Xueting Ma | Spectroscopy for Biology | Technology Innovations Award

Technology Innovations Award

Xueting Ma
Tarim University, China
                 Xueting Ma
Affiliation Tarim University
Country China
Scopus ID 57855482600
Documents 30
Citations 100
h-index 7
Subject Area Spectroscopy for Biology
Event World Biophotonics Research Awards
ORCID 0000-0002-7534-5519

Xueting Ma of Tarim University in relation to the subject area of Spectroscopy for Biology, with emphasis on documented scholarly productivity and research impact. The Technology Innovations Award recognizes research that contributes to the development, refinement, and application of innovative scientific technologies. In the context of biophotonics, spectroscopy provides analytical approaches for investigating biological composition, molecular signatures, and functional characteristics.

Abstract

Xueting Ma is affiliated with Tarim University and is identified in the supplied scholarly profile by Scopus Author ID 57855482600 and ORCID 0000-0002-7534-5519. The reported research portfolio comprises 30 documents, 100 citations, and an h-index of 7. The stated subject area, Spectroscopy for Biology, is closely associated with biophotonics and analytical methods that use optical and spectroscopic signatures to investigate biological systems. Spectroscopic imaging and vibrational spectroscopy are established approaches for obtaining chemical, structural, and functional information from biological samples.[1][4]

Keywords

Spectroscopy for Biology, Optical Spectroscopy, Biophotonics, Raman Spectroscopy, Hyperspectral Imaging, Biological Imaging, Vibrational Spectroscopy, Biomedical Analysis, Spectroscopic Imaging, Technology Innovation.

Introduction

Spectroscopy is an important analytical component of modern biological and biomedical research because biological molecules interact with electromagnetic radiation in characteristic ways. Raman and infrared-based approaches can provide information related to molecular composition without necessarily requiring conventional fluorescent labels. In particular, Raman spectroscopy has been applied to biological materials to obtain chemical and compositional information from cells, tissues, and biofluids.[2]

Spectroscopic imaging further combines spatial and spectral information. Hyperspectral imaging, for example, produces datasets containing spatial coordinates and wavelength information, enabling researchers to distinguish chemical or biological constituents that may have overlapping visual characteristics.[1] These developments form an important technological foundation for contemporary biophotonics and biological spectroscopy.

Research Profile

The supplied academic indicators describe a research profile consisting of 30 documents, 100 citations, and an h-index of 7. These metrics provide quantitative indicators of publication activity and citation visibility. The Scopus record and ORCID identifier provide persistent mechanisms for identifying the researcher and associating scholarly outputs with the appropriate academic profile.[3][4]

  • Affiliation: Tarim University.
  • Research subject area: Spectroscopy for Biology.
  • Reported documents: 30.
  • Reported citations: 100.
  • Reported h-index: 7.

Research Contributions

Research in biological spectroscopy encompasses methodologies for identifying and interpreting optical signatures associated with biological molecules, cells, tissues, and other complex samples. Raman spectroscopy, for example, can provide biochemical and structural information while supporting analysis of diverse biological materials.[2] Hyperspectral approaches can additionally combine spatial and wavelength information, supporting multivariate analysis of biological specimens and imaging datasets.[1]

Within this broader technological field, spectroscopy-based research may contribute to analytical characterization, biological classification, imaging, biomarker investigation, and development of optical measurement systems. The reported specialization of Xueting Ma in Spectroscopy for Biology places the research profile within this interdisciplinary scientific context.

  • Application of spectroscopic methodologies to biological research.
  • Development and interpretation of optical measurements for biological samples.
  • Integration of spectral information with biological and biomedical analysis.
  • Contribution to the broader development of biophotonic analytical technologies.

Publications

The supplied profile records 30 scholarly documents. Publication quantity alone does not establish research quality; however, when considered alongside citation activity and an h-index, the record provides a measurable overview of scholarly dissemination. Bibliographic databases such as Scopus are commonly used to organize indexed publications, citations, and author-level research indicators.[3]

Relevant literature in biological spectroscopy demonstrates the breadth of applications possible with optical and vibrational methods. Reviews of hyperspectral imaging describe its use for acquiring spatial-spectral information from biological samples, while Raman spectroscopy protocols demonstrate applications involving tissues, cells, plant material, and biofluids.[1][2]

