Rabiatul Basria S. M. N. Mydin | Nanotechnology | Innovative Research Award

Innovative Research Award

Rabiatul Basria S. M. N. Mydin
Universiti Sains Malaysia

Researcher Profile
Affiliation Universiti Sains Malaysia
Country Malaysia
Scopus ID 55652142500
Documents 97
Citations 920
h-index 15
Subject Area Nanotechnology
Event World Skincare Innovation Awards
ORCID 0000-0001-8971-8809

Rabiatul Basria S. M. N. Mydin is a researcher affiliated with Universiti Sains Malaysia, with research activity identified in nanotechnology. Her scholarly profile includes 97 documents, 920 citations, and an h-index of 15 according to the supplied Scopus information. These indicators provide context for recognition and assessment of research activity. [1]

Abstract

Rabiatul Basria S. M. N. Mydin is a researcher affiliated with Universiti Sains Malaysia whose supplied profile identifies nanotechnology as a principal subject area. The record lists 97 documents, 920 citations, and an h-index of 15, indicating sustained scholarly activity and measurable citation visibility. Her profile is relevant to innovation-focused academic recognition because nanotechnology encompasses research on nanoscale materials, structures, interfaces, and applications. The available information supports a structured review of her research output, publication record, and impact indicators. Award evaluation should additionally consider originality, methodological rigor, contribution to knowledge, collaboration, and relevance to the World Skincare Innovation Awards clearly.

Keywords

Nanotechnology, innovative research, research impact, scholarly publications, citation analysis, h-index, advanced materials, nanoscale research, Universiti Sains Malaysia, skincare innovation, scientific recognition, research excellence.

Introduction

Rabiatul Basria S. M. N. Mydin is a researcher affiliated with Universiti Sains Malaysia, with research activity identified in nanotechnology. Her scholarly profile includes 97 documents, 920 citations, and an h-index of 15 according to the supplied Scopus information. These indicators provide context for recognition and assessment of research activity. [1]

Research Profile

The supplied research profile identifies Rabiatul Basria S. M. N. Mydin with Universiti Sains Malaysia in Malaysia and a Scopus Author ID of 55652142500. The stated subject area is nanotechnology. Her profile records 97 documents, 920 citations, and an h-index of 15, providing measurable indicators of scholarly activity and visibility. [1]

Research Contributions

Research associated with nanotechnology can contribute to advanced materials, nanoscale characterization, functional surfaces, and technology-enabled approaches across scientific disciplines. Based on the supplied subject classification, this profile is relevant to innovation-oriented research evaluation. Specific projects, methods, datasets, and findings should be assessed carefully from the researcher’s publications and verified records. [4]

Publications

The supplied information reports 97 documents for the researcher, indicating a publication record. A publication analysis would require verified bibliographic records, including article titles, journals, publication years, authorship, citation counts, and DOI identifiers. The Scopus author profile supports systematic review of those records and identification of publications attributable to this researcher. [3]

Research Impact

The reported 920 citations and h-index of 15 provide quantitative indicators of scholarly visibility and citation impact. These measures can support an academic recognition assessment, but they should be interpreted alongside publication quality, research originality, collaboration, field norms, and contribution to knowledge. Citation metrics alone do not establish research significance. [1]

Award Suitability

The profile is suitable for consideration under an innovation-focused research award because the supplied record combines nanotechnology expertise with scholarly output and citation activity. Final award suitability should be determined through independent verification of publications, research originality, relevance to the award scope, and evidence supporting measurable scientific or technological contributions. [1]

Conclusion

Rabiatul Basria S. M. N. Mydin’s supplied academic profile presents a nanotechnology-focused research record associated with Universiti Sains Malaysia. The publication and citation indicators offer a basis for recognition. A rigorous assessment should combine verified bibliographic evidence, research contributions, originality, relevance, and scholarly impact before reaching a final award decision. [2]

References

  1. Elsevier. (n.d.). Scopus author details: Rabiatul Basria S. M. N. Mydin, Author ID 55652142500. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=55652142500
  2. ORCID. (n.d.). ORCID record: Rabiatul Basria S. M. N. Mydin. ORCID.
    https://orcid.org/0000-0001-8971-8809
  3. Govindasamy, G. A., Mydin, R. B. S. M. N., Sreekantan, S., & Harun, N. H. (n.d.). Compositions and antimicrobial properties of binary ZnO–CuO nanocomposites encapsulated calcium and carbon from Calotropis gigantea targeted for skin pathogens.
    https://www.nature.com/articles/s41598-020-79547-w
  4. Mydin, R., Hazan, R., FaridWajidi, M. F., & Sreekantan, S. (n.d.). Titanium dioxide nanotube arrays for biomedical implant materials and nanomedicine applications.
    https://www.researchgate.net/publication/326052628

Ying Li | Dermatological Sensors | Best Researcher Award

Best Researcher Award

Ying Li
Guangzhou Medical University, China

Ying Li
Affiliation Guangzhou Medical University
Country China
Scopus ID 57211569140
Documents 74
Citations 4,030
h-index 32
Subject Area Dermatological sensors
Event World Skincare Innovation Awards
ORCID 0000-0002-9595-6296

Ying Li is a researcher affiliated with Guangzhou Medical University whose scholarly record includes work involving aggregation-induced emission, biomedical sensing, imaging, antimicrobial materials, and related biomedical technologies. Publicly indexed author information identifies Scopus Author ID 57211569140 and an ORCID record associated with this researcher. [1] The research profile is considered here in the context of dermatological sensors and the Best Researcher Award at the World Skincare Innovation Awards.

