Hussam Noor | Engineering | Best Academic Researcher Award

Best Academic Researcher Award

Hussam Noor
Taibah University, Saudi Arabia

Hussam Noor
Affiliation Taibah University
Country Saudi Arabia
Scopus ID 57211204364
Documents 13
Citations 11
h-index 2
Subject Area Engineering
Event International PopularScientist Awards
ORCID 0000-0002-4223-9699

Hussam Noor is an academic researcher affiliated with Taibah University, Saudi Arabia, whose supplied research profile is associated with the Engineering subject area. The profile provided for this recognition page records 13 documents, 11 citations, and an h-index of 2 in Scopus. These indicators provide a bibliometric snapshot of research activity and scholarly visibility and should be interpreted in conjunction with publication quality, research contribution, collaboration, and relevance to the research field. [1]

Abstract

The Best Academic Researcher Award profile presents a structured overview of Hussam Noor’s supplied academic and bibliometric information. The researcher is affiliated with Taibah University in Saudi Arabia and is identified under the Engineering subject area. The available profile records 13 documents, 11 citations, and an h-index of 2. [1] The assessment context considers publication activity, scholarly visibility, research relevance, and documented academic contributions while recognizing that bibliometric indicators represent only selected dimensions of research performance.

Keywords

Hussam Noor; Best Academic Researcher Award; Taibah University; Engineering; academic research; scholarly publications; research impact; bibliometrics; Scopus; citations; h-index; International PopularScientist Awards.

Introduction

Academic researcher recognition commonly considers a combination of scholarly productivity, research contribution, visibility, and disciplinary relevance. Bibliometric information such as publication counts, citation counts, and h-index values can provide quantitative context for examining a research profile, although these measures vary substantially between disciplines and publication environments. [2]

Research Profile

The supplied Scopus profile information indicates a research record comprising 13 documents, 11 citations, and an h-index of 2. [1] These values describe the bibliometric record supplied for the researcher and should be understood as profile-level indicators rather than a complete assessment of academic quality.The profile also supplies an ORCID identifier, which provides a persistent researcher identifier intended to distinguish researchers and connect their scholarly activities across systems. [3]

Research Contributions

The supplied publication records cover several research themes, including biomedical materials, therapeutic technologies, laser-based treatment, nanomaterials, and photodynamic approaches. The records demonstrate interdisciplinary subject matter spanning materials science, medicine, dentistry-related applications, dermatology, chemistry, and laser technology. However, the available excerpts do not provide sufficient evidence to establish that every listed publication was authored by Hussam Noor. Accordingly, these records are retained as supplied bibliographic evidence and are not used to infer individual authorship.

Publications

The following bibliographic records were supplied for inclusion in this academic profile. They are reproduced as source records and are not presented as verified publications of Hussam Noor where the supplied contributor information does not establish that connection.“`

    1. Infantile hemangiomas. Current treatment procedures | Infantilní hemangiomas. Současné tělečné protředky.Czech-Slovak Pediatrics, 2017. Journal article.EID: 2-s2.0-85027991512Contributors: Malis, J.; Stara, V.; Blahova, K.; Bučkova, H.; Faberova, R.; Šterba, J.; Klovrzova, S.; Kynčl, M.; Černy, M.; Hrdlička, R. et al.Source: Roman Smucler via Scopus – Elsevier.
    2. Direct and indirect treatment of pain with lasers – Update 2016 | Direct and indirect treatment of pain with lasers – Update 2016.Disease, 2016. Journal article.EID: 2-s2.0-84992323214Contributors: Šmucler, R.; Jenčová, J.Source: Roman Smucler via Scopus – Elsevier.
    3. Large scale preparation of up-converting YF3:YbEr nanocrystals with various sizes by solvothermal syntheses using ionic liquid bmimCl.Journal of Fluorine Chemistry, 2016. Journal article.

