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Gastrointestinal Physiology Anson Lowe - Course Director Alway Bldg., M-207 E-mail: lowe@stanford.edulowe@stanford.edu
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A basic understanding of the overall organization of the gastrointestinal system. An understanding of how the different gastrointestinal organs are regulated and coordinated with each other Overview; enteric nervous system
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Textbook: ◦ Syllabus-primary source ◦ Guyton and Hall Textbook of Medical Physiology, 13 th ed. (2016) Available in digital form from Lane Library. ◦ Endoscopy videos: The DAVE Project (Digital Atlas of Video Education) https://itunes.apple.com/us/podcast/dave-project- gastroenterology/id134278089?mt=2
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R. Horvitz
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Grant’s Atlas, 1972
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Gastrointestinal Organs Oral cavity Salivary glands Esophagus Stomach Liver Gallbladder Pancreas Small intestine Large intestine Rectum and anus
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Physiological Processes Muscular contraction/Motility Nervous Endocrine system Exocrine system Epithelial transport Biochemical biosynthesis & detoxification
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Pathology Oncology Infectious Disease Nutrition Metabolism Motility/neurobiology Vascular Endocrine Immunology/autoimmune diseases
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Grant’s Atlas, 1972
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Henry Gray (1825–1861). Anatomy of the Human Body. 1918.
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Integrative Functions Enteric Nervous System Gastrointestinal Hormones
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GI Motility and Nervous System Control Enteric NS controls: GI motility and movement of lumenal contents Secretion of digestive enzymes and fluids Absorption of digestive products, water and electrolytes Circulation of blood and the removal of absorbed substances
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Typical cross-section of the gut
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Cellular organization of GI smooth muscle
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Membrane potentials in intestinal smooth muscle
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The gastric action potential
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Annu. Rev. Physiol. 2006. 68:307–343 Interstitial Cells of Cajal
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In addition to intrinsic muscle cell activity, the GI tract is endowed with… A nervous system of its own
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Myenteric and submucosal plexuses 100,000,000 neurons!
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Descending input to both plexuses
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Relation between enteric and sympathetic and para- sympathetic nervous systems
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Overall control by sympathetic nervous system
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Enteric sensation sends inputs to higher centers and feedback input to enteric nervous system
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Importance of enteric nervous system for peristalsis
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Excitatory, cholinergic motor neurons activate circular muscle contraction
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The GI neuromuscular unit
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Excitatory junction potentials are very slow
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Enteric inhibitory neurons oppose depolarization, contraction
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There are many putative neurotransmitter substances
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Role of NO as inhibitor of GI contractility
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Enteric NOS-containing neurons NOS often colocalized w/ VIP or NPY
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Inhibitory neurons project downstream to relax circular muscle in advance of intraluminal content
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Propulsion generated by coordinated contractions of smooth muscles
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Distension causes reflexive upstream contraction
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Diseases arising from deficient enteric neurons Adynamic Ileus stress response Chaga’s Disease (Trypanosoma Cruzi) megacolon and megaesophagus. Paraneoplastic syndromes Hirschsprung’s disease congenital megacolon, agangliosis
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Normal Adominal X-ray
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Adynamic Ileus
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Hirschsprung’s Disease Rev. Inst. Med. trop. S. Paulo vol.43 no.4 São Paulo Aug. 2001
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