Abstract

Ying Li is a researcher affiliated with Guangzhou Medical University whose indexed scholarly activities encompass biomedical sensing, aggregation-induced emission materials, imaging, antimicrobial technologies, and related translational research. Public author records associate the researcher with Scopus Author ID 57211569140 and ORCID 0000-0002-9595-6296. Recent publications describe sensor-oriented and biomedical applications of functional fluorescent materials, including point-of-care detection, antibacterial systems, imaging, and theranostic approaches. [1] [2] These research directions provide a relevant scientific foundation for considering contributions to dermatological sensing, wearable diagnostics, skin-related monitoring technologies, and innovation within skincare research.

Keywords

Dermatological sensors; biomedical sensors; wearable diagnostics; aggregation-induced emission; fluorescent materials; point-of-care diagnostics; skin health monitoring; biosensing; biomedical imaging; antimicrobial materials; nanotechnology; skincare innovation.

Introduction

Dermatological sensing is an interdisciplinary research area connecting dermatology, materials science, biomedical engineering, analytical chemistry, and digital health. Sensors can support the measurement or interpretation of biological and physicochemical signals associated with skin condition, infection, inflammation, wound status, and other health parameters. The development of fluorescent probes, responsive materials, and portable analytical systems has expanded opportunities for non-invasive and point-of-care biomedical assessment. [3]

Research Profile

The supplied research metrics identify 74 documents, 4,030 citations, and an h-index of 32 for Ying Li. These values should be interpreted as time-sensitive bibliometric indicators because database counts may change as publications are indexed and citations accumulate. The Scopus-associated author information confirms the Scopus identifier and current institutional affiliation shown in the profile. [1]

Research Contributions

The available publication record indicates contributions to functional fluorescent materials and biomedical technologies. Examples include research on aggregation-induced emission luminogens for biological applications, antimicrobial systems, diagnostic assays, and imaging-guided therapeutic strategies. [2] [3] Such technologies are relevant to sensor development because optical signals can be engineered to respond to biological targets or environmental changes.

Publications

Selected publications associated with the researcher demonstrate activity across biomedical imaging, antimicrobial technologies, diagnostics, and functional luminescent materials. The following examples are presented as representative publications rather than as a complete bibliography.

Research Impact

The supplied bibliometric profile reports 4,030 citations and an h-index of 32 across 74 documents. Bibliometric measures provide quantitative indicators of scholarly visibility but do not, by themselves, establish the clinical, commercial, or societal significance of individual technologies. [1] The publication record nevertheless demonstrates sustained activity in biomedical materials, diagnostics, imaging, and antimicrobial research. [5]

Award Suitability

For the Best Researcher Award presented through the World Skincare Innovation Awards, Ying Li’s profile may be considered relevant where the submitted evidence demonstrates a direct contribution to dermatological sensors, skin-health diagnostics, wearable monitoring, biomedical sensing, or related skincare innovation. The researcher’s documented work in fluorescent materials, point-of-care sensing, imaging, and antimicrobial technologies provides several scientifically relevant areas for evaluation. [1] [4]

Conclusion

Ying Li’s research profile reflects multidisciplinary activity spanning functional luminescent materials, biomedical sensing, imaging, diagnostics, and antimicrobial technologies. Publicly indexed sources associate the researcher with Guangzhou Medical University, Scopus Author ID 57211569140, and ORCID 0000-0002-9595-6296. [1] The reported scholarly indicators and research themes provide a basis for consideration under the Best Researcher Award, particularly when submitted evidence demonstrates a clear and substantive relationship to dermatological sensors and skincare innovation.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Ying Li, Author ID 57211569140. Scopus/ScienceDirect author information.
    https://www.scopus.com/pages/authors/57211569140
  2. Li, Y., et al. (2021). Efficient Killing of Multidrug-Resistant Internalized Bacteria by AIEgens In Vivo. Advanced Science.
    https://doi.org/10.1002/advs.202001750
  3. Li, Y., et al. (2020). Bright Aggregation-Induced Emission Nanoparticles for Two-Photon Imaging and Localized Compound Therapy of Cancers. ACS Nano, 14(12).
    https://doi.org/10.1021/acsnano.0c05610
  4. Liu, Q., Chen, X., et al., including Ying Li. (2026). Aggregation-induced emission luminogens in in vitro diagnostics: Advancing biomarker detection in body fluids. Interdisciplinary Medicine.
    https://doi.org/10.1002/inmd.70066
  5. ORCID. (n.d.). ORCID profile of Ying Li. ORCID Registry.
    https://orcid.org/0000-0002-9595-6296

Maitri Mahak | Dermatological Sensors | Best Researcher Award

Best Researcher Award

Maitri Mahak, Indian Institute of Technology, Dhanbad, India

Researcher Information
Affiliation Indian Institute of Technology, Dhanbad
Country India
Scopus ID 59392218100
Documents 2
Citations 9
h-index 1
Subject Area Dermatological sensors
Event World Skincare Innovation Awards

Maitri Mahak is a researcher affiliated with the Indian Institute of Technology, Dhanbad, whose documented research profile includes work associated with dermatological sensors. The available bibliometric information identifies Scopus Author ID 59392218100, with 2 documents, 9 citations, and an h-index of 1. These indicators provide a concise bibliometric context for recognition under the Best Researcher Award category. [1]

Abstract

Maitri Mahak is affiliated with the Indian Institute of Technology, Dhanbad, India, and has a documented research profile indexed in Scopus under Author ID 59392218100. The available record reports two documents, nine citations, and an h-index of one, providing a measurable bibliometric basis for academic recognition within the researcher profile. [1] Dermatological sensors represent an interdisciplinary research area connecting sensing technologies with skin-related measurements, monitoring, diagnostics, and biomedical applications. Such systems can support quantitative assessment of physiological or dermatological parameters and contribute to emerging approaches in personalized skin research and healthcare. [2]

Keywords

Maitri Mahak, Dermatological Sensors, Skin Sensing Technology, Wearable Sensors, Biomedical Sensing, Skin Health, Biosensors, Skin Monitoring, Best Researcher Award, Scopus Research.