Research Impact

The supplied bibliometric profile records 11 citations and an h-index of 2 across 13 documents. [1] Citation counts provide one measurable indication of scholarly visibility, while the h-index combines publication and citation information into a single metric. Such indicators are influenced by discipline, publication age, citation practices, collaboration patterns, and database coverage, and therefore should not be treated as a standalone measure of research quality. [2][4] [7] [8]

Award Suitability

The supplied profile contains several elements relevant to an academic recognition record, including an identifiable institutional affiliation, a Scopus author identifier, publication and citation indicators, an h-index, an Engineering subject classification, and an ORCID identifier. [1] [3]Within the context of the Best Academic Researcher Award, these documented elements can form part of a broader academic review. A complete evaluation should also consider the authenticity and attribution of publications, originality of research, methodological quality, relevance to the discipline, collaboration, scholarly contribution, and evidence of sustained research activity.

Conclusion

Hussam Noor’s supplied academic profile identifies Taibah University, Saudi Arabia, as the institutional affiliation and Engineering as the subject area. The supplied Scopus indicators record 13 documents, 11 citations, and an h-index of 2. [1] The profile also includes an ORCID identifier, providing an additional mechanism for researcher identification. [3]

References

    1. Elsevier. (n.d.). Scopus author details: Hussam Noor, Author ID 57211204364. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=57211204364
    2. Hirsch, J. E. (2005). An index to quantify an individual’s scientific research output. Proceedings of the National Academy of Sciences, 102(46), 16569–16572.
      https://doi.org/10.1073/pnas.0507655102
    3. ORCID. (n.d.). ORCID record: 0000-0002-4223-9699.
      https://orcid.org/0000-0002-4223-9699
    4. Hrib, J., Sirc, J., Lesny, P., Hobzova, R., Duskova-Smrckova, M., Michalek, J., & Smucler, R. (2017). Hydrogel tissue expanders for stomatology. Part I. Methacrylate-based polymers. Journal of Materials Science: Materials in Medicine.
      https://doi.org/10.1007/s10856-016-5818-y
    5. Bartůněk, V., Rak, J., Pelánková, B., Junková, J., Mezlíková, M., Král, V., Kuchař, M., Engstová, H., Ježek, P., & Šmucler, R. (2016). Large scale preparation of up-converting YF3:YbEr nanocrystals with various sizes by solvothermal syntheses using ionic liquid bmimCl. Journal of Fluorine Chemistry.
      https://doi.org/10.1016/j.jfluchem.2016.05.015
    6. Lippert, J., Šmucler, R., & Vlk, M. (2013). Fractional carbon dioxide laser improves nodular basal cell carcinoma treatment with photodynamic therapy with methyl 5-aminolevulinate. Dermatologic Surgery.
      https://doi.org/10.1111/dsu.12242

 

Jinming Liang | Engineering | Best Researcher Award

Mr. Jinming Liang | Engineering | Best Researcher Award

Nanjing University of Aeronautics and Astronautics | China

Mr. Jinming Liang is a dynamic early-career researcher whose work spans electrical impedance tomography, liquid–liquid phase separation, electrochemical impedance spectroscopy, and deep learning for biomedical sensing. His research focuses on developing innovative microscale and portable impedance-based diagnostic systems that enable real-time, high-resolution analysis of cellular behaviors and fluid phase transitions. He has contributed to the advancement of impedance technologies by designing systems capable of accurately monitoring biophysical processes, integrating microfabricated sensors with computational models, and exploring data-driven approaches for improved interpretation of complex impedance signals. His publications include studies on real-time phase separation analysis using electrochemical impedance methods and microscale impedance tomography techniques for detecting cell phase separation, highlighting his ability to translate engineering principles into practical tools for life-science applications. His broader scientific contributions also include work on summarizing progress in phase-separation detection methods as well as participation in patentable innovations related to microscale cell detection and imaging solutions. Through his interdisciplinary expertise, he aims to push the frontier of biomedical instrumentation by creating more compact, intelligent, and accessible sensing platforms that support early diagnosis, mechanistic studies, and precision medicine.

