April Schultz | Genetics and Genomics | Best Researcher Award

Best Researcher Award

April Schultz
Affiliation Sanford Children’s Genomic Medicine Consortium
Country United States
Scopus ID 57210791238
Documents 23
Citations 271
h-index 9
Subject Area Genetics and Genomics
Event Computer Scientists Awards
ORCID 0000-0003-1249-3685

April Schultz
Sanford Children’s Genomic Medicine Consortium, United States

April Schultz is a researcher whose scholarly work focuses on genetics, genomics, and clinical pharmacogenomics, particularly within pediatric precision medicine. Her publications emphasize the implementation of genomic testing, clinical decision support, and personalized therapeutic strategies that improve medication safety and effectiveness. With a documented Scopus profile containing 23 indexed publications, 271 citations, and an h-index of 9, her research demonstrates sustained engagement with translational genomic medicine and interdisciplinary collaboration.[1]

Abstract

April Schultz has contributed to the advancement of pharmacogenomics through studies integrating genomic information into clinical practice. Her work examines medication response, implementation of genomic testing, and healthcare decision support, with particular emphasis on pediatric populations and personalized medicine. These investigations contribute to evidence-based genomic healthcare and collaborative translational research.[2]

Keywords

  • Genetics
  • Genomics
  • Pharmacogenomics
  • Precision Medicine
  • Clinical Decision Support

Introduction

Modern genomic medicine increasingly relies on multidisciplinary collaboration to translate genetic discoveries into clinical care. Schultz’s research reflects this transition by evaluating pharmacogenetic implementation, genotype-guided prescribing, and healthcare system integration. Her publications address practical applications of genomic evidence while supporting personalized therapeutic approaches across healthcare environments.[3]

Research Profile

The research profile demonstrates consistent activity in genetics and genomics with measurable scholarly impact. Publications focus on pharmacogenetic implementation, medication optimization, antidepressant therapy, statin-associated adverse effects, and pediatric genomic medicine. Collaborative research across institutions highlights practical translation of genomic discoveries into patient care while supporting precision medicine initiatives.[1]

Research Contributions

Schultz has contributed to investigations evaluating CYP2C19 and CYP2D6-guided antidepressant prescribing, automated clinical decision support for clopidogrel therapy, pharmacogenetic implementation in rural health systems, and genomic consortium development. These studies strengthen evidence supporting genomic integration into routine healthcare and encourage broader adoption of precision medicine technologies.[2]

Publications

  • Sanford Children’s Genomic Medicine Consortium shows interinstitutional progression of pediatric pharmacogenomic programs (2026).
  • Genotype influences antidepressant discontinuation in a pre-emptive pharmacogenetic testing population (2026).
  • Evaluation of pharmacogenetic automated clinical decision support for clopidogrel (2024).
  • Incidence of statin-associated muscle symptoms in patients with RYR1 or CACNA1S variants (2024).
  • Implementation of CYP2C19 and CYP2D6 genotyping to guide antidepressant use (2024).

Research Impact

The available bibliometric indicators indicate meaningful academic influence within pharmacogenomics and clinical genomics. Citation activity, interdisciplinary collaboration, and publication in peer-reviewed journals demonstrate ongoing engagement with precision medicine research. These outputs contribute to improving genomic implementation strategies and healthcare quality through evidence-based clinical practice.[4]

Award Suitability

Based on documented scholarly publications, citation metrics, and sustained contributions to genetics and genomics, April Schultz demonstrates qualifications consistent with consideration for the Best Researcher Award. Her work reflects scientific rigor, collaborative research, and practical application of genomic medicine while maintaining an evidence-driven research portfolio.[5]

Conclusion

April Schultz’s academic profile represents an active contribution to pharmacogenomics and precision medicine through clinically relevant genomic research. Continued publication activity and interdisciplinary collaboration position her work as a valuable contribution to advancing personalized healthcare and genomic implementation.