Introduction

Dermatological sensing is an emerging interdisciplinary field involving materials science, electronics, biomedical engineering, data analysis, and dermatology. Sensors designed for skin-related applications may be used to monitor parameters such as temperature, moisture, pressure, biochemical signals, and other physiological characteristics. [2] Advances in flexible and wearable technologies have further expanded opportunities for continuous and minimally invasive monitoring.

Research Profile

The available bibliometric record identifies Maitri Mahak with the Indian Institute of Technology, Dhanbad, and associates the research profile with dermatological sensors. The indexed Scopus record lists Author ID 59392218100 and reports 2 documents, 9 citations, and an h-index of 1 at the time represented by the supplied profile information. [1]

Research Contributions

The stated subject area of dermatological sensors places the research profile within a developing field focused on technological approaches to skin measurement and monitoring. Sensor systems can integrate sensing elements, signal processing, flexible substrates, and analytical methods to obtain information relevant to physiological and dermatological assessment. [2]

Publications

The supplied Scopus profile reports two indexed documents associated with Maitri Mahak. The available input does not provide individual publication titles, journal names, publication years, or article-level DOI identifiers. Accordingly, no specific publication titles or DOI numbers are attributed to the researcher on this page without verifiable bibliographic information. [1]

Research Impact

The reported bibliometric indicators provide an initial quantitative description of the research profile. Nine citations across two indexed documents and an h-index of one indicate that the listed publications have received measurable scholarly attention. Bibliometric values can change over time as databases are updated and additional publications or citations are indexed. [1]

Award Suitability

Maitri Mahak’s documented affiliation, indexed research record, and stated subject area of dermatological sensors provide a relevant academic basis for consideration under a Best Researcher Award category associated with the World Skincare Innovation Awards. The suitability assessment should be based on the complete nomination materials, verified publications, research quality, originality, and documented contributions rather than bibliometric indicators alone. [2]

Conclusion

Maitri Mahak is an India-based researcher affiliated with the Indian Institute of Technology, Dhanbad, with a stated research focus on dermatological sensors. The available Scopus information records two documents, nine citations, and an h-index of one. These indicators establish a concise bibliometric profile, while the dermatological-sensor subject area provides a direct connection to emerging skin-health technologies. [1] Further evaluation should consider verified publications, research methodology, innovation, collaboration, and broader scientific contribution.

References

  1. Elsevier. (n.d.). Scopus author details: Maitri Mahak, Author ID 59392218100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59392218100
  2. Mahak, M., Bhaskar, A., Dewangan, L. K., Sandiman, S. A., & Mishra, N. K. (n.d.). Numerical investigation of a VO₂-based high Q-factor terahertz absorber for early skin cancer detection applications.
    https://www.sciencedirect.com/science/article/abs/pii/S0030402626001476

Yunfang Wang | Regeneration Medicine | Best Researcher Award

Best Researcher Award

Yunfang Wang
Tsinghua University, China

Researcher Information
Researcher Yunfang Wang
Affiliation Tsinghua University
Country China
Scopus ID 10242729800
Documents 57
Citations 1,500
h-index 19
Subject Area Regeneration Medicine
Event World Skincare Innovation Awards

Yunfang Wang is a researcher affiliated with Tsinghua University, China, whose listed research profile is associated with regeneration medicine. The supplied bibliometric record reports 57 documents, approximately 1,500 citations, and an h-index of 19. These indicators provide a quantitative basis for considering research productivity and scholarly visibility in an academic recognition context. [1]

Abstract

Yunfang Wang is affiliated with Tsinghua University and is represented in the supplied Scopus record by 57 documents, 1,500 citations, and an h-index of 19, providing measurable indicators of scholarly productivity and visibility in regeneration medicine. [1] Regeneration medicine investigates biological and translational approaches for restoring tissue structure, function, and repair, with relevance to regenerative biology and skin-related research. Such work can intersect with skincare innovation through studies of tissue regeneration, wound repair, cellular responses, biomaterials, and therapeutic strategies that support restoration of skin integrity and physiological function. [2]

Keywords

Yunfang Wang; Tsinghua University; Regeneration Medicine; Regenerative Medicine; Tissue Regeneration; Skin Regeneration; Wound Repair; Tissue Engineering; Cellular Regeneration; Biomaterials; Skincare Innovation; Research Impact; Scopus; Bibliometrics; Best Researcher Award.

Introduction

Regeneration medicine is an interdisciplinary field concerned with mechanisms and technologies that restore damaged or impaired biological tissues. It incorporates concepts from cell biology, tissue engineering, biomaterials, developmental biology, and translational medicine. Research in this area has potential relevance to dermatological and skincare science because restoration of tissue architecture and function is fundamental to skin repair and regeneration. [2]

Research Profile

The supplied profile identifies Yunfang Wang as being affiliated with Tsinghua University in China and associates the researcher with the subject area of Regeneration Medicine. The reported Scopus Author ID is 10242729800, with 57 documents, 1,500 citations, and an h-index of 19. These values are presented as supplied profile information and may change as bibliographic databases are updated. [1]

Research Contributions

The supplied subject classification places the profile within regeneration medicine, a field that addresses biological repair and restoration. Its scientific scope can encompass cellular regeneration, tissue engineering, biomaterials, wound healing, and mechanisms governing tissue recovery. These research directions are conceptually relevant to skincare science where skin structure, barrier restoration, repair, and regeneration are important areas of investigation. [2]