Profile: Orcid

Featured Publications

Liang, J., Zhao, W., Liu, K., Sun, B., Zhu, C., & Yao, J. (2025). Real-time analysis of liquid–liquid phase separation with electrochemical impedance spectroscopy. Microchemical Journal, 116076.

Liang, J., Gao, B., Liu, K., Chai, X., Ji, J., Sun, B., & Yao, J. (2025). Microscale electrical impedance tomography method for cell phase separation detection. IEEE Nanotechnology Magazine.

RISHITEJ CHAPARALA | Engineering | Best Researcher Award

Mr. RISHITEJ CHAPARALA | Engineering | Best Researcher Award

Assistant professor Pragati engineering college India

👨‍🎓 Rishitej Chaparala is an Assistant Professor and Ph.D. candidate in Electronics and Communication Engineering (ECE) at SRM University AP. With 6.5 years of teaching experience, he has been an integral part of institutions like TKR College of Engineering, BVC Engineering College, and Kallam Harnadhreddy Institute of Tech & Engineering. Rishitej’s primary research interest lies in plasmonic waveguide and antenna design, spanning the RF to THz spectrum. He is an active member of OPTICA, IEEE, and IETE and has filed multiple patents in the field of sensor systems.

Profile

Scopus

Google scholar

Education 🎓

Rishitej holds a Ph.D. (Full-time) in ECE from SRM University AP, with his synopsis submitted in October 2024. He completed his M.Tech in VLSI Design from Sasi Institute of Technology and Engineering (2013-2016) and B.E. in ECE from GGR College of Engineering, Vellore, in 2011.

Experience 💼

With over 6.5 years in teaching and 3 years in research, Rishitej has held positions in institutions like TKR College of Engineering, BVC Engineering College, Dhanekula Institute of Engineering & Tech, and currently at Pragati Engineering College, Rajahmundry. He has also worked as a Quality Analyst at SERCO Pvt Ltd for a year.

Research Interests 🔬

His research focuses on Plasmonic Waveguide/Antenna Design across the RF to THz spectrum. He explores the enhancement of spoof surface plasmon polariton (SSPP) waveguides and their applications in sensor-based technologies, including glucose detection for medical diagnostics and dielectric constant measurement for material analysis.

Awards 🏆

Rishitej’s work has been recognized at national and international platforms. His research on SSPP waveguides has earned him multiple accolades in conferences and journals. Notable recognitions include contributions to IEEE Sensors Journal, Optical Engineering, and Progress in Electromagnetics Research M.

Publications Top Notes: 📚

Chaparala, R., Shaik Imamvali, & Sreenivasulu Tupakula. “Enhancement of spoof surface plasmon polariton waveguide performance through modified groove width.” Optical Engineering, 63.5 (2024): 055102-055102. DOI: 10.1117/1.OE.63.5.055102

Chaparala, R., Shaik Imamvali, & Sreenivasulu Tupakula. “Spoof surface plasmon polaritons based feeder for a dielectric rod antenna at microwave frequencies.” Progress in Electromagnetics Research M, Vol. 129, 23-32, 2024.

Chaparala, R., et al. “Optimization of Dielectric Rod Antenna Performance Using Spoof Surface Plasmon Polaritons.” Sensors MDPI (Accepted, IF: 3.4).

Imamvali, S., Chaparala, R., Tupakula, S. “Spoof surface plasmon polaritons based detection of glucose in blood phantom for medical diagnosis.” IEEE Sensors Journal (2024, IF: 4.3).

Kolli, V. R., Chaparala, R., Tupakula, S., & Talabattula, S. “A high-sensitive integrated optic serially coupled racetrack ring resonator based pressure sensor.” Optical Materials (2024, Q1, IF: 3.1).