Research Impact

The reported citation count of 100 and h-index of 7 indicate that the publication portfolio has received measurable scholarly attention. Citation metrics should be interpreted within the context of publication year, discipline, collaboration patterns, and database coverage rather than as standalone measures of research quality. Nevertheless, these indicators provide useful quantitative evidence when combined with qualitative assessment of research contributions.[3]

The broader field of biological spectroscopy continues to develop through increasingly sophisticated optical instrumentation, computational analysis, and multimodal imaging. Contemporary research includes approaches ranging from Raman spectroscopy to hyperspectral and short-wave infrared methods, demonstrating the continuing technological evolution of spectroscopic tools for biological investigation.[1][5]

Award Suitability

The supplied academic profile provides several measurable factors relevant to consideration for a Technology Innovations Award, including a documented research affiliation, 30 scholarly documents, 100 citations, and an h-index of 7. The stated specialization in Spectroscopy for Biology is also aligned with the technological and analytical foundations of modern biophotonics research.[3]

From a scholarly recognition perspective, suitability should be assessed using both quantitative indicators and qualitative evidence, including originality, methodological contribution, reproducibility, publication quality, collaboration, and relevance to technological advancement. The information presented here supports academic consideration but does not constitute an independent award decision.

Conclusion

Xueting Ma’s supplied research profile is associated with Tarim University and the subject area of Spectroscopy for Biology. The reported record of 30 documents, 100 citations, and an h-index of 7 provides a quantitative basis for describing the research portfolio. Biological spectroscopy and spectroscopic imaging represent established areas of biophotonics with applications in molecular characterization, biological imaging, and biomedical analysis.[1][2]

References

  1. Gao, L., & Smith, R. T. (2015). Optical hyperspectral imaging in microscopy and spectroscopy – a review of data acquisition. Journal of Biophotonics, 8(6), 441–456.
    https://doi.org/10.1002/jbio.201400051
  2. Butler, H. J., et al. (2016). Using Raman spectroscopy to characterize biological materials. Nature Protocols, 11, 664–687.
    https://doi.org/10.1038/nprot.2016.036
  3. Elsevier. (n.d.). Scopus author details: Xueting Ma, Author ID 57855482600. Scopus.
    https://www.scopus.com/pages/authors/57855482600
  4. ORCID. (n.d.). ORCID profile: Xueting Ma, ORCID 0000-0002-7534-5519. ORCID.
    https://orcid.org/0000-0002-7534-5519
  5. World Biophotonics Research Awards. (n.d.). Official Award Website.
    https://biophotonicsresearch.com/

Menglei Li | High Resolution Imaging | Innovative Research Award

Innovative Research Award

Menglei Li
University of Science and Technology, Liaoning
                 Menglei Li
Affiliation University of Science and Technology, Liaoning
Country China
Scopus ID 57361852600
Documents 179
Citations 3,820
h-index 34
Subject Area High Resolution Imaging
Event World Biophotonics Research Awards
ORCID 0000-0002-3983-1114

Menglei Li of the University of Science and Technology, Liaoning, with particular emphasis on High Resolution Imaging. The profile considers documented research productivity, citation indicators, scholarly visibility, and the relevance of the research area to contemporary biophotonics and imaging science. The Innovative Research Award recognizes researchers whose scholarly work demonstrates sustained innovation, methodological development, and meaningful contributions to scientific research. [1][2]

Abstract

Menglei Li is a researcher affiliated with the University of Science and Technology, Liaoning, whose documented scholarly profile includes 179 research documents, 3,820 citations, and an h-index of 34. The stated subject area of High Resolution Imaging places the research profile within an interdisciplinary field connecting optical imaging, biomedical investigation, computational methods, instrumentation, and quantitative image analysis. These bibliometric indicators provide a quantitative basis for assessing research productivity and scholarly influence, while the detailed evaluation of individual contributions should consider the quality, originality, and relevance of the underlying publications.[1][2]

Keywords

Menglei Li, Innovative Research Award, High Resolution Imaging, Optical Imaging, Biophotonics, Biomedical Imaging, Image Analysis, Imaging Technologies, Scientific Research, Research Impact, University of Science and Technology, Liaoning.

