Brian J. Douthit

dblp:261/5883 · DBLP profile ↗
← Back
7ranked-venue papers
2as first author
6since 2021 · last 2022
0000-0001-6634-8171ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Applied, interdisciplinary, general and emerging computing · 7 · 2 first-author · 6 since 2021
YearPublicationVenuePosition
2022 Quality Versus Quantity: Assessing the Impact of Nursing Documentation on Preventing Hospital Acquired Pressure Injuries
Brian J. Douthit, Katherine Bashaw, Kimberly Gerant, Thomas Reese, Adam Wright, Allison B. McCoy
AMIA1
2022 Assessment of Real-World Health Applications on FHIR
Ashley C. Griffin, Anthony Sunjaya, Zubin Khan, Brian J. Douthit, Martin Nwadiugwu, Vignesh Subbian, Mark Braunstein, Viet Nguyen, Charles Jaffe, Titus Schleyer
AMIA6
2022 A Theory-based Evaluation of a Clinical Decision Support System to Predict New Onset of Delirium
Siru Liu, Adam Wright, Joseph J. Schlesinger, Thomas J. Reese, Edward T. Qian, Elise M. Russo, Matthew W. Semler, Brian J. Douthit, Allison B. McCoy
AMIA8
2022 Pressure Injury Prevention: A Focused Care Approach Using Predictive Analytics
Thomas J. Reese, Antonio Hernandez, Daniel Byrne, Lance Mailloux, Henry Domenico, Ryan Moore, Jessica Williams, Adam Wright, Jennifer Slayton, Sonya Moore, Brian J. Douthit, Allison B. McCoy, Catherine Ivory
AMIA11
2021 Assessing the Use of HL7® FHIR® Among Healthcare Apps
Brian J. Douthit, Guilherme Del Fiol, Chloe Canon, Jessica Branski, Titus Schleyer, Rachel L. Richesson
AMIA1
2021 Enhancing the use of EHR systems for pragmatic embedded research: lessons from the NIH Health Care Systems Research Collaboratory
abstract
OBJECTIVE: We identified challenges and solutions to using electronic health record (EHR) systems for the design and conduct of pragmatic research. MATERIALS AND METHODS: Since 2012, the Health Care Systems Research Collaboratory has served as the resource coordinating center for 21 pragmatic clinical trial demonstration projects. The EHR Core working group invited these demonstration projects to complete a written semistructured survey and used an inductive approach to review responses and identify EHR-related challenges and suggested EHR enhancements. RESULTS: We received survey responses from 20 projects and identified 21 challenges that fell into 6 broad themes: (1) inadequate collection of patient-reported outcome data, (2) lack of structured data collection, (3) data standardization, (4) resources to support customization of EHRs, (5) difficulties aggregating data across sites, and (6) accessing EHR data. DISCUSSION: Based on these findings, we formulated 6 prerequisites for PCTs that would enable the conduct of pragmatic research: (1) integrate the collection of patient-centered data into EHR systems, (2) facilitate structured research data collection by leveraging standard EHR functions, usable interfaces, and standard workflows, (3) support the creation of high-quality research data by using standards, (4) ensure adequate IT staff to support embedded research, (5) create aggregate, multidata type resources for multisite trials, and (6) create re-usable and automated queries. CONCLUSION: We are hopeful our collection of specific EHR challenges and research needs will drive health system leaders, policymakers, and EHR designers to support these suggestions to improve our national capacity for generating real-world evidence.
Rachel L. Richesson, Keith Marsolo, Brian J. Douthit, Karen L. Staman, P. Michael Ho, Dana L. Dailey, Andrew D. Boyd, Kathleen McTigue, Miriam O. Ezenwa, Judith M. Schlaeger, Crystal L. Patil, Keturah R. Faurot, Leah Tuzzio, Eric B. Larson, Emily C. O'Brien, Christina K. Zigler, Joshua R. Lakin, Alice R. Pressman, Jordan M. Braciszewski, Corita R. Grudzen, Guilherme Del Fiol
J. Am. Medical Informatics Assoc.3
2020 Measuring implementation feasibility of clinical decision support alerts for clinical practice recommendations
abstract
OBJECTIVE: The study sought to describe key features of clinical concepts and data required to implement clinical practice recommendations as clinical decision support (CDS) tools in electronic health record systems and to identify recommendation features that predict feasibility of implementation. MATERIALS AND METHODS: Using semistructured interviews, CDS implementers and clinician subject matter experts from 7 academic medical centers rated the feasibility of implementing 10 American College of Emergency Physicians Choosing Wisely Recommendations as electronic health record-embedded CDS and estimated the need for additional data collection. Ratings were combined with objective features of the guidelines to develop a predictive model for technical implementation feasibility. RESULTS: A linear mixed model showed that the need for new data collection was predictive of lower implementation feasibility. The number of clinical concepts in each recommendation, need for historical data, and ambiguity of clinical concepts were not predictive of implementation feasibility. CONCLUSIONS: The availability of data and need for additional data collection are essential to assess the feasibility of CDS implementation. Authors of practice recommendations and guidelines can enable organizations to more rapidly assess data availability and feasibility of implementation by including operational definitions for required data.
Rachel L. Richesson, Catherine J. Staes, Brian J. Douthit, Traci Thoureen, Daniel J. Hatch, Kensaku Kawamoto, Guilherme Del Fiol
J. Am. Medical Informatics Assoc.3