Towards autonomous medical artificial intelligence agents

На пути к автономным агентам медицинского искусственного интеллекта
Jakob Nikolas Kather, Dyke Ferber, Georg Wölflein, Jan Clusmann, Dirk Jaeger, Daniel Truhn, Jan‐Niklas Eckardt, Jan Moritz Middeke, Alexander Oeser, Benedict Kinny‐Köster, Isabella C. Wiest, Lars Hilgers, Christiane Höper, Katharina Egger‐Heidrich, Marius Bill, Martin Schneider, Lejla Kadric, Marcel Oehme, Maximilian Mayrhofer‐Schmid, A J. Iafrate
2026-06-17

MIRAautonomous medical AI agentsclinical decision supportdifferential diagnosiselectronic health record
. However, building physician copilots will require models that operate within the electronic health record (EHR), with governed access to patient data and the ability to initiate permitted EHR actions within defined safety constraints. Yet it remains unproven whether such a system can manage patient cases with physician-level performance. Here we show that MIRA (Medical Intelligence for Reasoning and Action), an autonomous artificial intelligence agent operating in a sandboxed EHR environment, can navigate a large clinical action space to obtain patient histories; order and interpret laboratory, imaging and microbiology tests; generate differential diagnoses; and formulate treatment plans such as prescribing medications, scheduling surgical procedures and planning admissions. In simulations on real patient cases spanning multiple diagnoses, MIRA outperformed physicians in diagnostic accuracy and made guideline-concordant, medication-safe and appropriate admission decisions. Compared with previous LLM applications that addressed isolated subtasks or provided free-text advice, these results suggest that an EHR-integrated artificial intelligence agent can turn clinical intent into structured, actionable EHR operations, possibly making it a more effective decision-support partner for physicians. Further work is needed to establish generalization, safety and governance through prospective, real-world studies.
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Across simulated real patient cases involving multiple diagnoses, MIRA outperformed physicians in diagnostic accuracy.
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MIRA is an autonomous AI agent operating in a sandboxed EHR that can perform multi-step clinical reasoning and authorized actions.
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MIRA made guideline-concordant, medication-safe, and appropriate admission decisions in the simulations.
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The agent navigates a broad clinical action space, including retrieving histories, ordering and interpreting tests, generating differential diagnoses, and formulating treatment plans.
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The study suggests EHR-integrated agents can convert clinical intent into structured, actionable operations, although prospective studies are still needed to establish generalization, safety, and governance.

MIRA, an autonomous medical artificial intelligence agent operating within a sandboxed electronic health record (EHR) environment

physician-level clinical case management, including diagnostic accuracy, guideline-concordant and medication-safe decisions, and execution of structured EHR actions under safety constraints

Publication Details
Publication Date
2026-06-17
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Authors
Jakob Nikolas Kather
Dyke Ferber
Georg Wölflein
Jan Clusmann
Dirk Jaeger
Daniel Truhn
Jan‐Niklas Eckardt
Jan Moritz Middeke
Alexander Oeser
Benedict Kinny‐Köster
Isabella C. Wiest
Lars Hilgers
Christiane Höper
Katharina Egger‐Heidrich
Marius Bill
Martin Schneider
Lejla Kadric
Marcel Oehme
Maximilian Mayrhofer‐Schmid
A J. Iafrate
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