References

  1. Elsevier. (n.d.). Scopus author details: April Schultz, Author ID 57210791238.
    https://www.scopus.com/authid/detail.uri?authorId=57210791238
  2. Schultz A., et al. (2026). Sanford Children’s Genomic Medicine Consortium shows interinstitutional progression of pediatric pharmacogenomic programs.
    https://doi.org/10.1016/j.japhpi.2026.100120
  3. Schultz A., et al. (2026). Genotype influences antidepressant discontinuation in a pre-emptive pharmacogenetic testing population.
    https://doi.org/10.1038/s41397-026-00416-2
  4. Schultz A., et al. (2024). Evaluation of pharmacogenetic automated clinical decision support for clopidogrel.
    https://doi.org/10.1080/14622416.2024.2394014
  5. Schultz A., et al. (2024). Implementation of CYP2C19 and CYP2D6 genotyping to guide antidepressant use in a large rural health system.
    https://doi.org/10.1093/ajhp/zxae083

 

Yhan Carlos Rojas De La Cruz | Genetics and Genomics | Best Researcher Award

Best Researcher Award

Yhan Carlos Rojas De La Cruz
Federal University of Lavras, Brazil

Yhan Carlos Rojas De La Cruz
Affiliation Federal University of Lavras
Country Brazil
Scopus ID 57220588566
Documents 8
Citations 4
h-index 2
Subject Area Genetics and Genomics
Event Computer Scientists Awards
ORCID 0000-0001-7750-8038

Yhan Carlos Rojas De La Cruz is a researcher affiliated with the Federal University of Lavras whose scholarly activities focus on genetics, genomics, livestock improvement, and computational approaches for animal production. His published work integrates quantitative genetics, statistical modeling, and machine learning techniques to address practical challenges in animal breeding and agricultural science. Through contributions involving cattle, sheep, and genetic identification of animal products, his research demonstrates an interdisciplinary perspective that combines biological sciences with data-driven methodologies.[1]

Abstract

The research portfolio of Yhan Carlos Rojas De La Cruz reflects continuing work in genetics and genomics applied to livestock production systems. His publications emphasize predictive analytics, genetic evaluation, molecular identification, and growth modeling in economically important animal species. By integrating machine learning algorithms with traditional quantitative genetic methods, his studies contribute to more accurate breeding decisions and improved productivity while supporting evidence-based agricultural management.[2]

Keywords

Genetics, Genomics, Animal Breeding, Machine Learning, Livestock Production, Growth Curves, Quantitative Genetics, Precision Agriculture.

Introduction

Modern livestock science increasingly depends upon computational analysis, genomic technologies, and predictive statistical models. Within this context, the research undertaken by Yhan Carlos Rojas De La Cruz explores practical applications of data analysis to improve breeding efficiency, animal performance, and product traceability. His publications demonstrate collaboration across veterinary science, genetics, and agricultural technology while addressing challenges relevant to sustainable livestock systems.[3]

Research Profile

According to the available Scopus author profile, the researcher has produced eight indexed documents with four citations and an h-index of two. His scholarly activities focus primarily on genetics and genomics, with complementary interests in statistical modeling, livestock production, and artificial intelligence applications in agriculture. These publications collectively demonstrate a consistent emphasis on analytical methodologies supporting biological research.[1]

Research Contributions

  • Applied machine learning methods for predicting body weight in Peruvian sheep populations.
  • Developed statistical approaches for genetic evaluation of Brahman cattle growth curves.
  • Investigated molecular identification techniques for cattle, pigs, and horses in animal-derived products.
  • Contributed to predictive livestock management through quantitative genetic analysis and agricultural data science.

Publications

  • Genetic analysis of Brahman cattle growth curves using two-stage and joint analysis methods (2025).
  • Prediction models for live body weight and body compactness of Criollo sheep (2024).
  • Machine learning approaches for body weight prediction in Peruvian Corriedale sheep (2024).
  • Genetic identification of cattle, pigs and horses in products of animal origin (2022).
  • Effects of Saccharomyces cerevisiae on silage composition (2021).

Research Impact

Although the publication profile represents an emerging stage of academic development, the available work demonstrates interdisciplinary integration between genetics, computational analysis, and agricultural sciences. The application of predictive models and machine learning contributes to modern precision livestock management and supports reproducible scientific methodologies suitable for future research expansion.[4]

Award Suitability

The research profile demonstrates measurable scholarly productivity within genetics and genomics, supported by peer-reviewed publications addressing computational methods in animal science. The combination of quantitative genetics, artificial intelligence, and agricultural innovation aligns with the interdisciplinary objectives recognized by the Computer Scientists Awards, particularly where computational techniques advance biological research and applied scientific knowledge.[5]

Conclusion

Yhan Carlos Rojas De La Cruz has established a focused research trajectory combining genetics, genomics, machine learning, and quantitative analysis within livestock science. His publications illustrate the value of computational methods for solving biological and agricultural problems while supporting evidence-based breeding and production strategies. Continued research in these interdisciplinary areas is expected to strengthen scientific understanding and practical agricultural applications.