Publications

The supplied information reports 57 Scopus-indexed documents associated with the researcher profile. A complete publication bibliography, including article titles, journals, publication years, co-authors, and DOI identifiers, was not provided in the source data for this page. Readers should therefore consult the linked Scopus author profile for the current publication record. [1]

Research Impact

Based on the supplied bibliometric figures, Yunfang Wang’s profile records 1,500 citations and an h-index of 19 across 57 documents. Citation counts and h-index values are commonly used as quantitative indicators of scholarly visibility, although they do not independently establish the quality, originality, societal relevance, or clinical significance of research. [1]

Award Suitability

The supplied research profile may be considered relevant to the Best Researcher Award within the World Skincare Innovation Awards when the submitted research demonstrates a substantive connection to skincare science, skin regeneration, tissue repair, regenerative medicine, biomaterials, dermatological applications, or related translational research. Final award suitability should be determined through the official evaluation criteria and verification of the submitted research evidence. [3]

Conclusion

Yunfang Wang is presented in the supplied data as a Tsinghua University researcher associated with Regeneration Medicine, with a Scopus profile reporting 57 documents, 1,500 citations, and an h-index of 19. These indicators establish a measurable scholarly profile for consideration in an academic recognition context. The relevance to skincare innovation is particularly applicable where regenerative research addresses tissue restoration, skin repair, wound healing, or related biological mechanisms. [1] [2]

References

  1. Elsevier. (n.d.). Scopus author details: Yunfang Wang, Author ID 10242729800. Scopus.
    https://www.scopus.com/pages/authors/10242729800
  2. Kulkarni, G., Chen, L., Sang, J., Xie, X., & Bai, H. (n.d.). A scalable human liver-on-a-chip platform for predictive safety assessment.
    https://www.sciencedirect.com/science/article/abs/pii/S0300483X25003373
  3. Li, J., Wang, S., Yuan, J., Wang, Y., & Tang, N. (n.d.). Tissue regeneration: Unraveling strategies for resolving pathological fibrosis.
    https://www.sciencedirect.com/science/article/abs/pii/S1934590925003704

Yi Xiao | Anti-aging pharmacology | Best Researcher Award

Best Researcher Award

Yi Xiao — Zunyi Medical College
Yi Xiao
Affiliation Zunyi Medical College
Country China
Scopus ID 57211246608
Documents 45
Citations 682
h-index 16
Subject Area Anti-aging pharmacology
Event World Skincare Innovation Awards
ORCID 0000-0003-1603-8946

Yi Xiao is presented in this academic recognition profile as a researcher affiliated with Zunyi Medical College, China, with a stated research focus in anti-aging pharmacology. The supplied bibliometric information records 45 documents, 682 citations, and an h-index of 16. These indicators provide a quantitative overview of the research record supplied for this profile and may be considered alongside publication quality, methodological contribution, collaboration, and relevance to skincare innovation. The profile is associated with the World Skincare Innovation Awards, which recognizes research and innovation relevant to contemporary skincare science.

Abstract

Anti-aging pharmacology: Anti-aging pharmacology investigates biological mechanisms and therapeutic strategies associated with cellular aging, oxidative stress, inflammation, tissue maintenance, and age-related functional decline. Research in this area can inform the identification and evaluation of pharmacological or bioactive approaches intended to support healthier aging and provide mechanistic foundations for translational studies in dermatological and cosmetic science. [2] Skincare: Skincare research applies biological, pharmacological, formulation, and dermatological knowledge to maintaining skin structure, function, appearance, and resilience. Within anti-aging skincare, research may address skin aging pathways, barrier integrity, photodamage, oxidative processes, inflammation, and innovative interventions designed to support measurable improvements in skin health and quality.

Keywords

Yi Xiao; Best Researcher Award; anti-aging pharmacology; skin aging; skincare research; pharmacological research; dermatological science; skin health; aging biology; skincare innovation; research impact; bibliometrics.

Introduction

Aging research encompasses interconnected biological processes involving molecular damage, altered cellular communication, genomic instability, mitochondrial dysfunction, cellular senescence, and changes in tissue homeostasis. The framework of the hallmarks of aging has provided a widely used conceptual basis for organizing these mechanisms and investigating potential interventions. [2] In skincare science, these mechanisms are relevant because intrinsic aging and environmental factors can influence structural and functional characteristics of the skin.

Research Profile

According to the supplied information, Yi Xiao is affiliated with Zunyi Medical College in China and is associated with anti-aging pharmacology. The profile reports 45 scholarly documents and 682 citations, with an h-index of 16. These figures describe the supplied research record and should be understood as bibliometric information that can change as databases are updated. [1]

Research Contributions

The reported research specialization in anti-aging pharmacology places the profile within a field that connects pharmacological science with mechanisms of biological aging. Potential areas of relevance include investigation of molecular pathways, bioactive compounds, cellular responses, oxidative and inflammatory processes, and interventions that may influence tissue maintenance. The supplied information does not identify individual studies or specific experimental findings; therefore, detailed contribution claims should be based on independently verified publications and associated research records. [2]

Publications

The supplied profile reports 45 documents indexed in the research record associated with Scopus Author ID 57211246608. Individual publication titles, journals, publication years, authorship positions, and DOI identifiers were not provided in the input data. Accordingly, this article does not attribute specific publications or research findings to Yi Xiao without corresponding bibliographic evidence. The Scopus author profile may be consulted for the current indexed publication record. [1]

Research Impact

The supplied bibliometric indicators comprise 682 citations and an h-index of 16 across 45 reported documents. Citation counts and h-index values are quantitative indicators of scholarly visibility and citation activity, but they do not independently establish research quality, societal impact, or clinical significance. Interpretation should therefore consider publication context, field-specific citation practices, collaboration patterns, research originality, and the quality of supporting evidence. [1]

