Die Fachzeitschriften und Artikel, auf die auf der PrecisionBiotics-Website verwiesen wird, finden Sie zur weiteren Recherche hier.


  1. Allen et al. (2016). Bifidobacterium longum 1714 as a translational psychobiotic: modulation of stress, electrophysiology and neurocognition in healthy volunteers. Translational Psychiatry, 6(11), pp.e939-e939.
  2. Turroni et al. (2012). Diversity of Bifidobacteria within the Infant Gut Microbiota. PLoS ONE, 7(5), p.e36957.
  3. Dinan, T. and Cryan, J. (2017). Brain–gut–microbiota axis — mood, metabolism and behaviour. Nature Reviews Gastroenterology & Hepatology, 14(2), pp.69-70.
  4. Dinan, T. and Cryan, J. (2015). The impact of gut microbiota on brain and behaviour. Current Opinion in Clinical Nutrition and Metabolic Care, 18(6), pp.552-558.
  5. Bonaz et al. (2018). The Vagus Nerve at the Interface of the Microbiota-Gut-Brain Axis. Frontiers in Neuroscience, 12.
  6. Ruffoli et al. (2011). The chemical neuroanatomy of vagus nerve stimulation. Journal of Chemical Neuroanatomy, 42(4), pp.288-296.
  7. Gershon, M. and Tack, J. (2007). The Serotonin Signaling System: From Basic Understanding to Drug Development for Functional GI Disorders. Gastroenterology, 132(1), pp.397-414.
  8. Kennedy et al. (2017). Kynurenine pathway metabolism and the microbiota-gut-brain axis. Neuropharmacology, 112, pp.399-412.
  9. Clemente et al. (2012). The Impact of the Gut Microbiota on Human Health: An Integrative View. Cell, 148(6), pp.1258-1270.
  10. Dinan, T., Stanton, C. and Cryan, J. (2013). Psychobiotics: A Novel Class of Psychotropic. Biological Psychiatry, 74(10), pp.720-726.
  11. Sarkar et al. (2016). Psychobiotics and the Manipulation of Bacteria–Gut–Brain Signals. Trends in Neurosciences, 39(11), pp.763-781.
  12. Foster et al. (2017). Stress & the gut-brain axis: Regulation by the microbiome. Neurobiology of Stress, 7, pp.124-136.
  13. Galland, L. (2014). The Gut Microbiome and the Brain. Journal of Medicinal Food, 17(12), pp.1261-1272.
  14. Diagram adapted from: Cryan, J. and Dinan, T. (2012). Mind-altering microorganisms: the impact of the gut microbiota on brain and behaviour. Nature Reviews Neuroscience, 13(10), pp.701-712.
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  18. Vyazovskiy, V. (2015). Sleep, recovery, and metaregulation: explaining the benefits of sleep. Nature and Science of Sleep, p.171.
  19. Mullington et al. (2009). Cardiovascular, Inflammatory, and Metabolic Consequences of Sleep Deprivation. Progress in Cardiovascular Diseases, 51(4), pp.294-302.
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  22. Mrazek, M., Franklin, M., Phillips, D., Baird, B. and Schooler, J. (2013). Mindfulness Training Improves Working Memory Capacity and GRE Performance While Reducing Mind Wandering. Psychological Science, 24(5), pp.776-781.
  23. ANDERSON, N. (1998). Levels of Analysis in Health Science: A Framework for Integrating Sociobehavioral and Biomedical Research. Annals of the New York Academy of Sciences, 840(1), pp.563-576.
  24. Scott et al. (2015). The Effects of Stress on Cognitive Aging, Physiology and Emotion (ESCAPE) Project. BMC Psychiatry, 15(1).
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  28. Whorwell et al. (2006). Efficacy of an Encapsulated Probiotic Bifidobacterium infantis 35624 in Women with Irritable Bowel Syndrome. The American Journal of Gastroenterology, 101(7), pp.1581-1590.
  29. Among gastroenterologists who recommended a brand of bacterial culture in AlphaImpactRx 2008–2017 surveys. Among doctors who recommended a brand of bacterial culture in AlphaImpactRx 2017 survey.
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