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Preclinical Development of a 3D Bili-MRI Reconstruction Tool and an Artificial Intelligence Algorithm to Assist Endoscopists in Performing Endoscopic Retrograde Cholangiopancreatography (ERCP)

Preclinical Development of a 3D Bili-MRI Reconstruction Tool and an Artificial Intelligence Algorithm to Assist Endoscopists in Performing Endoscopic Retrograde Cholangiopancreatography (ERCP) : MAAGIE

Status
Not yet recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07401485
Acronym
MAAGIE
Enrollment
100
Registered
2026-02-10
Start date
2026-03-02
Completion date
2026-07-02
Last updated
2026-02-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Patients With Biliary Stricture Treated During ERCP With Available MRCP and Abdominal CT Scan

Keywords

ERCP, 3D ERCP, biliary tree, cholangiocarcinoma, biliary stricture, 3D navigation, endoscopy

Brief summary

ERCP is a complex interventional endoscopic procedure based on 2D visualization of the biliary tract. 3D modeling and AI are promising solutions to improve navigation and safety during ERCP. The MAAGIE project was designed to create one of these innovative solutions and received ANR funding in 2024. It includes several Work Packages, among which the first WP involves creating a database from imaging data of the biliary tract already collected during clinical care. The main objective of our study will be to develop and validate a tool that enables 3-dimensional modeling of the biliary tract from preoperative MRCP and abdominal CT scan sequences, allowing better visualization and understanding of patients' biliary anatomy before and during ERCP.

Detailed description

ERCP is a complex interventional endoscopic procedure based on 2D visualization of the biliary tract. 3D modeling and AI are promising solutions to improve navigation and safety during ERCP. The MAAGIE project was designed to create one of these innovative solutions and received ANR funding in 2024. It includes several Work Packages, among which the first WP involves creating a database from imaging data of the biliary tract already collected during clinical care. The main objective of our study will be to develop and validate a tool that enables 3-dimensional modeling of the biliary tract from preoperative MRCP and abdominal CT scan sequences, allowing better visualization and understanding of patients' biliary anatomy before and during ERCP. This is a bicentric retrospective study based on imaging data collected during routine care. Patients were monitored as part of the usual care pathway for individuals undergoing ERCP in the endoscopy units of Saint Antoine Hospital or Henri Mondor Hospital for a biliary condition related to a biliary stricture (benign or malignant). The research does not alter patient management in any way. The first step will involve identifying all patients who underwent ERCP in the endoscopy units of Saint Antoine Hospital or Mondor Hospital for a biliary condition related to a biliary stricture (benign or malignant) and who had both an MRCP and an abdominal CT scan performed in the imaging departments of the same hospitals, from 2020 through the end of 2025. After verifying eligibility criteria, a specific information notice about this study will be sent to them. If no response is received within one month, the collected data may be reused for research purposes. The imaging data collected will support the development and validation of 3D reconstruction/registration software (3D modeling of the biliary tract using mathematical algorithms for medical imaging and artificial intelligence networks applied to the acquired images). Pseudonymized data will be centralized under the supervision of Prof. Camus on a secure AP-HP server, with a correspondence table created for follow-up, accessible only to Prof. Camus. At the end of the study, data will be securely transferred to the partners for analysis and tool development. All data transfers will be performed using secure, encrypted external storage devices according to local AP-HP IT department procedures. The data volume is determined based on image-processing capacity and technological development goals. A dataset of 100 patients provides sufficient anatomical variability to train and test AI models. No inferential statistical analysis is planned. Tool performance will be evaluated using image-quality metrics (DSC, IoU) and localization error indicators for the algorithms. Finally, exchanges with project partners will support the development and validation of the 3D reconstruction tool. The analysis will be conducted by the partner teams at LIP6 and ISIR.

Interventions

OTHERretrospective study based on data already collected during routine care (no intervention)

Identification of all patients treated by CPRE in the endoscopy department of Saint Antoine Hospital or Mondor Hospital for a biliary condition related to biliary stenosis (benign or malignant) and who have had a biliary MRI and abdominal CT scan in the imaging department of Saint Antoine Hospital or Mondor Hospital: from 2020 until the end of 2025 Collection of imaging data provided

Sponsors

Assistance Publique - Hôpitaux de Paris
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Patients aged 18 years or older. * Patients treated by ERCP in the endoscopy unit of Saint Antoine Hospital or Henri Mondor Hospital for a biliary condition related to a biliary stricture (benign or malignant). * Patients who underwent an MRCP and an abdominal CT scan in the imaging department of Saint Antoine Hospital or Henri Mondor Hospital as part of their clinical care.

Exclusion criteria

-Patients who oppose the reuse of their clinical data for research after receiving the information letter.

Design outcomes

Primary

MeasureTime frameDescription
medical softaware and/or solution to guide stent placement in complex hilar biliary stricture4 years (2020 - 2025)To develop and validate a tool enabling three-dimensional modeling of the biliary tract from preoperative MRCP and abdominal CT scan sequences, providing improved visualization and a better understanding of patients' biliary anatomy before and during ERCP.

Countries

France

Contacts

CONTACTMarine CAMUS, Pr
marine.camus@aphp.fr+33 1.49.28.33.68
CONTACTAymeric BECQ, Dr
aymeric.becq@aphp.fr+33 1.49.81.23.51
PRINCIPAL_INVESTIGATORMarine CAMUS, Pr

Assistance Publique - Hôpitaux de Paris

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 11, 2026