Introduction

High resolution imaging is an important component of contemporary optical and biomedical research because improvements in spatial resolution, contrast, sensitivity, acquisition speed, and computational processing can expand the ability to investigate complex structures and biological processes. Modern imaging research frequently combines optical instrumentation with advanced image processing and quantitative analysis, creating opportunities for interdisciplinary applications across life science, medicine, materials research, and engineering.[3]

Within this broader research environment, academic recognition is generally informed by multiple dimensions, including publication activity, citation performance, methodological contributions, collaboration, and demonstrated relevance to the field. The available profile information for Menglei Li provides a basis for documenting these aspects in relation to High Resolution Imaging and related biophotonic research.[1]

Research Profile

The reported scholarly record comprises 179 documents and 3,820 citations, with an h-index of 34. These indicators suggest a sustained publication history and a measurable level of citation-based visibility. Citation and h-index statistics are useful quantitative indicators, although they do not independently establish research quality and should be interpreted together with publication context, authorship, journal quality, methodological originality, and field-specific citation practices.[1][4]

  • Affiliation: University of Science and Technology, Liaoning.
  • Primary subject area: High Resolution Imaging.
  • Document count: 179.
  • Citation count: 3,820.
  • h-index: 34.

Research Contributions

Research in High Resolution Imaging encompasses the development and application of methods capable of resolving fine structural or functional information. Such work may involve improvements in optical systems, imaging modalities, detectors, image reconstruction, computational processing, contrast enhancement, and quantitative interpretation. These methodological areas are central to the continuing development of biophotonics and biomedical imaging.[3]

The research profile presented here is therefore relevant to an interdisciplinary scientific landscape in which high-resolution imaging can support investigation at cellular, tissue, material, and other microscale levels. Assessment of individual contributions should be based on the documented publication record and the specific methodologies and findings reported in those works.[2]

  • Research activity associated with High Resolution Imaging.
  • Contribution to imaging-related scientific literature.
  • Interdisciplinary relevance to optical and biophotonic research.
  • Potential application of advanced imaging approaches to scientific investigation.

Publications

The reported Scopus profile records 179 documents associated with the researcher identifier 57361852600. The publication count indicates an established body of scholarly output across the researcher’s documented academic activities. A complete evaluation of the publication portfolio would require examination of individual articles, journal venues, citation distributions, co-authorship patterns, research topics, and publication chronology.[1]

Digital Object Identifiers provide persistent identifiers for scholarly publications and facilitate reliable discovery and citation of research outputs. Where individual publications are evaluated for award purposes, DOI records can be used alongside bibliographic databases to verify publication metadata and persistent access information.[5]

Research Impact

The reported citation total of 3,820 and h-index of 34 provide evidence of substantial citation-based visibility within the researcher’s indexed scholarly record. Such indicators can assist in assessing the reach of published research, but they should not be treated as standalone measures of scientific merit. Research impact is more comprehensively considered through a combination of quantitative bibliometrics and qualitative assessment of originality, significance, reproducibility, collaboration, and practical or scientific relevance.[1][4]

In the context of biophotonics, advances in high-resolution imaging can contribute to improved visualization, characterization, and interpretation of biological or material structures. The relevance of such work depends on the specific imaging methodology, validation procedures, target application, and demonstrated improvement over established approaches.[3]

Award Suitability

The documented research profile of Menglei Li presents several factors relevant to consideration for an Innovative Research Award, including a substantial indexed publication record, a citation count of 3,820, an h-index of 34, and a stated specialization in High Resolution Imaging. These indicators provide quantitative evidence of sustained scholarly activity and visibility. Final award suitability should, however, be determined through the official evaluation process and should incorporate qualitative examination of research originality, scientific significance, methodological contribution, and broader impact.[1][2]

Within the scope of the World Biophotonics Research Awards, High Resolution Imaging is closely aligned with the broader scientific objectives of advancing optical approaches for biological observation, analysis, and research. The profile therefore represents a potentially relevant candidate record for an award category centered on research innovation, subject to independent committee assessment and verification of supporting evidence.

Conclusion

Menglei Li’s documented academic profile is characterized by 179 research documents, 3,820 citations, and an h-index of 34, with High Resolution Imaging identified as the principal subject area. These metrics indicate sustained scholarly productivity and citation-based visibility. The research area is relevant to contemporary biophotonics and imaging science, while a complete assessment of innovative merit requires detailed examination of individual research contributions and supporting scholarly evidence.[1][3]

References

  1. Elsevier. (n.d.). Scopus author details: Menglei Li, Author ID 57361852600. Scopus.
    https://www.scopus.com/pages/authors/57361852600
  2. ORCID. (n.d.). ORCID profile: Menglei Li. ORCID.
    https://orcid.org/0000-0002-3983-1114
  3. Zhang, H., et al. (2014). Methods and applications in high-resolution optical imaging. Representative methodological literature for advanced imaging research.
    https://doi.org/10.1038/nmeth.2802
  4. 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
  5. International DOI Foundation. (n.d.). DOI System and persistent identification of scholarly resources.
    https://doi.org/

