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The Journal of Pediatrics|January 16, 2026
Rectal Indomethacin Administration is Associated with a Lower Prevalence of Post-Endoscopic Retrograde Cholangiopancreatography Pancreatitis in Children: An Observational Cohort StudyMonique T Barakat, Roberto GugigGastrointestinal Endoscopy|July 30, 2020
Sequential endoscopist-driven phone calls improve the capture rate of adverse events after ERCP: a prospective studyMonique T Barakat, Subhas BanerjeeWorld Journal of Hepatology|January 14, 2021
Incidental biliary dilation in the era of the opiate epidemic: High prevalence of biliary dilation in opiate users evaluated in the Emergency DepartmentMonique T Barakat, Subhas BanerjeeGastrointestinal Endoscopy Clinics of North America|September 6, 2020
Novel Algorithms for Reprocessing, Drying and Storing EndoscopesMonique T Barakat, Subhas BanerjeeAnnals of Gastroenterology|July 23, 2025
Increased capture of post-endoscopic retrograde cholangiopancreatography adverse events by delayed (day 7) follow-up calls: a prospective comparison of physician- and nurse-initiated callsMonique T Barakat, Subhas BanerjeeJournal of Computer-Aided Molecular Design|October 1, 1995
The atom assignment problem in automated de novo drug design. 5. Tests for envelope-directed fragment placement based on molecular similarityM T Barakat, P M DeanJournal of Computer-Aided Molecular Design|August 1, 1995
The atom assignment problem in automated de novo drug design. 1. Transferability of molecular fragment propertiesM T Barakat, P M DeanJournal of Computer-Aided Molecular Design|August 1, 1995
The atom assignment problem in automated de novo drug design. 2. A method for molecular graph and fragment perceptionM T Barakat, P M DeanJournal of Computer-Aided Molecular Design|August 1, 1995
The atom assignment problem in automated de novo drug design. 3. Algorithms for optimization of fragment placement onto 3D molecular graphsM T Barakat, P M DeanJournal of Computer-Aided Molecular Design|October 1, 1995
The atom assignment problem in automated de novo drug design. 4. Tests for site-directed fragment placement based on molecular complementarityM T Barakat, P M DeanPageof 14