Brain activity during distention of the descending colon in humans
- 8 April 2004
- journal article
- research article
- Published by Wiley in Neurogastroenterology & Motility
- Vol. 16 (3), 299-309
- https://doi.org/10.1111/j.1365-2982.2004.00498.x
Abstract
Brain‐gut interaction is considered to be a major factor in the pathophysiology of irritable bowel syndrome. However, only limited information has been provided on the influence of gastrointestinal tract stimulation on the brain. Our aim in this study was to determine the specific regions of the brain that are responsible for visceral perception and emotion provoked by distention of the descending colon in humans. Fifteen healthy males aged 22 ± 1 participated in this study. Using a colonoscope, a balloon was inserted into the descending colon of each subject. After sham stimulation, the colon was randomly stimulated with bag pressures of 20 and 40 mmHg, and regional cerebral blood flow was measured by [15O] positron emission tomography. The subjects were asked to report visceral perception and emotion using an ordinate scale of 0–10. Colonic distention pressure dependently induced visceral perception and emotion, which significantly correlated with activation of specific regions of the brain including the prefrontal, anterior cingulate, parietal cortices, insula, pons, and the cerebellum. In conclusion, distention of the descending colon induces visceral perception and emotion. These changes significantly correlate with activation of specific regions in the brain including the limbic system and the association cortex, especially the prefrontal cortex.Keywords
This publication has 50 references indexed in Scilit:
- A Functional Anatomy of Anticipatory AnxietyNeuroImage, 1999
- The Inferential Impact of Global Signal Covariates in Functional Neuroimaging AnalysesNeuroImage, 1998
- How to Estimate Global Activity Independent of Changes in Local ActivityNeuroImage, 1997
- Brain-Gut Response to Stress and Cholinergic Stimulation in Irritable Bowel SyndromeJournal of Clinical Gastroenterology, 1993
- Evaluation of a 3D reconstruction algorithm for multi-slice PET scannersPhysics in Medicine & Biology, 1992
- Analytic 3D image reconstruction using all detected eventsIEEE Transactions on Nuclear Science, 1989
- Enhanced Detection of Focal Brain Responses Using Intersubject Averaging and Change-Distribution Analysis of Subtracted PET ImagesJournal of Cerebral Blood Flow & Metabolism, 1988
- Supplementary motor area structure and function: Review and hypothesesBehavioral and Brain Sciences, 1985
- Fully-three-dimensional positron emission tomographyPhysics in Medicine & Biology, 1980
- Functional heterogeneity of the prefrontal cortex in the monkey: a reviewBehavioral and Neural Biology, 1979