Innovative Research Award

Stephanie Chung
National Institute of Diabetes and Digestive and Kidney Diseases, United States

Stephanie Chung
Affiliation National Institute of Diabetes and Digestive and Kidney Diseases
Country United States
Scopus ID 56434983600
Documents 90
Citations 4,553
h-index 30
Subject Area Circadian Biology
Event World Cell Biologist Awards
ORCID 0000-0001-6989-0417

Stephanie Chung is a researcher affiliated with the National Institute of Diabetes and Digestive and Kidney Diseases in the United States. Her research profile is associated with circadian biology and related areas of biological timing, cellular regulation, and physiological processes. Bibliographic indicators supplied for this profile include 90 documents, 4,553 citations, and an h-index of 30. These indicators provide a quantitative overview of the researcher’s documented scholarly output and citation impact. [1]

Abstract

The Innovative Research Award profile recognizes the scholarly record of Stephanie Chung, whose documented research activity is associated with circadian biology. Circadian biology examines endogenous biological rhythms and their regulation across molecular, cellular, physiological, and behavioral systems. The supplied bibliometric record identifies 90 documents, 4,553 citations, and an h-index of 30, providing measurable indicators of publication activity and scholarly visibility. [1] The profile is presented in the context of the World Cell Biologist Awards and is intended to summarize research scope, publication activity, research impact, and the relevance of the researcher’s subject area to contemporary cell and biological sciences.

Keywords

Circadian Biology; Biological Rhythms; Cellular Regulation; Molecular Biology; Cell Biology; Physiology; Research Impact; Scientific Publications

Introduction

Circadian biology is a multidisciplinary field concerned with approximately 24-hour biological rhythms and the mechanisms that establish, maintain, and synchronize these rhythms. Research in this area connects molecular clocks and cellular signaling with tissue function, metabolism, behavior, and broader physiological regulation. Studies of circadian mechanisms therefore intersect with several areas of modern cell and molecular biology, including gene regulation, intracellular signaling, metabolism, and cellular adaptation. [2] [3]

Research Profile

The research profile presented here identifies Stephanie Chung with the National Institute of Diabetes and Digestive and Kidney Diseases and the subject area of circadian biology. The supplied Scopus identifier is 56434983600. According to the information provided for this article, the profile comprises 90 documents, 4,553 citations, and an h-index of 30. [1] [3]

Research Contributions

Research associated with circadian biology contributes to understanding how biological timing is generated and coordinated at molecular and cellular levels. Circadian systems commonly involve transcriptional and translational feedback mechanisms, clock-controlled genes, signaling pathways, and interactions between cellular metabolism and temporal regulation. [2] [1]

Publications

The supplied profile records 90 documents associated with Stephanie Chung. A complete publication bibliography should be obtained directly from the researcher’s indexed author profile or individual journal records to ensure accurate titles, publication dates, author lists, journal information, and DOI metadata. [1]

For publication-level verification, DOI records are preferable where available because a DOI provides a persistent identifier for a scholarly work. DOI registration and metadata can be checked through Crossref or the publisher’s official publication record. [4]

Research Impact

The supplied bibliometric indicators—4,553 citations and an h-index of 30 across 90 documents—provide quantitative evidence of scholarly attention to the researcher’s published work. [5] The h-index is designed to combine aspects of publication productivity and citation impact, but it varies according to database coverage, disciplinary practices, career stage, and publication patterns. Consequently, it should be regarded as one component of a broader research assessment rather than a standalone measure of scientific merit. [3]

Award Suitability

Based on the information supplied for this profile, Stephanie Chung’s research area in circadian biology is relevant to the wider biological sciences and has clear connections with cellular and molecular regulation. The reported record of 90 documents, 4,553 citations, and an h-index of 30 provides a substantial quantitative basis for consideration in an academic recognition framework. [1]

The Innovative Research Award suitability described on this page should be understood as a profile-based assessment rather than an independent adjudication of award eligibility. Formal recognition should be determined according to the applicable award criteria, supporting documentation, research outputs, and review procedures of the World Cell Biologist Awards.

Conclusion

Stephanie Chung’s academic profile, as supplied for this article, is characterized by research in circadian biology and an indexed record of 90 documents, 4,553 citations, and an h-index of 30. [1] The research area intersects with important questions concerning biological timing, molecular regulation, cellular function, and physiology. These characteristics provide a scholarly basis for considering the profile within an innovative research recognition context, subject to independent verification and the formal evaluation criteria of the relevant award program.

References

  1. Elsevier. (n.d.). Scopus author details: Stephanie Chung, Author ID 56434983600. Scopus.
    https://www.scopus.com/pages/authors/56434983600
  2. H Sekizkardes, ST Chung, S Chacko, et al. (2020). Free fatty acid processing diverges in human pathologic insulin resistance conditions.
    https://www.jci.org/articles/view/135431
  3. LE O’Connor, KD Hall, KA Herrick, J Reedy, ST Chung, et al. (2023). Metabolomic profiling of an ultraprocessed dietary pattern in a domiciled randomized controlled crossover feeding trial, 16569–16572.
    https://www.sciencedirect.com/science/article/pii/S0022316623724085
  4. R Nagpal, S Wang, LC Solberg Woods, O Seshie, ST Chung, et al. (2018). Comparative microbiome signatures and short-chain fatty acids in mouse, rat, non-human primate, and human feces.
    https://www.frontiersin.org/journals/microbiology/articles/10.3389/fmicb.2018.02897/full
  5. KD Hall, A Ayuketah, R Brychta, H Cai, T Cassimatis, KY Chen, ST Chung, et al. (2019). Ultra-processed diets cause excess calorie intake and weight gain: an inpatient randomized controlled trial of ad libitum food intake.
    https://www.cell.com/cellmetabolism/fulltext/S1550-4131(19)30248-7
Stephanie Chung | Circadian Biology | Innovative Research Award

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