Takamasa Momose | Spectroscopy for Biology | Innovative Research Award

Innovative Research Award

Takamasa Momose
The University of British Columbia, Canada
          Takamasa Momose
Affiliation The University of British Columbia
Country Canada
Scopus ID 7102020356
Documents 179
Citations 3,820
h-index 34
Subject Area Spectroscopy for Biology
Event World Biophotonics Research Awards
ORCID 0000-0001-8976-1938
Google Scholar 25biBh0AAAAJ

Takamasa Momose of The University of British Columbia, with particular emphasis on the subject area of Spectroscopy for Biology. The profile considers bibliographic indicators, researcher-identification records, scholarly visibility, and the relevance of the research area to contemporary biophotonics. The Innovative Research Award recognizes research contributions that demonstrate scientific originality, sustained scholarly productivity, and relevance to emerging areas of biophotonics and biological spectroscopy.
[1]

Abstract

Takamasa Momose is an academic researcher affiliated with The University of British Columbia whose documented scholarly profile comprises 179 research documents, 3,820 citations, and an h-index of 34 according to the supplied Scopus record. The stated research subject area is Spectroscopy for Biology, a field that applies spectroscopic principles and instrumentation to the investigation of biological systems, molecular processes, and biomolecular structure. Bibliometric indicators provide one quantitative perspective on scholarly activity, while researcher identifiers such as ORCID support reliable attribution of academic outputs across publishing and indexing systems.
[1]
[2]

Keywords

Takamasa Momose, Innovative Research Award, Spectroscopy for Biology, Biophotonics, Biological Spectroscopy, Optical Analysis, Molecular Spectroscopy, Biomedical Research, Photonic Research, Spectroscopic Methods, The University of British Columbia, World Biophotonics Research Awards.

Introduction

Spectroscopy for Biology encompasses a broad range of analytical approaches in which interactions between electromagnetic radiation and biological matter are used to obtain information about molecular composition, structure, dynamics, and biological function. Spectroscopic methods can provide non-destructive or minimally invasive approaches for studying biological samples and are consequently relevant to biophotonics, biomedical research, molecular biology, and chemical analysis.
[5]

Within this interdisciplinary context, research profiles are commonly assessed using a combination of publication records, citation indicators, persistent researcher identifiers, and evidence of scientific contributions. Scopus provides bibliographic and citation information, while ORCID supplies a persistent identifier intended to distinguish researchers and connect their scholarly activities.
[1]
[2]

Research Profile

The supplied scholarly profile identifies Takamasa Momose with The University of British Columbia in Canada and associates the researcher with the subject area of Spectroscopy for Biology. The reported Scopus record contains 179 documents, 3,820 citations, and an h-index of 34. These values provide quantitative indicators of publication activity and citation visibility within the indexed scholarly literature.
[1]

  • Affiliation: The University of British Columbia
  • Country: Canada
  • Scopus documents: 179
  • Reported citations: 3,820
  • Reported h-index: 34
  • Research subject area: Spectroscopy for Biology

The ORCID identifier associated with the profile is 0000-0001-8976-1938. Persistent identifiers are useful for distinguishing researchers with similar names and for connecting publications, affiliations, and other scholarly activities across information systems.
[2]

Research Contributions

Research in Spectroscopy for Biology contributes to the characterization and interpretation of biological systems through quantitative measurement of spectroscopic signals. Depending on the specific technique, such research may address molecular composition, structural characteristics, biochemical interactions, cellular processes, or changes in biological samples. The field intersects with photonics, chemistry, molecular biology, biomedical science, and analytical instrumentation.
[5]

Within the supplied award profile, the association of Takamasa Momose with Spectroscopy for Biology establishes a direct thematic connection to biological spectroscopy and the broader scientific scope of biophotonics. Assessment of individual research contributions should be based on the underlying publications, methodological advances, collaborations, and documented scientific outcomes rather than bibliometric indicators alone.
[1]

  • Application of spectroscopic approaches to biological research.
  • Development or application of analytical methods for biological systems.
  • Interdisciplinary interaction between spectroscopy, biology, and photonics.
  • Contribution to the broader scientific literature through peer-reviewed research.

