CHARACTERISTICS OF THE PROPAGATING PRESSURE WAVE IN THE ESOPHAGUS

Citation
Re. Clouse et al., CHARACTERISTICS OF THE PROPAGATING PRESSURE WAVE IN THE ESOPHAGUS, Digestive diseases and sciences, 41(12), 1996, pp. 2369-2376
Citations number
22
Categorie Soggetti
Gastroenterology & Hepatology
ISSN journal
01632116
Volume
41
Issue
12
Year of publication
1996
Pages
2369 - 2376
Database
ISI
SICI code
0163-2116(1996)41:12<2369:COTPPW>2.0.ZU;2-G
Abstract
Understanding the relationships of intraluminal manometric events to b olus transit through the esophagus has been limited by conventional ma nometric analysis methods. We reconstructed pressure events in the axi al direction in order (1) to describe the peristaltic pressure wave as it propagates through the esophagus in the direction of the bolus and (2) to determine what sampling interval along the esophageal length i s required for accurate representation. Esophageal manometric studies using the stepwise withdrawal method were performed in 10 asymptomatic volunteers. Propagating wave forms were created at 0.2-sec intervals and analyzed in static and dynamic fashion from averaged waves at each 1-3 cm of esophageal length. A distinctive and similar appearance to the propagating wave form, comprised of three sequential but overlappi ng contraction segments in the esophageal body, was present in nine su bjects. The propagating wave decelerated as it approached the second r egion (smooth-muscle esophagus) End extended over as much as 15.1 +/- 0.7 cm of esophageal length. No significant differences in wave front propagation, length, or velocity could be determined if the sampling i nterval increased from 1 to 3 cm of esophageal length, but peak amplit udes were reduced by as much as 14.2%. We conclude that the esophageal pressure wave, when viewed in the direction of bolus transit, is broa d and typically comprised of three sequential contraction components. Sampling at > 1-cm intervals along the esophageal length significantly alters the wave appearance and mal be unsatisfactory in the distal es ophagus. Axial transformations of manometric data potentially will pro vide better information concerning the neuromuscular control of perist alsis and events responsible for bolus movement.