TY - JOUR
T1 - Streamlining Cancer Reporting
T2 - CAP eCC Template Integration and Data Management
AU - Seagal, Alex
AU - Deyarmin, Brenda
AU - Murtha, Kimberly N.
AU - Campbell, Leigh
AU - Lombardo, Jamie
AU - Wells, Justin
AU - Stratton, Jesse
AU - Mostoller, Bradley J.
AU - Wolf, Nicole L.
AU - Kvecher, Leonid
AU - Shriver, Craig
AU - Hu, Hai
N1 - Publisher Copyright:
© The Association of Military Surgeons of the United States 2026. All rights reserved. For commercial re-use, please contact [email protected] for reprints and translation rights for reprints. All other permissions can be obtained through our RightsLink service via the Permissions link on the article page on our site—for further information please contact [email protected]. This article is published and distributed under the terms of the Oxford University Press, Standard Journals Publication Model (https://academic.oup.com/pages/standard-publication-reuse-rights)
PY - 2026/7/1
Y1 - 2026/7/1
N2 - Cancer affects over 1,000 active-duty military personnel annually, directly undermining force readiness. To address this challenge, the Department of Defense, Department of Veterans Affairs (VA), and the National Cancer Institute established the Applied Proteogenomics Organizational Learning and Outcomes (APOLLO) Consortium as part of the Cancer Moonshot Program. APOLLO collects standardized pathology data to advance research and clinical care, but integrating the College of American Pathologists (CAP) electronic Cancer Checklists (eCC) has traditionally been left to individual institutions and vendors, making implementation challenging. We developed eCC2Db, a software system that automates parsing of CAP eCC XML templates, generates Oracle database objects and metadata, and renders forms exactly as they appear on cap.org. The tool integrates with the Data Tracking System for APOLLO (DTS-APOLLO), enabling interactive completion of CAP eCC forms with data stored for audit tracking, reporting, and secure transfer to a centralized Data Warehouse. No human subjects or identifiable patient data were used. This research was conducted under the APOLLO protocol. Implementation of the tool eliminated manual database tables and relationship design, reduced transcription errors, and improved compliance with CAP standards although demonstrating scalability across CAP’s semiannual updates. As of this writing, the system has implemented a total of 134 CAP eCC templates, including 17 biomarker templates. Among these, 117 organ templates, demonstrating broad coverage across cancer types. This level of implementation confirms that DTS-APOLLO can support nearly all CAP-defined cancer protocols, including complex biomarker forms, which are essential for precision oncology. By automating CAP eCC template management, DTS-APOLLO strengthens APOLLO’s data infrastructure, enhances readiness, and produces AI-ready, CAP-compliant datasets that provide a foundation for predictive analytics, treatment decision support, and next-generation precision oncology research.
AB - Cancer affects over 1,000 active-duty military personnel annually, directly undermining force readiness. To address this challenge, the Department of Defense, Department of Veterans Affairs (VA), and the National Cancer Institute established the Applied Proteogenomics Organizational Learning and Outcomes (APOLLO) Consortium as part of the Cancer Moonshot Program. APOLLO collects standardized pathology data to advance research and clinical care, but integrating the College of American Pathologists (CAP) electronic Cancer Checklists (eCC) has traditionally been left to individual institutions and vendors, making implementation challenging. We developed eCC2Db, a software system that automates parsing of CAP eCC XML templates, generates Oracle database objects and metadata, and renders forms exactly as they appear on cap.org. The tool integrates with the Data Tracking System for APOLLO (DTS-APOLLO), enabling interactive completion of CAP eCC forms with data stored for audit tracking, reporting, and secure transfer to a centralized Data Warehouse. No human subjects or identifiable patient data were used. This research was conducted under the APOLLO protocol. Implementation of the tool eliminated manual database tables and relationship design, reduced transcription errors, and improved compliance with CAP standards although demonstrating scalability across CAP’s semiannual updates. As of this writing, the system has implemented a total of 134 CAP eCC templates, including 17 biomarker templates. Among these, 117 organ templates, demonstrating broad coverage across cancer types. This level of implementation confirms that DTS-APOLLO can support nearly all CAP-defined cancer protocols, including complex biomarker forms, which are essential for precision oncology. By automating CAP eCC template management, DTS-APOLLO strengthens APOLLO’s data infrastructure, enhances readiness, and produces AI-ready, CAP-compliant datasets that provide a foundation for predictive analytics, treatment decision support, and next-generation precision oncology research.
UR - https://www.scopus.com/pages/publications/105046569016
U2 - 10.1093/milmed/usag104
DO - 10.1093/milmed/usag104
M3 - Article
C2 - 42560274
AN - SCOPUS:105046569016
SN - 0026-4075
VL - 191
SP - 379
EP - 385
JO - Military Medicine
JF - Military Medicine
ER -