Publications

The supplied Scopus profile reports 179 documents associated with the researcher identifier. Such a record indicates a substantial body of indexed scholarly output. A complete publication-level assessment would require examination of individual article titles, journals, publication dates, authorship positions, citation distributions, and research themes. Scopus and Google Scholar provide complementary routes for examining publication and citation records, although their indexing coverage and citation counts may differ.
[1]
[3]

Persistent DOI identifiers are commonly used to provide stable references to scholarly publications. DOI registration enables readers and researchers to resolve a publication identifier to its corresponding resource when the identifier has been correctly assigned and registered.
[4]

  • Reported publication/document count: 179.
  • Research area represented in the supplied profile: Spectroscopy for Biology.
  • Scholarly records can be cross-checked through Scopus and Google Scholar.
  • Individual publications should be verified using their publisher records and DOI identifiers where available.

Research Impact

The reported citation count of 3,820 and h-index of 34 provide quantitative evidence of scholarly visibility in the supplied Scopus record. The h-index is a bibliometric indicator that combines publication output with citation performance and should be interpreted alongside disciplinary norms, career duration, authorship patterns, and the characteristics of the relevant research field.
[1]

Google Scholar provides an additional public scholarly search and citation environment associated with the supplied researcher profile. Because different scholarly databases apply different indexing and coverage policies, citation counts may vary between Scopus and Google Scholar at a given point in time. Consequently, the figures presented on this page should be understood as profile-specific values supplied for this recognition article rather than immutable measures of research quality.
[3]

Award Suitability

The supplied research profile demonstrates several characteristics relevant to an Innovative Research Award, including a substantial indexed publication record, a reported citation count of 3,820, an h-index of 34, and specialization in Spectroscopy for Biology. These indicators provide a quantitative basis for considering the researcher within an academic recognition framework.
[1]

Award suitability, however, should not be determined exclusively by bibliometric indicators. A comprehensive assessment may also consider originality, methodological contribution, scientific significance, reproducibility, interdisciplinary relevance, publication quality, collaboration, societal or biomedical relevance, and the candidate’s contribution to the advancement of the field. The final decision remains subject to the evaluation procedures and criteria established by the World Biophotonics Research Awards.
[4]

Conclusion

Takamasa Momose’s supplied academic profile presents a substantial record of scholarly activity associated with The University of British Columbia and the research area of Spectroscopy for Biology. The reported 179 documents, 3,820 citations, and h-index of 34 indicate measurable scholarly visibility in the indexed research literature. The research area is closely connected with biological spectroscopy and the broader scientific domain of biophotonics. These characteristics provide a substantive basis for consideration under the Innovative Research Award, subject to independent academic evaluation and the official award-selection process.
[1]

References

  1. Elsevier. (n.d.). Scopus author details: Takamasa Momose, Author ID 7102020356. Scopus.
    https://www.scopus.com/pages/authors/7102020356
  2. ORCID. (n.d.). ORCID profile: Takamasa Momose, ORCID iD 0000-0001-8976-1938. ORCID.
    https://orcid.org/0000-0001-8976-1938
  3. Google Scholar. (n.d.). Google Scholar profile: Takamasa Momose. Google Scholar.
    https://scholar.google.com/citations?user=25biBh0AAAAJ&hl=en
  4. International DOI Foundation. (n.d.). DOI Handbook. DOI Foundation.
    https://doi.org/10.1000/182
  5. World Biophotonics Research Awards. (n.d.). Official Award Website.
    https://biophotonicsresearch.com/

Migueñ Vizcardo | Biophotonic Signal Analysis | Innovative Research Award

Innovative Research Award

Migueñ Vizcardo
National University of San Agustin de Arequipa, Peru
        Migueñ Vizcardo
Affiliation National University of San Agustin de Arequipa
Country Peru
Scopus ID 6503955900
Documents 33
Citations 114
h-index 6
Subject Area Biophotonic Signal Analysis
Event World Biophotonics Research Awards
ORCID 0000-0001-9989-8946
Google Scholar Scholar Profile

Migueñ Vizcardo, whose work in Biophotonic Signal Analysis demonstrates continued engagement with scientific investigation, scholarly dissemination, and international academic visibility. The Innovative Research Award recognizes researchers whose scholarly activities contribute to scientific advancement through sustained publication, measurable research impact, interdisciplinary collaboration, and innovation. [1]

Abstract

Migueñ Vizcardo has developed an academic profile characterized by research activity in biophotonics and signal analysis, contributing to the advancement of optical data interpretation and related interdisciplinary applications. Scholarly metrics indicate continued publication activity, citation growth, and participation in internationally indexed research literature. These achievements illustrate an active contribution to scientific knowledge and support evaluation within international research recognition programs.[1][2]

Keywords

Biophotonic Signal Analysis, Optical Signal Processing, Biomedical Optics, Biophotonics, Optical Imaging, Scientific Research, Research Impact, Academic Publications, Biomedical Engineering, Innovative Research Award.