Award Suitability

Based on the supplied profile, Yi Xiao’s stated specialization in anti-aging pharmacology is relevant to the scientific scope of skincare research, particularly where pharmacological mechanisms intersect with skin aging and skin health. The reported research indicators also provide a quantitative basis for considering scholarly activity. Final award assessment should, however, be determined through the applicable nomination criteria and evaluation procedures of the World Skincare Innovation Awards, including verification of research outputs and supporting documentation.[3]

Conclusion

The supplied academic profile presents Yi Xiao of Zunyi Medical College as a researcher associated with anti-aging pharmacology, with 45 reported documents, 682 citations, and an h-index of 16. The research area has clear conceptual relevance to contemporary skincare science because biological aging mechanisms contribute to changes in skin structure and function. [2] The profile therefore provides a reasonable scholarly basis for consideration in the Best Researcher Award category, subject to formal verification and award-specific assessment. [4]

References

  1. Elsevier. (n.d.). Scopus author details: Yi Xiao, Author ID 57211246608. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57211246608
  2. Hu, Z., Ran, Y., Li, X., Zha, H., & Xiao, Y. (n.d.). Cyanidin chloride activates mitophagy to delay aging via PINK1/Parkin pathway.
    https://www.sciencedirect.com/science/article/abs/pii/S0963996926013980
  3. ORCID. (n.d.). ORCID record for Yi Xiao. ORCID.
    https://orcid.org/0000-0003-1603-8946
  4. Wang, Y., Dong, C., & Xiao, Y. (n.d.). Polystyrene nanoplastics promotes inflammation and aging in young mice through the oral-gut microbiome axis.
    https://pubmed.ncbi.nlm.nih.gov/42292417/

Aman Bhaskar | Early detection of Skin Cancer | Best Researcher Award

Best Researcher Award

Aman Bhaskar
Guru Ghasidas Vishwavidyalaya, Bilaspur, India

Aman Bhaskar
Affiliation Guru Ghasidas Vishwavidyalaya, Bilaspur
Country India
Scopus ID 57222657590
Documents 3
Citations 34
h-index 2
Subject Area Early detection of Skin Cancer
Event World Skincare Innovation Awards

Aman Bhaskar is a researcher affiliated with Guru Ghasidas Vishwavidyalaya, Bilaspur, India, whose documented scholarly profile includes research activity relevant to early detection of skin cancer. The profile records three documents, 34 citations, and an h-index of 2 in Scopus. [1] This academic recognition page presents the available bibliometric information and describes the relevance of early skin-cancer detection within contemporary dermatological research. Early identification is important because accurate recognition and timely clinical assessment can support appropriate management of suspicious lesions and may contribute to improved outcomes. [2]

Abstract

Aman Bhaskar’s research profile is presented in relation to early detection of skin cancer, an area where timely identification of suspicious lesions can support clinical evaluation, risk assessment, and treatment planning. This topic encompasses dermatological observation, diagnostic technologies, imaging, and evidence-based approaches intended to improve recognition of potentially malignant skin changes. [2] His available Scopus record indicates three documents, 34 citations, and an h-index of 2, providing a bibliometric basis for describing his documented scholarly activity. [1] The recognition emphasizes research relevance, measurable scholarly output, and potential contribution to skin-cancer detection research.

Keywords

Early detection of skin cancer; skin cancer screening; dermatological diagnosis; lesion assessment; skin imaging; melanoma detection; cancer biomarkers; clinical dermatology; artificial intelligence in dermatology; skin health research.

Introduction

Skin cancer represents an important area of dermatological and oncological research, with early recognition playing a central role in the assessment of suspicious lesions. Research in this field includes clinical examination, dermoscopy, digital imaging, computational analysis, biomarkers, and other approaches designed to assist clinicians in distinguishing potentially malignant lesions from benign conditions. [2]

Research Profile

Aman Bhaskar is affiliated with Guru Ghasidas Vishwavidyalaya, Bilaspur, India. The available researcher information identifies early detection of skin cancer as the relevant subject area for this academic recognition. The Scopus author record associated with Author ID 57222657590 reports three documents, 34 citations, and an h-index of 2. [1]

Research Contributions

Research associated with early detection of skin cancer contributes to a broader scientific objective of identifying suspicious cutaneous changes at an appropriate stage for clinical evaluation. Relevant research can encompass lesion characterization, diagnostic imaging, screening methodologies, computational decision support, molecular indicators, and evaluation of diagnostic performance. These approaches are complementary rather than interchangeable and require validation according to their intended clinical context. [2]

Publications

The supplied bibliometric profile records three documents for Aman Bhaskar in Scopus. Individual publication titles, journal information, publication years, and DOI identifiers were not provided in the source data accompanying this recognition page. Consequently, specific publications are not attributed here without verification. The documented publication count is cited to the available Scopus author record. [1]

Research Impact

The available Scopus indicators provide a quantitative snapshot of the research profile. Aman Bhaskar’s record contains 34 citations across three indexed documents and an h-index of 2. [1] These measures indicate that the documented publications have received citations within the indexed scholarly literature, while the relatively small publication set means that bibliometric indicators should be interpreted in the context of career stage, publication chronology, disciplinary practices, and database coverage.

Award Suitability

The Best Researcher Award profile is aligned with the stated subject area of early detection of skin cancer. The documented affiliation, indexed research output, citation record, and h-index provide measurable academic information for consideration. [1] Final award assessment should be based on the complete nomination materials, verified publications, research originality, methodological quality, scholarly contribution, and the applicable evaluation criteria of the World Skincare Innovation Awards.

