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Tamima Tabassum, Yiming Huang, Tianchun Wu, Changjing Liu, Zhiqing Tang, Chikit Ng, Beilei Cui, Liangjing Shao, Jiewen Lai, Hongliang Ren
· 1 min read
ResearcharXiv cs.CV
StenoVLA-3D: 3D-Aware Reasoning VLA for Navigation Through Gastrointestinal Stenoses
arXiv:2609.24187v1 Announce Type: cross
Abstract: Autonomous endoscopic navigation requires the policy model to predict actions from texture-poor monocular observations, make safe control decisions, and retain evidence of lesions after they leave the field of view. Existing vision-language-action (VLA) models primarily rely on visual appearance and short-term context, limiting geometric grounding and episode-level reporting. We introduce StenoVLA-3D, a 3D-aware VLA framework for navigating through stenotic regions. We integrate point-maps into the Cosmos-Reason 2 backbone through learned geometry-gated fusion, and also propose a temporal state branch to model traversal progress. Our reasoning-and-action backbone predicts grounded reasoning with actions, while dedicated heads estimate stenosis shape and generate the final lesion report. We further introduce EndoCausal, an episode-level dataset with lesion annotations, actions, and temporally grounded reasoning. On 40 held-out recorded test episodes, StenoVLA-3D reaches 95.2\% semantic accuracy and 83.4\% action accuracy. On the physical 3-DoF endoscope, it attains 88.9\% and 77.8\% task success in esophageal and colonic phantoms (36 trials each), substantially outperforming the evaluated baselines.
Original source
This story was published by arXiv cs.CV and written by Tamima Tabassum, Yiming Huang, Tianchun Wu, Changjing Liu, Zhiqing Tang, Chikit Ng, Beilei Cui, Liangjing Shao, Jiewen Lai, Hongliang Ren. SyncAI.news shows a preview; the complete article is on the publisher's site.
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