References

  1. Elsevier. (n.d.). Scopus author details: Yhan Carlos Rojas De La Cruz, Author ID 57220588566.
    https://www.scopus.com/authid/detail.uri?authorId=57220588566
  2. Rojas De La Cruz, Y.C. (2025). Análisis genético de curvas de crecimiento de bovinos de raza Brahman. Revista de Investigaciones Veterinarias del Perú. DOI:
    https://doi.org/10.15381/rivep.v36i3.29053
  3. Prediction models for live body weight and body compactness of Criollo sheep. The Indian Journal of Animal Sciences (2024).
    https://doi.org/10.56093/ijans.v94i7.148186
  4. Use of machine learning approaches for body weight prediction in Peruvian Corriedale Sheep. Smart Agricultural Technology (2024).
    https://doi.org/10.1016/j.atech.2024.100419
  5. Genetic Identification of Cattle, Pigs and Horses in Products of Animal Origin. REBIOL (2022).
    https://doi.org/10.17268/rebiol.2022.42.02.01

Laura Umfleet | Health Sciences | Best Researcher Award

Dr. Laura Umfleet | Health Sciences | Best Researcher Award

Associate Professor at Medical College of Wisconsin, United States

Dr. Laura Glass Umfleet, Psy.D., ABPP (CN), is an accomplished clinical neuropsychologist and Associate Professor of Neurology at the Medical College of Wisconsin. With expertise in adult cognitive disorders, especially neurodegeneration and congenital conditions, she is nationally certified by the American Board of Professional Psychology. Dr. Glass Umfleet serves as an editorial board member and an international leader in data-sharing initiatives. Her contributions span clinical practice, academic mentorship, and scientific collaboration, reinforcing her commitment to advancing neuropsychology through research, education, and open science initiatives. 🌍🧠📚

Publication Profile

Scopus

Academic background

Dr. Glass Umfleet earned her B.S. in Psychology with a Biology minor in 2006 and an M.S. in Psychology in 2008 from the University of Central Missouri. She completed her Psy.D. in Clinical Psychology from Roosevelt University, Chicago, in 2012 with APA accreditation. Her predoctoral internship at the University of Florida focused on neuropsychology, followed by a postdoctoral fellowship in Clinical Neuropsychology at the Medical College of Wisconsin and the Clement J. Zablocki VA Medical Center. Her educational journey reflects a strong foundation in clinical and cognitive neuroscience. 🎓📖🧬

Professional Experience

Since 2014, Dr. Glass Umfleet has served at the Medical College of Wisconsin as a Clinical Neuropsychologist, advancing to Associate Professor in 2021. She is also an Adjunct Assistant Professor at the University of Wisconsin-Milwaukee. Her clinical, academic, and leadership roles reflect her deep involvement in patient care, teaching, and research. Her professional path includes national and international presentations, peer-reviewed workshops, and active roles in neuropsychology organizations, positioning her as a respected expert in her field. 🏥📊👩‍🏫

Awards and Honors

Dr. Glass Umfleet’s professional recognition includes board certification in Clinical Neuropsychology by ABPP and editorial positions, such as Associate Editor for the Journal of Alzheimer’s Disease. She has been selected for numerous leadership roles in international neuropsychology societies, including chairing the INS WINDS SIG and serving on committees focused on student mentorship and open science. Her involvement in editorial reviews and scientific programs reflects high standing and trust in her scholarly expertise. 🏅🧠🌟

Research Focus

Dr. Glass Umfleet’s research focuses on cognitive functioning in aging and neurological conditions, including Alzheimer’s disease and adult congenital heart disease. She explores digital neuropsychological assessment, cognitive subtypes, and psychometric methods through collaborative networks like the National Neuropsychology Network. As Chair of INS WINDS, she champions data sharing and precision neuropsychology. Her work bridges clinical insight and innovative methodologies, promoting open science and advancing the field’s understanding of brain-behavior relationships. 🧪🧩💻

Publication Top Notes

🧠 Changes in cerebrovascular reactivity within functional networks in older adults with long-COVID

Year: 2025 | 🧬🧓🦠🧠 Frontiers in Neurology

🧪 Computerized adaptive test strategies for the matrix reasoning subtest of the Wechsler Adult Intelligence Scale, 4th Edition (WAIS-IV)

Year: 2024 | Cited by: 1 | 📊🧠📈📘 Journal of the International Neuropsychological Society

Conclusion

Dr. Laura Glass Umfleet is an exemplary clinical neuropsychologist whose sustained research productivity, innovative methodologies, and impactful publications over nearly two decades underscore her status as a leading figure in the field. Her national and international influence is evident through her leadership roles in global initiatives like the WINDS SIG and ACHD/Neuro Working Group, as well as frequent invited presentations at top-tier conferences. Board-certified by the ABPP and serving as Associate Professor at the Medical College of Wisconsin, Dr. Umfleet pairs academic excellence with clinical relevance. Her dedication to mentoring, editorial service, and advancing open science in neuropsychology further cements her as a highly deserving recipient of a Best Researcher Award.

