MedBenchAgent: Towards Systematic Automation of Medical VLM Benchmark Construction
Yulin Fu (Beijing University of Posts and Telecommunications)Junren Wang (West China HospitalSichuan Provincial Engineering Research Center of Intelligent Diagnosis and Treatment of Breast Diseases)Guangjing Yang (Beijing University of Posts and Telecommunications)Zhangyuan Yu (Beijing University of Posts and Telecommunications)Wanran Sun (Beijing University of Posts and Telecommunications)Jiabao Zhou (Beijing University of Posts and Telecommunications)Jin Yin (West China HospitalSichuan Provincial Engineering Research Center of Intelligent Diagnosis and Treatment of Breast Diseases)Qicheng Lao (Beijing University of Posts and Telecommunications)
Oct 2026
Artificial Intelligence
Abstract
Large-scale construction of medical vision-language model (VLM) benchmarks is increasingly feasible with richly annotated imaging datasets and large language models (LLMs), yet existing automation largely focuses on generating evaluation items within predefined benchmark specifications. We study the broader problem of automatically deriving the specification itself: what to evaluate, which annotations support each task, and how to translate this evidence into reliable evaluation items. We formulate benchmark construction as constrained compilation, in which the benchmark specification is progressively derived from evaluation requirements, heterogeneous annotations, and medical knowledge. Based on this formulation, we introduce MedBenchAgent, a multi-agent framework with a Benchmark Intermediate Representation (BIR) that encodes task definitions, evidence mappings, evaluation protocols, and item specifications across construction stages. MedBenchAgent separates planning, which derives and verifies the specification, from instantiation, which constructs and audits items under the locked specification. MedBenchAgent achieves a Task-Space F1 of 90.9%, outperforming direct task induction (79.2-80.0%) and prior-guided induction (85.1%); 994 of 1,000 sampled items from correctly identified tasks pass human audit. We further demonstrate portability to a specialized medical domain and evaluate twelve VLMs, revealing task- and setting-specific variation obscured by aggregate scores. These results establish constrained compilation as a scalable and auditable framework for medical VLM benchmark construction beyond question generation.
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