The impact of primary peristalsis, contractile reserve, and secondary peristalsis on esophageal clearance measured by timed barium esophagogram

Author:

Koop Andree H.1ORCID,Kahrilas Peter J.2ORCID,Schauer Jacob3,Pandolfino John E.2,Carlson Dustin A.2ORCID

Affiliation:

1. Division of Gastroenterology, Department of Medicine Mayo Clinic Jacksonville Florida USA

2. Division of Gastroenterology and Hepatology, Department of Medicine Northwestern University Chicago Illinois USA

3. Department of Preventive Medicine, Division of Biostatistics, Feinberg School of Medicine Northwestern University Chicago Illinois USA

Abstract

AbstractBackgroundPrimary and secondary peristalsis facilitate esophageal bolus transport; however, their relative impact for bolus clearance remains unclear. We aimed to compare primary peristalsis and contractile reserve on high‐resolution manometry (HRM) and secondary peristalsis on functional lumen imaging probe (FLIP) Panometry with emptying on timed barium esophagogram (TBE) and incorporate findings into a comprehensive model of esophageal function.MethodsAdult patients who completed HRM with multiple rapid swallows (MRS), FLIP, and TBE for esophageal motility evaluation and without abnormal esophagogastric junction outflow/opening or spasm were included. An abnormal TBE was defined as a 1‐min column height >5 cm. Primary peristalsis and contractile reserve after MRS were combined into an HRM–MRS model. Secondary peristalsis was combined with primary peristalsis assessment to describe a complementary neuromyogenic model.Key ResultsOf 89 included patients, differences in rates of abnormal TBEs were observed with primary peristalsis classification (normal: 14.3%; ineffective esophageal motility: 20.0%; absent peristalsis: 54.5%; p = 0.009), contractile reserve (present: 12.5%; absent: 29.3%; p = 0.05), and secondary peristalsis (normal: 9.7%; borderline: 17.6%; impaired/disordered: 28.6%; absent contractile response: 50%; p = 0.039). Logistic regression analysis (akaike information criteria, area under the receiver operating curve) demonstrated that the neuromyogenic model (80.8, 0.83) had a stronger relationship predicting abnormal TBE compared to primary peristalsis (81.5, 0.82), contractile reserve (86.8, 0.75), or secondary peristalsis (89.0, 0.78).Conclusions and InferencesPrimary peristalsis, contractile reserve, and secondary peristalsis were associated with abnormal esophageal retention as measured by TBE. Added benefit was observed when applying comprehensive models to incorporate primary and secondary peristalsis supporting their complementary application.

Publisher

Wiley

Subject

Gastroenterology,Endocrine and Autonomic Systems,Physiology

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