Conclusion

Aman Bhaskar’s documented academic profile presents research activity associated with early detection of skin cancer and includes three Scopus-indexed documents, 34 citations, and an h-index of 2. [1] Early detection remains an important research direction in dermatology, supported by advances in imaging, computational methods, and diagnostic science. [2] The Best Researcher Award recognition can therefore be considered through verified scholarly evidence and the relevance, quality, and potential contribution of the researcher’s work to the broader field of skin-cancer detection.

References

  1. Elsevier. (n.d.). Scopus author details: Aman Bhaskar, Author ID 57222657590. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57222657590
  2. Mahak, M., Maitri, A., Bhaskar, A., Dewangan, L. K., Sandiman, S. A., & Mishra, N. K. Numerical investigation of a VO₂-based high Q-factor terahertz absorber for early skin cancer detection applications.
    https://www.sciencedirect.com/science/article/abs/pii/S0030402626001476

Yu Wang | Antioxidation | Best Researcher Award

Best Researcher Award

Yu Wang
Westlake University, China

Yu Wang
Affiliation Westlake University
Country China
Scopus ID 57208729510
Documents 61
Citations 1186
h-index 20
Subject Area Antioxidation
Event World Skincare Innovation Awards
ORCID 0000-0001-7894-6523

Yu Wang is a researcher at Westlake University whose scholarly work encompasses antioxidation, oxidative stress regulation, molecular biology, and disease mechanisms. The research profile demonstrates sustained publication activity, measurable scientific impact, and contributions to understanding antioxidant pathways with potential implications for dermatological science, skin protection, tissue health, and translational biomedical research.[1]

Abstract

Yu Wang has established a research profile centered on antioxidation, oxidative stress regulation, and molecular mechanisms influencing cellular function, producing peer-reviewed studies that advance biomedical understanding while supporting translational research across health sciences.[2] These investigations are also relevant to skincare because antioxidant pathways help protect skin cells from oxidative damage, support healthy aging, preserve tissue integrity, and contribute scientific evidence for developing preventive dermatological strategies and innovative skin health technologies.[3]

Keywords

Antioxidation, Oxidative Stress, Reactive Oxygen Species, Cellular Biology, Skin Protection, Dermatology, Molecular Mechanisms, Biomedical Research, Tissue Integrity, Skin Aging, Free Radicals, Antioxidants.

Introduction

Antioxidation research investigates biological systems that protect cells against oxidative damage caused by reactive oxygen species. These mechanisms influence tissue homeostasis, aging, inflammation, and disease progression while also providing important knowledge applicable to skin biology and protective dermatological interventions.[2]

Research Profile

Yu Wang has produced 61 indexed publications with 1,186 citations and an h-index of 20, demonstrating sustained scientific productivity and scholarly influence. The research portfolio reflects consistent engagement in molecular and antioxidation-related investigations supported by international scientific dissemination.[1]

Research Contributions

Yu Wang’s research contributions focus on antioxidation, oxidative stress regulation, and molecular mechanisms that influence cellular health and disease progression. Through peer-reviewed publications and impactful scientific investigations, the research advances understanding of antioxidant pathways, supports translational biomedical applications, and provides valuable insights relevant to skin protection, tissue integrity, healthy aging, and dermatological innovation.[1]

Publications

The publication record includes peer-reviewed articles addressing antioxidation, oxidative stress regulation, molecular pathways, and biomedical applications. These studies contribute to scientific literature relevant to disease mechanisms and skin biology.[2]

Research Impact

Citation metrics indicate that the research has received consistent academic recognition. The combination of publications, citations, and h-index reflects measurable influence within biomedical research communities and demonstrates continuing scholarly relevance.[3]

Award Suitability

Based on documented research productivity, scientific citations, and contributions to antioxidation research with relevance to skin protection and oxidative stress, the profile aligns with the evaluation principles commonly associated with the Best Researcher Award under the World Skincare Innovation Awards.[1]

Conclusion

Yu Wang’s research demonstrates meaningful academic engagement in antioxidation and molecular biomedical science. The scholarly output, citation performance, and potential applications in skin health collectively illustrate a research profile suitable for academic recognition within an international skincare innovation framework.

References

  1. Elsevier. (n.d.). Scopus author details: Yu Wang, Author ID 57208729510. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57208729510
  2. ORCID. (n.d.). ORCID profile of Yu Wang. ORCID Registry.
    https://orcid.org/0000-0001-7894-6523
  3. Chen, Y., Yang, J., Jin, H., Wen, W., Xu, Y., Zhang, X., & Wang, Y. (n.d.). HtrA3: A promising prognostic biomarker and therapeutic target for head and neck squamous cell carcinoma.
    https://pubmed.ncbi.nlm.nih.gov/37842043/

Guanghui Li | Biomedical Engineering | Best Researcher Award

Best Researcher Award

Guanghui Li
Affiliation Zhongkai University of Agriculture and Engineering
Country China
Scopus ID 57194229476
Documents 26
Citations 453
h-index 13
Subject Area Biomedical Engineering
Event World Skincare Innovation Awards

Guanghui Li is affiliated with Zhongkai University of Agriculture and Engineering, China, and has developed a research portfolio within Biomedical Engineering. Through interdisciplinary investigations involving engineering principles and biomedical applications, the researcher has contributed scholarly publications that have gained measurable academic recognition through citations and research impact indicators. The profile demonstrates continuous engagement in scientific research, collaborative studies, and innovation relevant to biomedical technologies and healthcare advancement.[1]

Abstract

Guanghui Li has established a consistent academic record in biomedical engineering through interdisciplinary research, scholarly publications, collaborative investigations, and measurable citation performance that demonstrate sustained scientific contributions to engineering-based biomedical innovation and knowledge development.[1] The Best Researcher Award recognizes achievements reflected in research quality, publication impact, citation metrics, innovation, professional integrity, and continuing contributions that support scientific advancement, international collaboration, and the translation of biomedical engineering research into practical applications benefiting academia and society.[2]

Keywords

Biomedical Engineering, Scientific Research, Research Excellence, Best Researcher Award, Engineering Innovation, Healthcare Technology, Citation Impact, Scopus Author, Academic Recognition, Interdisciplinary Research.

