}

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. Increased growth of Bifidobacterium and Eubacterium by germinated barley foodstuff, accompanied by enhanced butyrate production in healthy volunteers.
    International journal of molecular medicine (Int J Mol Med ) Vol: 3 Issue 2 Pages: 175-9
    Pub: 1999 Feb Epub:
    • Kanauchi O
    • Fujiyama Y
    • Mitsuyama K
    • Araki Y
    • Ishii T
    • Nakamura T
    • Hitomi Y
    • Agata K
    • Saiki T
    • Andoh A
    • Toyonaga A
    • Bamba T

  2. Gut microbiome composition is linked to whole grain-induced immunological improvements.
    The ISME journal (ISME J ) Vol: 7 Issue 2 Pages: 269-80
    Pub: 2013 Feb Epub: 2012 Oct 4
    • Martínez I
    • Lattimer JM
    • Hubach KL
    • Case JA
    • Yang J
    • Weber CG
    • Louk JA
    • Rose DJ
    • Kyureghian G
    • Peterson DA
    • Haub MD
    • Walter J

  3. In vitro evaluation of the microbiota modulation abilities of different sized whole oat grain flakes.
    Anaerobe (Anaerobe ) Vol: 16 Issue 5 Pages: 483-8
    Pub: 2010 Oct Epub: 2010 Jul 17
    • Connolly ML
    • Lovegrove JA
    • Tuohy KM

  4. In situ identification and quantification of starch-hydrolyzing bacteria attached to barley and corn grain in the rumen of cows fed barley-based diets.
    FEMS microbiology ecology (FEMS Microbiol Ecol ) Vol: 91 Issue 8 Pages: fiv077
    Pub: 2015 Aug Epub: 2015 Jul 2
    • Xia Y
    • Kong Y
    • Seviour R
    • Yang HE
    • Forster R
    • Vasanthan T
    • McAllister T

  5. Effects of two whole-grain barley varieties on caecal SCFA, gut microbiota and plasma inflammatory markers in rats consuming low- and high-fat diets.
    The British journal of nutrition (Br J Nutr ) Vol: 113 Issue 10 Pages: 1558-70
    Pub: 2015 May 28 Epub: 2015 Apr 13
    • Zhong Y
    • Marungruang N
    • Fåk F
    • Nyman M

  6. In vitro fermentation of oat and barley derived beta-glucans by human faecal microbiota.
    FEMS microbiology ecology (FEMS Microbiol Ecol ) Vol: 64 Issue 3 Pages: 482-93
    Pub: 2008 Jun Epub: 2008 Apr 21
    • Hughes SA
    • Shewry PR
    • Gibson GR
    • McCleary BV
    • Rastall RA

  7. High Molecular Weight Barley ß-Glucan Alters Gut Microbiota Toward Reduced Cardiovascular Disease Risk.
    Frontiers in microbiology (Front Microbiol ) Vol: 7 Issue Pages: 129
    Pub: 2016 Epub: 2016 Feb 10
    • Wang Y
    • Ames NP
    • Tun HM
    • Tosh SM
    • Jones PJ
    • Khafipour E

  8. Dietary fiber-rich barley products beneficially affect the intestinal tract of rats.
    The Journal of nutrition (J Nutr ) Vol: 132 Issue 12 Pages: 3704-14
    Pub: 2002 Dec Epub:
    • Dongowski G
    • Huth M
    • Gebhardt E
    • Flamme W

  9. 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

  10. Extrusion of barley and oat influence the fecal microbiota and SCFA profile of growing pigs.
    Food & function (Food Funct ) Vol: 7 Issue 2 Pages: 1024-32
    Pub: 2016 Feb Epub:
    • Moen B
    • Berget I
    • Rud I
    • Hole AS
    • Kjos NP
    • Sahlstrøm S

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