A novel ultrasound technique to study the biomechanics of the human esophagus in vivo
- 1 May 2002
- journal article
- clinical trial
- Published by American Physiological Society in American Journal of Physiology-Gastrointestinal and Liver Physiology
- Vol. 282 (5) , G785-G793
- https://doi.org/10.1152/ajpgi.00394.2001
Abstract
The objectives of this study were to validate a novel ultrasound technique and to use it to study the circumferential stress-strain properties of the human esophagus in vivo. A manometric catheter equipped with a high-compliance bag and a high-frequency intraluminal ultrasonography probe was used to record esophageal pressure and images. Validation studies were performed in vitro followed by in vivo studies in healthy human subjects. Esophageal distensions were performed with either an isovolumic (5–20 ml of water) or with an isobaric (10–60 mmHg) technique. Sustained distension was also performed for 3 min in each subject. The circumferential wall stress and strain were calculated. In vitro studies indicate that the ultrasound technique can make measurements of the esophageal wall with an accuracy of 0.01 mm. The in vivo studies provide the necessary data to compute the Kirchhoff's stress, Green's strain, and Young's elastic modulus during esophageal distensions. The stress-strain relationship revealed a linear shape, the slope of which corresponds to the Young's modulus. During sustained distensions, we found dynamic changes of stress and strain during the period of distension. We describe and validate a novel ultrasound technique that allows measurement of biomechanical properties of the esophagus in vivo in humans.Keywords
This publication has 31 references indexed in Scilit:
- The esophageal muscle thickness in patients with hypertensive esophageal peristalsisGastroenterology, 2000
- Correlation between esophageal muscle thickness and intraluminal pressures in normal subjects: An ultrasonographic studyGastroenterology, 2000
- Biomechanics of the gastrointestinal tractNeurogastroenterology & Motility, 1996
- Altered rectal perception is a biological marker of patients with irritable bowel syndromeGastroenterology, 1995
- A new combined high-frequency ultrasound-impedance planimetry measuring system for the quantification of organ wall biomechanics in vivoJournal of Biomechanics, 1995
- Measurement of human esophageal tone in vivoGastroenterology, 1993
- Biomechanical characteristics of the human esophagusDigestive Diseases and Sciences, 1993
- Resistance Vessel Structure in HypertensionJournal of Cardiovascular Pharmacology, 1993
- Mechanics of Sphincter Action. STUDIES ON THE LOWER ESOPHAGEAL SPHINCTERJournal of Clinical Investigation, 1973
- Mechanical properties of the esophageal wallJournal of Clinical Investigation, 1971