Introduction

Biomedical engineering integrates engineering principles with biological sciences to develop technologies that improve healthcare, diagnostics, therapeutic systems, and medical research. Researchers in this discipline contribute to scientific advancement by producing validated studies, collaborative innovations, and evidence-based solutions that support medical progress and industrial development.[2]

Research Profile

Guanghui Li is a researcher at Zhongkai University of Agriculture and Engineering, China, with expertise in Biomedical Engineering. The research portfolio reflects sustained contributions through peer-reviewed publications, interdisciplinary collaboration, and innovative scientific investigations. The work demonstrates a commitment to advancing biomedical engineering knowledge while supporting technological innovation, academic excellence, and meaningful progress in healthcare-related research.[2]

Research Contributions

The research profile reflects sustained contributions to biomedical engineering through interdisciplinary investigations, publication of peer-reviewed studies, collaborative scientific activities, and measurable research influence. Citation indicators and publication records demonstrate continued engagement with emerging biomedical technologies and engineering-based healthcare solutions.[1]

Publications

According to the indexed Scopus author profile, Guanghui Li has published 26 scholarly documents spanning biomedical engineering and related interdisciplinary research areas. These publications collectively contribute to scientific communication, citation growth, and international academic collaboration.[1]

Research Impact

With 453 citations and an h-index of 13, the available bibliometric indicators suggest that Guanghui Li’s publications have received sustained scholarly attention. These metrics provide quantitative evidence of research visibility, influence, and continued relevance within biomedical engineering literature.[1]

Award Suitability

The documented publication record, citation performance, interdisciplinary research activities, and demonstrated scholarly impact indicate alignment with the evaluation principles commonly considered for the Best Researcher Award presented by the World Skincare Innovation Awards. Such recognition acknowledges measurable academic excellence, innovation, and sustained scientific contribution.[2]

Conclusion

Guanghui Li has established a credible scholarly profile characterized by consistent research output, measurable citation performance, and interdisciplinary engagement in biomedical engineering. The documented academic record reflects meaningful contributions that support continued recognition within international research and innovation communities.[3]

References

  1. Elsevier. (n.d.). Scopus author details: Guanghui Li, Author ID 57194229476. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57194229476
  2. Yassoralipour, A., Ng, L. R. Y., Li, G., Rambli, M. M., Chan, S. W., & Chew, L. Y. (n.d.). Development and physicochemical characterization of rice bran oil oleogels structured with beeswax, carnauba wax, and their blends.
    https://www.mdpi.com/2310-2861/12/6/532
  3. Luo, Y., Wang, L., Li, G., Bai, W., Yang, H., Dong, H., & Zeng, X. (n.d.). Hyaluronic acid-based control/target delivery system: Formation, control release and applications.
    https://pubmed.ncbi.nlm.nih.gov/41791152/

Khan Rajib Hossain | Hydrogel | Emerging Researcher Award

Emerging Researcher Award

Khan Rajib Hossain
BGMEA University of Fashion & Technology, Bangladesh

Khan Rajib Hossain
Affiliation BGMEA University of Fashion & Technology
Country Bangladesh
Scopus ID 57879046900
Documents 29
Citations 296
h-index 9
Subject Area Hydrogel
Event World Skincare Innovation Awards
ORCID 0000-0001-5199-1682

The Emerging Researcher Award recognizes Khan Rajib Hossain for scholarly contributions associated with hydrogel-related research and interdisciplinary scientific development. His publication record, citation performance, and sustained academic activities demonstrate consistent engagement in advancing innovative materials and their biomedical relevance. This profile summarizes his research background, publications, scientific impact, and recognition within the context of the World Skincare Innovation Awards.[1]

Abstract

Khan Rajib Hossain has developed an emerging research profile through investigations involving hydrogel science, biomaterials, and interdisciplinary applications with potential relevance to healthcare and skin-related technologies. His publications demonstrate consistent scientific methodology, collaborative research, and measurable scholarly influence reflected by citations and indexing, supporting continued advancement in innovative materials and translational research while contributing valuable knowledge to biomedical engineering, tissue interfaces, and future skincare-related material development.[1][2]

Keywords

Hydrogel, Biomaterials, Tissue Engineering, Skin Regeneration, Drug Delivery, Biomedical Engineering, Polymer Science, Wound Healing, Regenerative Medicine, Scopus.

Introduction

Hydrogel research has become an important area within biomaterials science because of its applications in tissue engineering, controlled drug delivery, wound management, and regenerative medicine. Researchers working in this field contribute to improving healthcare technologies through innovative polymer-based systems that enhance biological compatibility and functional performance.[2]

Research Profile

Khan Rajib Hossain is affiliated with BGMEA University of Fashion & Technology, Bangladesh. According to the provided academic metrics, his Scopus profile records 29 indexed publications, 296 citations, and an h-index of 9, reflecting sustained scholarly productivity and research visibility within hydrogel and biomaterials-related investigations.[1]

Research Contributions

His research contributes to advancing hydrogel-based materials, emphasizing biomedical functionality, material performance, and interdisciplinary innovation. These studies support the broader development of technologies applicable to tissue engineering, wound healing, and skin-related biomaterial systems while encouraging collaboration between engineering, chemistry, and medical sciences.[2]

Publications

The researcher has published 29 Scopus-indexed scientific documents focusing primarily on hydrogel research and related biomaterial applications. These publications demonstrate consistent academic productivity, interdisciplinary collaboration, and contributions to advancing polymer science, biomedical engineering, tissue regeneration, and healthcare technologies. The work has achieved measurable scholarly recognition through citations and sustained research visibility.[2]

