Ultrasonographic study of mechanosensory properties in human esophagus during mechanical distension

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Abstract

Aim: To study the esophageal geometry and mechanosensation using endoscopic ultrasonography during volume-controlled ramp distensions in the distal esophagus. Methods: Twelve healthy volunteers underwent distension of a bag. During distension up to moderate pain the sensory intensity was assessed on a visual analogue scale (VAS). The esophageal deformation in terms of multidimensional stretch ratios and strains was calculated at different volumes and VAS levels. Distensions were done before and during administration of the anticholinergic drug butylscopolamine. Results: The stimulus-response (volume-VAS) curve did not differ without or with the administration of butylscopolamine. Analysis of stretch ratios demonstrated tensile stretch in circumferential direction, compression in radial direction and a small tensile stretch in longitudinal direction. A strain gradient existed throughout the esophageal wall with the largest circumferential deformation at the mucosal surface. The sensation intensity increased exponentially as function of the strains. Conclusion: The method provides information of esophageal deformation gradients that correlate to the sensation intensity. Hence, it can be used to study mechanosensation in the human esophagus. Further studies are needed to determine the exact deformation stimulus for the esophageal mechanoreceptors. © 2006 The WJG Press. All rights reserved.

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APA

Larsen, E., Reddy, H., Drewes, A. M., Arent-Nielsen, L., & Gregersen, H. (2006). Ultrasonographic study of mechanosensory properties in human esophagus during mechanical distension. World Journal of Gastroenterology, 12(28), 4517–4523. https://doi.org/10.3748/wjg.v12.i28.4517

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