 

Dr. Rania Mohamed | Biological Sciences | Best Researcher Award

Dr. Rania Mohamed | Biological Sciences | Best Researcher Award

PhD student, Southwest University, China

Dr. Rania Mohamed Awad is a dedicated researcher and lecturer in the field of food science, currently pursuing her Ph.D. at Southwest University, Chongqing, China. She also serves as a lecturer at Khartoum University, Sudan. With a strong background in biochemistry and food science, she has made significant contributions to research on antioxidant capacity, phytochemistry, and food processing. Her work explores innovative techniques to enhance food quality, safety, and nutritional value. Passionate about scientific discovery, she has published multiple research papers in high-impact journals, attended prestigious academic conferences, and actively collaborates on groundbreaking research projects.

Publication Profile

Scopus

🎓 Education:

Dr. Rania earned her Bachelor’s degree in Agriculture with a specialization in Biochemistry and Food Science from Khartoum University in 2006. She further pursued a Master’s degree in Food Science and Technology in 2010, where her dissertation on the antioxidant properties of date palm fruits received top honors. Currently, she is completing her Ph.D. at Southwest University, China, focusing on innovative food processing techniques, with a strong emphasis on the impact of extraction temperature on protein properties in tea science.

💼 Experience:

With years of teaching and research experience, Dr. Rania has played a pivotal role in academia. As a lecturer at Khartoum University, she has mentored students in various subjects, including biochemistry, organic chemistry, analytical chemistry, and enzyme studies. Her research interests span food biotechnology, chemical safety, flavor enhancement, and extending food shelf life. She has successfully completed five research projects and is currently working on another. She is also actively involved in international collaborations, including participation in the 2024 China-ASEAN Xishan Forum academic conference.

🏆 Awards and Honors:

Dr. Rania has been recognized for her exceptional contributions to food science and research. Her Master’s dissertation was the highest-scoring in the 2013 academic year. She has published innovative research, including a novel study on the effects of extraction temperature on protein from date palm pollen, which has gained attention in the scientific community. Additionally, she is a member of prestigious societies related to food science and human protection.

🔍 Research Focus:

Her research expertise encompasses food science, phytochemistry, chemical biology, agricultural plant science, structural biology, polymer chemistry, and tea science. She explores new methods to improve food quality, develop functional foods, and enhance food safety through biotechnology. Her ongoing projects focus on novel extraction techniques and bioactive compound analysis to optimize food processing methods.

📜 Conclusion:

Dr. Rania Mohamed Awad is a passionate scientist dedicated to advancing food science through research, innovation, and education. Her work bridges the gap between traditional food processing techniques and modern scientific advancements. With a strong academic foundation, international collaborations, and impactful research contributions, she continues to make a difference in the field of food science and technology.

📚 Publications:

Effects of Extraction Temperature of Protein from Date Palm Pollen on the Astringency Taste of Tea (2024) – Food DOI: 10.3390/foods14030508

Effect of Processing Methods on Alkaloids, Phytate, Phenolics, Antioxidants Activity and Minerals of Newly Developed Lupin (Lupinus albus L.) CultivarJournal of Food Processing and Preservation DOI: 10.1111/jfpp.12960

Changes in Chemical Composition and Total Energy as Affected by Fermentation and/or Cooking of Pearl Millet Flour Supplemented with Moringa or Fenugreek Seeds FlourInternational Food Research Journal (2017)

Changes in Protein Nutritional Quality as Affected by Processing of Millet Supplemented with Moringa Seed Flour (2018) – Journal of the Saudi Society of Agricultural Sciences DOI: 10.1016/j.jssas.2016.05.006

Chemical Composition, Antioxidant Capacity, and Mineral Extractability of Sudanese Date Palm (Phoenix dactylifera L.) FruitsFood Science & Nutrition DOI: 10.1002/fsn3.123