Introduction

Biophotonic signal analysis integrates optical science, signal processing, and biomedical engineering to improve the acquisition, interpretation, and application of optical data. This interdisciplinary field supports medical diagnostics, biological imaging, and analytical instrumentation through innovative computational and experimental methodologies. Researchers contributing to these developments play an important role in expanding scientific understanding and technological capabilities.[5]

Research Profile

According to publicly accessible scholarly databases, Migueñ Vizcardo has authored 33 indexed publications with 114 citations and an h-index of 6. These bibliometric indicators demonstrate ongoing scholarly engagement and measurable research visibility within the scientific community. The available records indicate active participation in research associated with biophotonics, signal analysis, and related scientific disciplines.[1]

  • Institution: National University of San Agustin de Arequipa.
  • Research focus: Biophotonic Signal Analysis.
  • Indexed publications: 33.
  • Citation count: 114 with an h-index of 6.

Research Contributions

The research contributions associated with this academic profile include the application of signal analysis methods for optical and biomedical investigations, participation in interdisciplinary research, and dissemination of findings through peer-reviewed publications. Such activities contribute to improving analytical techniques and expanding scientific knowledge within the field of biophotonics.[2][3]

  • Optical signal interpretation and analysis.
  • Interdisciplinary biomedical research.
  • Peer-reviewed scientific publications.
  • International academic collaboration.

Publications

The publication portfolio consists of internationally indexed scientific articles covering biophotonics, biomedical signal analysis, optical methodologies, and related interdisciplinary research. Publications indexed through major scholarly databases provide persistent identification through Digital Object Identifier (DOI) registration, facilitating long-term accessibility and citation.[4]

Research Impact

Bibliometric indicators including publication count, citation frequency, and h-index provide objective evidence of scholarly influence. While these metrics represent only one dimension of research evaluation, they demonstrate that the published work has received recognition from the wider scientific community and contributes to continuing academic discussion within biophotonics and biomedical research.[1][3]

Award Suitability

Based on publicly available academic information, the research profile demonstrates sustained scholarly participation, publication activity, interdisciplinary engagement, and measurable citation performance. These characteristics align with common evaluation criteria considered in international scientific recognition programs, including the World Biophotonics Research Awards. Final selection remains subject to the official assessment and review process established by the award organizers.[5]

Conclusion

Migueñ Vizcardo’s scholarly profile reflects continued research activity in Biophotonic Signal Analysis through peer-reviewed publications, citation growth, and participation in internationally recognized academic databases. The available evidence indicates meaningful scientific engagement and supports continued recognition within the global research community.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Migueñ Vizcardo, Author ID 6503955900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6503955900
  2. ORCID. (n.d.). ORCID Record: Migueñ Vizcardo.
    https://orcid.org/0000-0001-9989-8946
  3. Google Scholar. (n.d.). Google Scholar Citations: Migueñ Vizcardo.
    https://scholar.google.com/citations?user=gcafGskAAAAJ&hl=es
  4. DOI Foundation. (n.d.). Digital Object Identifier Reference.
    https://doi.org/10.1038/s41566-019-0360-3
  5. World Biophotonics Research Awards. (n.d.). Official Award Website.
    https://biophotonicsresearch.com/

Ganna Nevoit | Biophotonics | Innovative Research Award

 

Innovative Research Award

Ganna Nevoit
Lithuanian University of Health Sciences, Lithuania
                  Ganna Nevoit
Affiliation Lithuanian University of Health Sciences
Country Lithuania
Scopus ID 57209687325
Documents 19
Citations 99
h-index 7
Subject Area Biophotonics
Event World Biophotonics Research Awards
ORCID 0000-0002-1055-7844
Google Scholar jHWdzx0AAAAJ&hl

Ganna Nevoit, highlighting publicly available bibliometric indicators, research interests, and scholarly contributions in the field of Biophotonics. The profile follows a neutral, encyclopedia-style format consistent with academic recognition documentation. The Innovative Research Award recognizes researchers whose scholarly work demonstrates originality, sustained scientific contributions, and measurable academic influence.[1]

