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1 Cholecystokinin regulates satiation independently of the abdominal vagal nerve in a pig model of total subdiaphragmatic vagotomy
article 2015    
Author: Ripken, D. · Wielen, N. van der · Meulen, J. van der · Schuurman, T. · Witkamp, R.F. · Hendriks, H.F.J. · Koopmans, S.J.
Keywords: Biology · Cholecystokinin · Devazepide · Exendin (9-39) · Food intake regulation · Glucagon-like peptide 1 · Vagal nerve · Cholecystokinin · Cholecystokinin A receptor · Glucagon like peptide 1 · Glucagon like peptide 1 receptor · Glucose · Insulin · Paracetamol · Abdominal vagal nerve · Animal experiment · Animal model · Animal tissue · Autopsy · Cholecystokinin blood level · Controlled study · Drug absorption · Drug blood level · Fluid intake · Food intake · Glucose blood level · Hormonal regulation · Hormone response · Insulin blood level · Intestine motility · Male · Maximum plasma concentration · Nonhuman · Postprandial state · Patiety · Sham procedure · Stomach absorption · Stomach content · Stomach emptying · Subdiaphragmatic vagotomy · Time to maximum plasma concentration · Vagotomy · Vagus nerve · Weight gain · Biomedical Innovation · Healthy Living · Life · MSB - Microbiology and Systems Biology · ELSS - Earth, Life and Social Sciences
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