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ProtoAct: Turning Wet-Lab Protocols into Embodied Robotic Actions

Authors

Do you know Zhe Liu?You can claim authorship or link another user.Do you know Jiaming Gu?You can claim authorship or link another user.Do you know Zhaohui Du?You can claim authorship or link another user.Do you know Zhe Wang?You can claim authorship or link another user.Do you know Huanbo Jin?You can claim authorship or link another user.Do you know Quan Lu?You can claim authorship or link another user.Do you know Qi Wang?You can claim authorship or link another user.Do you know Ting Xiao?You can claim authorship or link another user.Do you know Minting Pan?You can claim authorship or link another user.Do you know Dongzhan Zhou?You can claim authorship or link another user.

Abstract

Biological wet-lab protocols are written for trained researchers and often leave routine operations, state-dependent conditions, and contextual parameters implicit, making them difficult to translate into robot-executable actions. We present ProtoAct, a structured protocol-grounding framework that converts free-form biological procedures into state-aware, embodiment-ready action sequences. ProtoAct uses ProtoRAG to retrieve manually annotated examples for context-sensitive parsing, employs RefineChecker to detect and revise missing or inconsistent steps, and applies ActSchema to map the refined procedure into constrained JSON function sequences. We further introduce BioP2E, for which we manually annotate 22 cell-culture protocols into 258 monitoring conditions, 910 executable subtasks, and 962 grounded action calls. Evaluation across seven large language models demonstrates that ProtoAct can be effectively instantiated with different backbones. Ablations confirm that retrieval, posterior checking, and schema constraints make complementary contributions. The parsed subtasks further support demonstration collection and VLA model training, enabling successful execution in both simulation and real-robot settings. ProtoAct thus provides a practical interface between biological protocol understanding and embodied robotic execution.

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Publication notes

Author note
15 pages, 13 figures