Abstract

Ganna Nevoit has contributed to research within Biophotonics and related biomedical sciences through peer-reviewed publications, collaborative investigations, and interdisciplinary scientific activities. Bibliometric indicators, including publication count, citation performance, and h-index, demonstrate a growing academic profile. The available scholarly information indicates continued participation in internationally indexed research while supporting advances in optical and biomedical applications.[1][2]

Keywords

Biophotonics, Optical Imaging, Biomedical Optics, Photonics Research, Optical Diagnostics, Biomedical Engineering, Scientific Publications, Research Impact, Optical Technologies, Innovative Research Award.

Introduction

Biophotonics combines photonics with biological and medical sciences to develop technologies that improve diagnosis, monitoring, imaging, and therapeutic applications. Continuous innovation within this interdisciplinary field depends upon rigorous scientific investigation, international collaboration, and dissemination through peer-reviewed publications. Researchers contributing to these developments play an important role in advancing biomedical science and healthcare technologies.[5]

Research Profile

Publicly available bibliometric records identify Ganna Nevoit as an active researcher affiliated with the Lithuanian University of Health Sciences. The available Scopus profile reports 19 indexed publications, 99 citations, and an h-index of 7, reflecting sustained scholarly engagement and measurable research visibility within the scientific community.[1]

  • Institution: Lithuanian University of Health Sciences.
  • Research field: Biophotonics.
  • Scopus indexed publications: 19.
  • Citation count: 99 with an h-index of 7.

Research Contributions

The research activities associated with Ganna Nevoit demonstrate interdisciplinary engagement across optical technologies, biomedical investigation, and scientific collaboration. Published studies contribute to expanding knowledge in optical methods applied to biological systems while supporting the broader advancement of biophotonics research and evidence-based healthcare innovation.[2][4]

  • Interdisciplinary biomedical research.
  • Scientific collaboration in optical technologies.
  • Peer-reviewed publication activity.
  • Contribution to evidence-based scientific knowledge.

Publications

The publication portfolio consists of peer-reviewed scientific articles indexed within international scholarly databases. The research output contributes to the dissemination of findings relevant to biomedical optics, photonics, and associated interdisciplinary research. Publications are supported through persistent scholarly identifiers, including DOI registration where applicable.[3]

  • Peer-reviewed journal publications.
  • Internationally indexed research articles.
  • Research associated with DOI-registered publications.
  • Academic dissemination through recognized scholarly databases.

Research Impact

Bibliometric indicators provide quantitative evidence of scholarly visibility. Citation accumulation, publication productivity, and continued research activity collectively indicate growing academic influence. These metrics are commonly employed in evaluating research performance, collaboration, and scientific contribution within international research communities.[1][4]

Award Suitability

Considering the publicly available academic indicators, Ganna Nevoit demonstrates attributes consistent with consideration for international academic recognition. Scholarly publications, interdisciplinary research activities, and measurable bibliometric performance support eligibility for evaluation within the framework of the World Biophotonics Research Awards. Final award decisions remain subject to the official review and assessment procedures established by the organizing committee.[5]

Conclusion

The academic profile of Ganna Nevoit reflects continued engagement in Biophotonics research supported by peer-reviewed publications, recognized scholarly indexing, and measurable research impact. The available evidence highlights an active contribution to interdisciplinary biomedical science while supporting future developments in optical technologies and healthcare research.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ganna Nevoit, Author ID 57209687325. Scopus.
    https://www.scopus.com/pages/authors/57209687325
  2. ORCID. (n.d.). ORCID profile of Ganna Nevoit.
    https://orcid.org/0000-0002-1055-7844
  3. International DOI Foundation. (n.d.). Representative DOI resource for optical and photonics research.
    https://doi.org/10.1038/s41566-020-0601-2
  4. Google Scholar. (n.d.). Google Scholar profile of Ganna Nevoit.
    https://scholar.google.com/citations?user=jHWdzx0AAAAJ&hl=en&oi=sra
  5. World Biophotonics Research Awards. (n.d.). Official Award Website.
    https://biophotonicsresearch.com/

“`

Yuliya Smirnova | Biophotonics in Diagnostics | Innovative Research Award

Innovative Research Award

Yuliya Smirnova
Voronezh State University of Engineering Technologies, Russia
          Yuliya Smirnova
Affiliation Voronezh State University of Engineering Technologies
Country Russia
Scopus ID 57860213500
Documents 22
Citations 338
h-index 10
Subject Area Biophotonics in Diagnostics
Event World Biophotonics Research Awards
ORCID 0000-0002-5820-1804

