Audrey Martinez
Research Manager
Also affiliated: Oklahoma State University (2002); Centre National de la Recherche Scientifique (2015); Inserm (2015); University of Reunion Island (2015); Processus Infectieux en Milieu Insulaire Tropical (2015); Bayer (France) (2007); Institut de Recherche pour le Développement (2015)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Audrey Martinez investigates the impact of lifestyle interventions on maternal and infant health, particularly in populations experiencing obesity. Her recent work includes a randomized controlled trial assessing the effects of an exercise program on maternal health and birth outcomes in sedentary pregnant participants with obesity. Martinez has also explored the modulation of human milk composition through dietary interventions in lactating women with obesity, examining how a Mediterranean diet plan affects maternal energy intake and milk bioactives. Further research delves into the associations between maternal immune cell gene expression, the maternal gut microbiome, milk composition, and the infant gut microbiome. Her scholarship metrics include an h-index of 4 with 161 citations across 8 publications. Key collaborators include Aline Andres and Clark Sims from the University of Arkansas for Medical Sciences.
Metrics
- h-index: 4
- Publications: 8
- Citations: 161
Positions
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Research Manager publications 2024University of Arkansas for Medical Sciences Institution web page
Selected Publications
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Better Maternal Dietary Quality During Pregnancy Is Associated With Improved Adaptive Behavior and Cognitive Performance in Offspring Through 24 Months: The Glowing Study (2026)
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Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites (2024)
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Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome (2024)
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Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study (2024)
Collaboration Network
Top Collaborators
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study
- Better Maternal Dietary Quality During Pregnancy Is Associated With Improved Adaptive Behavior and Cognitive Performance in Offspring Through 24 Months: The Glowing Study
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Maternal FUT2 Secretor Phenotype Is Associated With Human Milk Oligosaccharides and Polyphenol Metabolites Following a Mediterranean Dietary Intervention: A Pilot Study
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
- Dietary modulation of human milk bioactives is associated with maternal FUT2 secretor phenotype: an exploratory analysis of carotenoids and polyphenol metabolites
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