation protection awareness levels among university population (2023, Radiation Physics and Chemistry) – cited by 6

Conclusion:

In summary, Prof. Huda Almohammed exemplifies the qualities of a dedicated and high-impact researcher in the domain of medical physics and radiation therapy. Her work addresses critical issues in radiation exposure, patient safety, and technological innovation in health sciences. With a consistent track record of research excellence, academic leadership, and multidisciplinary collaboration, she has significantly influenced both theoretical frameworks and clinical practices. Her evolving interests in AI applications and educational technology further demonstrate her forward-thinking approach. Prof. Almohammed’s achievements and continued commitment to research innovation make her an outstanding nominee for the Best Researcher Award, and her contributions stand to inspire future developments in global health and medical physics.