Research Impact

The available publication metrics indicate measurable scientific influence through citations and indexing. Citation performance, combined with an h-index of 9, suggests that the published work has gained recognition within relevant academic communities and contributes to ongoing developments in biomaterials research.[1]

Award Suitability

Based on the documented publication record, citation metrics, interdisciplinary research activities, and academic engagement, Khan Rajib Hossain demonstrates characteristics aligned with the objectives of the Emerging Researcher Award presented by the World Skincare Innovation Awards. The profile reflects developing scientific excellence and continued contribution to innovative research.[3]

Conclusion

This academic profile summarizes the available scholarly information for Khan Rajib Hossain, highlighting publication achievements, research impact, and contributions to hydrogel-related scientific research. The presented evidence supports recognition within an academic award framework while encouraging continued interdisciplinary research and innovation.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Khan Rajib Hossain, Author ID 57879046900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57879046900
  2. ORCID. (n.d.). ORCID profile of Khan Rajib Hossain. ORCID Registry.
    https://orcid.org/0000-0001-5199-1682
  3. Mia, R., Tuli, M. B., Hossen, M. A., Rimi, S. A., Rahman, S., Raju, M. R. H., Mithi, N. J., & Hossain, K. R. (n.d.). Hydrogel-based nanocomposites for enhanced environmental remediation.
    https://www.sciencedirect.com/science/article/pii/S2773058125000468

Peng Yu | Skin inflammation | Best Researcher Award

Best Researcher Award

Peng Yu
The Second Affiliated Hospital of Nanchang University

Peng Yu
Affiliation The Second Affiliated Hospital of Nanchang University
Country China
Scopus ID 57189509131
Documents 165
Citations 4,075
h-index 33
Subject Area Skin inflammation
Event World Skincare Innovation Awards
ORCID 0000-0002-9405-7686

The Best Researcher Award recognizes distinguished academic achievement and sustained scientific contributions. Peng Yu has established a notable research profile through investigations in skin inflammation, translational medicine, and dermatological science. With a substantial publication record, measurable citation impact, and active engagement in biomedical research, the researcher demonstrates scholarly excellence appropriate for international academic recognition.[1]

Abstract

Peng Yu has developed a strong academic profile through research focused on skin inflammation, inflammatory mechanisms, and translational biomedical science, producing influential publications that contribute to improved understanding of dermatological diseases and evidence-based therapeutic strategies.[2] The Best Researcher Award acknowledges sustained scholarly productivity, measurable citation performance, international research visibility, and meaningful scientific contributions that support continued innovation, collaboration, and excellence within global skincare and biomedical research communities.[1]

Keywords

Skin Inflammation, Dermatology, Immunology, Translational Medicine, Biomedical Research, Inflammatory Disorders, Clinical Research, Cytokines, Skin Biology, Therapeutics

Introduction

Research in skin inflammation plays an essential role in advancing dermatological medicine by improving knowledge of immune regulation, disease progression, and targeted therapeutic interventions. Peng Yu has contributed to this evolving field through scientific investigations that integrate laboratory discoveries with clinically relevant applications, strengthening the evidence base supporting innovative approaches to inflammatory skin disorders.[2]

Research Profile

Affiliated with The Second Affiliated Hospital of Nanchang University, Peng Yu has established an active publication portfolio comprising 165 indexed documents with more than 4,000 citations and an h-index of 33. These metrics demonstrate sustained scientific productivity, scholarly influence, and consistent engagement with internationally recognized biomedical research.[1]

Research Contributions

Peng Yu has contributed to skin inflammation research through studies that advance understanding of inflammatory mechanisms, translational dermatology, and evidence-based therapeutic strategies. With 165 Scopus-indexed publications, 4,075 citations, and an h-index of 33, the research demonstrates sustained scientific productivity, international scholarly influence, and meaningful contributions to biomedical and skincare-related research.[1]

Publications

The research portfolio includes peer-reviewed publications indexed in Scopus and related scholarly databases covering dermatology, inflammation biology, translational medicine, and biomedical sciences. These publications demonstrate consistent scientific output and contribute to the advancement of evidence-based healthcare.[2]

Research Impact

A citation count exceeding 4,000 together with an h-index of 33 reflects substantial scholarly recognition within the scientific community. These indicators suggest that the published research has contributed to ongoing investigations, academic collaboration, and the development of new perspectives in skin inflammation research.[3]

Award Suitability

Based on documented research productivity, citation performance, subject specialization, and international academic visibility, Peng Yu demonstrates qualifications consistent with the objectives of the World Skincare Innovation Awards. The research achievements align with the principles of scientific excellence, innovation, and meaningful contribution to dermatological research.[1]

Conclusion

Peng Yu’s scholarly accomplishments reflect sustained dedication to biomedical research and skin inflammation studies. The combination of impactful publications, measurable research influence, and continued scientific engagement supports recognition through the Best Researcher Award while encouraging future advancements in dermatological science.[2]

References

  1. Elsevier. (n.d.). Scopus author details: Peng Yu, Author ID 57189509131. Scopus.
    https://www.scopus.com/pages/authors/57189509131
  2. Liang, R., Qi, X., Cai, Q., Niu, L., Huang, X., Zhang, D., Ling, J., Wu, Y., Chen, Y., Yang, P., Liu, J., Zhang, J., & Yu, P. (n.d.). The role of NLRP3 inflammasome in aging and age-related diseases.
    https://link.springer.com/article/10.1186/s12979-023-00395-z
  3. ORCID. (n.d.). ORCID Profile of Peng Yu.
    https://orcid.org/0000-0002-9405-7686