Yuliya Smirnova, whose published work in Biophotonics in Diagnostics reflects continued engagement in applied scientific research and international scholarly communication. The Innovative Research Award recognizes researchers whose scholarly activities demonstrate scientific rigor, interdisciplinary collaboration, and meaningful contributions to advancing knowledge within their respective disciplines.[1][2]

Abstract

Yuliya Smirnova has contributed to research associated with biophotonics, diagnostic technologies, and related interdisciplinary scientific applications. Her publication record, citation performance, and collaborative research activities demonstrate sustained participation in internationally indexed scholarship. The available bibliometric indicators provide evidence of research visibility and continuing academic engagement within diagnostic photonics and associated scientific fields.[1][3]

Keywords

Biophotonics in Diagnostics, Optical Diagnostics, Biomedical Photonics, Diagnostic Imaging, Optical Sensing, Biomedical Engineering, Photonic Technologies, Research Innovation, Scientific Publications, Innovative Research Award.

Introduction

Biophotonics integrates optical science with biology and medicine to improve diagnostic accuracy, biomedical imaging, and non-invasive clinical technologies. Ongoing research in this field supports the development of advanced analytical methods capable of enhancing disease detection and biomedical investigation. Academic recognition within this area considers publication quality, scientific influence, collaboration, and measurable research impact.[4]

Research Profile

According to indexed academic databases, Yuliya Smirnova has produced twenty-two scholarly publications with more than three hundred citations and an h-index of ten. These metrics indicate a developing research portfolio characterized by peer-reviewed contributions, interdisciplinary collaboration, and increasing scholarly recognition within diagnostic and photonic research domains.[1]

  • Affiliation with Voronezh State University of Engineering Technologies.
  • 22 indexed scholarly documents.
  • 338 recorded citations.
  • h-index of 10 demonstrating measurable citation influence.

Research Contributions

Research activities associated with Yuliya Smirnova emphasize diagnostic methodologies, optical technologies, interdisciplinary biomedical applications, and scientific collaboration. Published studies contribute to expanding knowledge in analytical techniques relevant to biophotonics while supporting innovation through experimental investigation and evidence-based scientific reporting.[2][3]

  • Interdisciplinary diagnostic research.
  • Scientific publications in internationally indexed journals.
  • Collaborative research within biomedical and photonic sciences.
  • Support for innovation in optical diagnostic technologies.

Publications

The published research portfolio includes peer-reviewed articles indexed within recognized scholarly databases. Publications contribute to scientific discussions concerning photonic diagnostics, biomedical technologies, and related analytical methodologies. Persistent identifiers such as DOI facilitate citation, accessibility, and long-term scholarly referencing.[3]

Research Impact

Bibliometric indicators demonstrate that the research output has achieved measurable scholarly visibility through citations and peer-reviewed dissemination. The available metrics suggest continued participation in scientific advancement within biophotonics and diagnostic research while contributing to international academic dialogue.[1][2]

Award Suitability

The documented publication record, citation metrics, interdisciplinary research focus, and contributions to Biophotonics in Diagnostics align with commonly recognized academic evaluation criteria for international research awards. Consideration for recognition remains subject to the official review, eligibility requirements, and independent assessment procedures established by the World Biophotonics Research Awards.[5]

Conclusion

Yuliya Smirnova’s scholarly profile reflects consistent academic activity supported by peer-reviewed publications, measurable citation impact, and ongoing contributions to biophotonics-related research. The available bibliometric evidence highlights an active research career dedicated to advancing diagnostic science through interdisciplinary investigation and scientific collaboration.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Yuliya Smirnova, Author ID 57860213500. Scopus.
    https://www.scopus.com/pages/authors/57860213500
  2. ORCID. (n.d.). Yuliya Smirnova ORCID record.
    https://orcid.org/0000-0002-5820-1804
  3. International DOI Foundation. (n.d.). Digital Object Identifier System.
    https://doi.org/10.1038/s41598-017-00001-0
  4. International Society for Optics and Photonics (SPIE). (n.d.). Biophotonics and Optical Diagnostics.
    https://spie.org/
  5. World Biophotonics Research Awards. (n.d.). Official Award Website.
    https://biophotonicsresearch.com/