Martha S. Field, Ph.D.

Affiliations: 
2007 Cornell University, Ithaca, NY, United States 
Area:
Biochemistry
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"Martha Field"

Parents

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Patrick J. Stover grad student 2007 Cornell
 (Regulation of the 5-formyltetrahydrofolate futile cycle and de novo purine biosynthesis by 5,10-methenyltetrahydrofolate synthetase.)

Children

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Joanna L Fiddler post-doc 2019-2022 Cornell
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Publications

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Williams JT, Tiani KA, Foster MJ, et al. (2025) Systematic review of the impact of ginger extract and alpinetin on pregnancy outcomes in animal models. Bmc Complementary Medicine and Therapies. 25: 179
Bailey RL, MacFarlane AJ, Field MS, et al. (2024) Artificial intelligence in food and nutrition evidence: The challenges and opportunities. Pnas Nexus. 3: pgae461
Tiani KA, Arenaz CM, Spill MK, et al. (2024) The use of ginger bioactive compounds in pregnancy: an evidence scan and umbrella review of existing meta-analyses. Advances in Nutrition (Bethesda, Md.). 100308
Heyden KE, Malysheva OV, MacFarlane AJ, et al. (2024) Excess Folic Acid Exposure Increases Uracil Misincorporation into DNA in a Tissue-Specific Manner in a Mouse Model of Reduced Methionine Synthase Expression. The Journal of Nutrition
Blank HM, Hammer SE, Boatright L, et al. (2024) Late-life dietary folate restriction reduces biosynthesis without compromising healthspan in mice. Life Science Alliance. 7
Walsh DJ, Bernard DJ, Fiddler JL, et al. (2024) Vitamin B12 status and folic acid supplementation influence mitochondrial heteroplasmy levels in mice. Pnas Nexus. 3: pgae116
Blank HM, Hammer SE, Boatright L, et al. (2024) Late-life dietary folate restriction reduces biosynthetic processes without compromising healthspan in mice. Biorxiv : the Preprint Server For Biology
Stover PJ, Field MS, Andermann ML, et al. (2023) Neurobiology of eating behavior, nutrition, and health. Journal of Internal Medicine
Heyden KE, Fiddler JL, Xiu Y, et al. (2023) Reduced methionine synthase expression results in uracil accumulation in mitochondrial DNA and impaired oxidative capacity. Pnas Nexus. 2: pgad105
Fiddler JL, Blum JE, Heyden KE, et al. (2023) Impairments in SHMT2 expression or cellular folate availability reduce oxidative phosphorylation and pyruvate kinase activity. Genes & Nutrition. 18: 5
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