Related Experiment Video
Updated: Aug 5, 2026

Standardization of Basket Use in Sialendoscopy: A Ten-Year Retrospective Study
Published on: June 6, 2025
Spiral basket geometry improves procedural efficiency and reduces device escalation in small bile duct stones: a
Takeshi Ogura1,2,3, Kohsaku Ohnishi4, Takamitsu Sato5
1Osaka Medical and Pharmaceutical University Hospital, Pancreatobiliary Advanced Medical Center, Japan, Takatsuki.
Abstract:
Background and study aims The optimal first-line device for ERCP removal of small common bile duct stones (CBDS) remains uncertain. Whether basket geometry-independent of device category-influences procedural efficiency has not been evaluated in a randomized trial. We aimed to compare a spiral-configured 8-wire basket with a standard 8-wire basket for small CBDS. Patients and Methods In this multicenter randomized controlled trial, patients with CBDS ≤8 mm were randomly assigned (1:1) to stone extraction using a standard or spiral-configured 8-wire basket. Results Among 200 randomized patients, 193 underwent basket insertion (spiral group, n=97; standard group, n=96). First-line procedural success without device escalation within 10 minutes was significantly higher in the spiral group than in the standard group (97.9% vs 85.4%, 95% CI 4.9-20.1; p=0.004), corresponding to a number needed to treat of 8. The spiral basket required fewer sweeps (2.71±1.41 vs 3.31±1.67; p=0.01) and shorter procedural time (3.96±2.86 min vs 5.48±4.38 min; p=0.01). Rates of adverse events were comparable between groups. Mean device-related costs were lower in the spiral group (mean difference -USD108; bootstrap 95% CI -185 to -42). Conclusions A spiral basket configuration improved early procedural efficiency and reduced device escalation and device-related costs, without improving the final stone-clearance rate or increasing adverse events. The spiral basket was not compared with balloon extraction and should not be interpreted as superior to it. Although the device evaluated is currently available primarily in Japan, the geometric principle underlying its advantage may inform device development more broadly. (UMIN000055497).
