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The information on this site is from academic and research studies. Applicability to humans must be determined by a licensed medical professional.

Partial list of Citations used for Recommendations or Conditions

Recent additions may not be included. There is an intentional delay in making those available.

  1. Ketogenic diet enhances neurovascular function with altered gut microbiome in young healthy mice.
    Scientific reports (Sci Rep ) Vol: 8 Issue 1 Pages: 6670
    Pub: 2018 Apr 27 Epub: 2018 Apr 27
    • Ma D
    • Wang AC
    • Parikh I
    • Green SJ
    • Hoffman JD
    • Chlipala G
    • Murphy MP
    • Sokola BS
    • Bauer B
    • Hartz AMS
    • Lin AL

  2. Energy-dense diet triggers changes in gut microbiota, reorganization of gut-brain vagal communication and increases body fat accumulation
    Acta neurobiologiae experimentalis (Acta Neurobiol Exp (Wars) ) Vol: 77 Issue 1 Pages: 18-30
    Pub: 2017 Epub:
    • Vaughn AC
    • Cooper EM
    • DiLorenzo PM
    • O’Loughlin LJ
    • Konkel ME
    • Peters JH
    • Hajnal A
    • Sen T
    • Lee SH
    • de La Serre CB
    • Czaja K

  3. Differences in Gut Metabolites and Microbial Composition and Functions between Egyptian and U.S. Children Are Consistent with Their Diets.
    mSystems (mSystems ) Vol: 2 Issue 1 Pages:
    Pub: 2017 Jan-Feb Epub: 2017 Feb 7
    • Shankar V
    • Gouda M
    • Moncivaiz J
    • Gordon A
    • Reo NV
    • Hussein L
    • Paliy O

  4. From an imbalance to a new imbalance: Italian-style gluten-free diet alters the salivary microbiota and metabolome of African celiac children.
    Scientific reports (Sci Rep ) Vol: 5 Issue Pages: 18571
    Pub: 2015 Dec 18 Epub: 2015 Dec 18
    • Ercolini D
    • Francavilla R
    • Vannini L
    • De Filippis F
    • Capriati T
    • Di Cagno R
    • Iacono G
    • De Angelis M
    • Gobbetti M

  5. Influence of a diet enriched with virgin olive oil or butter on mouse gut microbiota and its correlation to physiological and biochemical parameters related to metabolic syndrome.
    PloS one (PLoS One ) Vol: 13 Issue 1 Pages: e0190368
    Pub: 2018 Epub: 2018 Jan 2
    • Prieto I
    • Hidalgo M
    • Segarra AB
    • Martínez-Rodríguez AM
    • Cobo A
    • Ramírez M
    • Abriouel H
    • Gálvez A
    • Martínez-Cañamero M

  6. Influence of diet on the gut microbiome and implications for human health.
    Journal of translational medicine (J Transl Med ) Vol: 15 Issue 1 Pages: 73
    Pub: 2017 Apr 8 Epub: 2017 Apr 8
    • Singh RK
    • Chang HW
    • Yan D
    • Lee KM
    • Ucmak D
    • Wong K
    • Abrouk M
    • Farahnik B
    • Nakamura M
    • Zhu TH
    • Bhutani T
    • Liao W

  7. High-fat diet reduces the level of secretory immunoglobulin A coating of commensal gut microbiota.
    Bioscience of microbiota, food and health (Biosci Microbiota Food Health ) Vol: 38 Issue 2 Pages: 55-64
    Pub: 2019 Epub: 2019 Jan 26
    • Muhomah TA
    • Nishino N
    • Katsumata E
    • Haoming W
    • Tsuruta T

  8. Influence of diet and spiramycin on <i>Actinomyces viscosus</i>-associated experimental periodontitis.
    Newsletter (International Academy of Periodontology) (Newsl Int Acad Periodontol ) Vol: 2 Issue 1 Pages: 5-11
    Pub: 1992 Mar Epub:
    • Keyes PH
    • Rams TE
    • Jordan HV

  9. Temporal microbiota changes of high-protein diet intake in a rat model.
    Anaerobe (Anaerobe ) Vol: 47 Issue Pages: 218-225
    Pub: 2017 Oct Epub: 2017 Jun 17
    • Mu C
    • Yang Y
    • Luo Z
    • Zhu W

  10. Curated database of commensal, symbiotic and pathogenic microbiota
    Generative Bioinformatics (Center of Excellence in Generative Medicine ) Vol: Issue Pages:
    Pub: 2014 Jun Epub:
    • D'Adamo Peter

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