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A novel technique to remove migrated esophageal stent under fluoroscopy.

Authors :
Sigdel, Milan
Zhou, Xueliang
Song, Mengyao
Liu, Yiming
Zhang, Chengzhi
Jiao, Dechao
Source :
Abdominal Radiology. May2024, Vol. 49 Issue 5, p1646-1652. 7p.
Publication Year :
2024

Abstract

Purpose: To evaluate the efficacy and safety of a novel technique for removal of migrated esophageal stent (MES) under fluoroscopy. Methods: From January 2009 to April 2023, 793 patients with a dysphagia score of 3–4 underwent esophageal stenting at our center, and 25 patients (mean age: 70.06 years old; male/female: 15/10) underwent stent removal using "loop method" under fluoroscopy. The primary outcomes were technical success and complications. The secondary outcomes were procedure time, radiation exposure, biochemical indicators [white blood cell (WBC), hemoglobin (Hb), platelet (PLT), albumin (ALB), alanine transaminase (ALT), total bilirubin (TB), urea nitrogen (UN) and C-reactive protein] of pre- and post-treatment at 2 weeks. Results: Technical success was 100% without major complications. The mean procedure time was (39.44 ± 9.28) minutes, which showed no statistical significance between benign (n = 5) and malignant (n = 20) group [(42.40 ± 8.85) vs (38.71 ± 9.46) mins, p > 0.05]. The mean radiation exposure was (332.88 ± 261.47) mGy, which showed no statistical significance between benign and malignant group [(360.74 ± 231.43) vs (325.92 ± 273.54) mGy, p > 0.05]. Pre- and post-procedure Hb [(114.46 ± 11.96) vs. (117.57 ± 13.12) g/L] and ALB [(42.26 ± 3.39) vs. (44.12 ± 3.77) g/L] showed significant difference (p < 0.05), while WBC, PLT, CRP, and ALT showed no significance (p > 0.05). Conclusion: Fluoroscopy-guided "Loop method" for MES removal is an effective and safe alternative technique. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2366004X
Volume :
49
Issue :
5
Database :
Academic Search Index
Journal :
Abdominal Radiology
Publication Type :
Academic Journal
Accession number :
177371151
Full Text :
https://doi.org/10.1007/s00261-024-04281-0