Смотри, что у тебя внутри. Как микробы, живущие в нашем теле, определяют наше здоровье и нашу личность. Роб Найт. Читать онлайн. Newlib. NEWLIB.NET

Автор: Роб Найт
Издательство: АСТ
Серия: TED Books
Жанр произведения: Медицина
Год издания: 2015
isbn: 978-5-17-091312-1
Скачать книгу
Dynamics of the Human Vaginal Microbiota,” Science Translational Medicine 4, no. 132 (May 2, 2012): 132ra52; J. Ravel et al., “Daily Temporal Dynamics of Vaginal Microbiota Before, During and After Episodes of Bacterial Vaginosis,” Microbiome 1, no. 1 (December 2, 2013): 29.

      29

      R. Romero et al., “The Composition and Stability of the Vaginal Microbiota of Normal Pregnant Women Is Different from That of Non-Pregnant Women,” Microbiome 2, no. 1 (Febuary3, 2014): 4.

      30

      O. Koren et al., “Host Remodeling of the Gut Microbiome and Metabolic Changes During Pregnancy,” Cell 150, no. 3 (August 3, 2012): 470–80.

      31

      K. Aagaard et al., “The Placenta Harbors a Unique Microbiome,” Science Translational Medicine 6, no. 237 (May 21, 2014): 237ra65.

      32

      Romero et al., “Composition and Stability of Vaginal Microbiota of Normal Pregnant Women Different from That of Non-Pregnant Women.”

      33

      Michelle K. Osterman and Joyce A. Martin, “Changes in Cesarean Delivery Rates by Gestational Age: United States, 1996–2011,” NCHS Data Brief, no. 124, June 2013: 1–8; Luz Gibbons et al., The Global Numbers and Costs of Additionally Needed and Unnecessary Cesarean Sections Performed per Year: Overuse as a Barrier to Universal Coverage. Geneva, Switzerland: World Health Organization, 2010.

      34

      M. G. Dominguez-Bello et al., “Delivery Mode Shapes the Acquisition and Structure of the Initial Microbiota Across Multiple Body Habitats in Newborns,” Proceedings of the National Academy of Sciences of the United States of America 107, no. 26 (June 29, 2010): 11971–75.

      35

      G. V. Guibas et al., “Conception via In Vitro Fertilization and Delivery by Caesarean Section Are Associated with Paediatric Asthma Incidence,” Clinical and Experimental Allergy: Journal of the British Society for Allergy and Clinical Immunology 43, no. 9 (September 2013): 1058–66; L. Braback, A. Lowe, and A. Hjern, “Elective Cesarean Section and Childhood Asthma,” American Journal of Obstetrics and Gynecology 209, no. 5 (November 2013): 496; C. Roduit et al., “Asthma at 8 Years of Age in Children Born by Caesarean Section,” Thorax 64, no. 2 (February 2009): 107–13; M. C. Tollanes et al., “Cesarean Section and Risk of Severe Childhood Asthma: A Population-Based Cohort Study,” Journal of Pediatrics 153, no. 1 (July 2008): 112–16; B. Xu et al., “Caesarean Section and Risk of Asthma and Allergy in Adulthood,” Journal of Allergy and Clinical Immunology 107, no. 4 (April 2001): 732–33.

      36

      M. Z. Goldani et al., “Cesarean Section and Increased Body Mass Index in School Children: Two Cohort Studies from Distinct Socioeconomic Background Areas in Brazil,” Nutrition Journal 12, no. 1 (July 25, 2013): 104; A. A. Mamun et al., “Cesarean Delivery and the Long-term Risk of Offspring Obesity,” Obstetrics and Gynecology 122, no. 6 (December 2013): 1176–83; D. N. Mesquita et al., “Cesarean Section Is Associated with Increased Peripheral and Central Adiposity in Young Adulthood: Cohort Study,” PloS One 8, no. 6 (June 27, 2013): e66827; K. Flemming et al., “The Association Between Caesarean Section and Childhood Obesity Revisited: A Cohort Study,” Archives of Disease in Childhood 98, no. 7 (July 2013): 526–32; E. Svensson et al., “Caesarean Section and Body Mass Index Among Danish Men,” Obesity 21, no. 3 (March 2013): 429–33; H. T. Li, Y. B. Zhou, and J. M. Liu, “The Impact of Cesarean Section on Offspring Overweight and Obesity: A Systematic Review and Meta-Analysis,” International Journal of Obesity 37, no. 7 (July 2013): 893–99; H. A. Goldani et al., “Cesarean Delivery Is Associated with an Increased Risk of Obesity in Adulthood in a Brazilian Birth Cohort Study,” American Journal of Clinical Nutrition 93, no. 6 (June 2011): 1344–47; L. Zhou et al., “Risk Factors of Obesity in Preschool Children in an Urban Area in China,” European Journal of Pediatrics 170, no. 11 (November 2011): 1401–6.

      37

      T. Marrs et al., “Is There an Association Between Microbial Exposure and Food Allergy? A Systematic Review,” Pediatric Allergy and Immunology: Official Publication of the European Society of Pediatric Allergy and Immunology 24, no. 4 (June 2013): 311–20 e8.

      38

      J. Penders et al., “Establishment of the Intestinal Microbiota and Its Role for Atopic Dermatitis in Early Childhood,” Journal of Allergy and Clinical Immunology 132, no. 3 (September 2013): 601–7 e8; K. Pyrhonen et al., “Caesarean Section and Allergic Manifestations: Insufficient Evidence of Association Found in PopulationBased Study of Children Aged 1 to 4 Years,” Acta Paediatrica 102, no. 10 (October 2013): 982–89; F. A. van Nimwegen et al., “Mode and Place of Delivery, Gastrointestinal Microbiota, and Their Influence on Asthma and Atopy,” Journal of Allergy and Clinical Immunology 128, no. 5 (November 2011): 948–55 e1–3; P. Bager, J. Wohlfahrt, and T. Westergaard, “Caesarean Delivery and Risk of Atopy and Allergic Disease: Meta-Analyses,” Clinical and Experimental Allergy: Journal of the British Society for Allergy and Clinical Immunology 38, no. 4 (April 2008): 634–42; K. Negele et al., “Mode of Delivery and Development of Atopic Disease During the First 2 Years of Life,” Pediatric Allergy and Immunology: Official Publication of the European Society of Pediatric Allergy and Immunology 15, no. 1 (February 2004): 48–54.

      39

      M. B. Azad et al., “Gut Microbiota of Healthy Canadian Infants: Profiles by Mode of Delivery and Infant Diet at 4 Months,” CMAJ: Canadian Medical Association Journal 185, no. 5 (March 19, 2013): 385–94.

      40

      J. E. Koenig et al., “Succession of Microbial Consortia in the Developing Infant Gut Microbiome,” supplement 1, Proceedings of the National Academy of Sciences of the United States of America 108 (March 15, 2011): 4578–85.

      41

      G. D. Wu et al., “Linking Longterm Dietary Patterns with Gut Microbial Enterotypes,” Science 334, no. 6052 (October 7, 2011): 105–8.

      42

      G. D. Wu et al., “Linking Longterm Dietary Patterns with Gut Microbial Enterotypes,” Science 334, no. 6052 (October 7, 2011): 105–8.

      43

      J. Qin et al., “A Human Gut Microbial Gene Catalogue Established by Metagenomic Sequencing,” Nature 464, no. 7285 (March 4, 2010): 59–65.

      44

      T. Yatsunenko et al., “Human Gut Microbiome Viewed Across Age and Geography,” Nature 486, no. 7402 (May 9, 2012): 222–7.

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