arXiv — NLP / Computation & Language · · 3 min read

From Sound to Symptom: Real-Time Respiratory Signal Understanding for Conversational Healthcare Agents

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Computer Science > Computation and Language

arXiv:2608.26163 (cs)
[Submitted on 10 Jul 2026]

Title:From Sound to Symptom: Real-Time Respiratory Signal Understanding for Conversational Healthcare Agents

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Abstract:Cough events during live spoken conversations carry clinically valuable respiratory signals, yet existing dialogue systems treat them as acoustic noise to be discarded. We present HealthCUES (Clinical Understanding from Embodied Sounds), a streaming pipeline for paralinguistic respiratory monitoring in real-time conversational agents, a capability that, to the best of our knowledge, is absent from all prior systems. HealthCUES processes audio through a rolling buffer aligned with dialogue turn boundaries, enabling sub-second event detection without interrupting conversational flow. Beyond binary cough detection, the system provides fine-grained analytics: (i) differentiation between coughing and throat clearing, (ii) cough subtype classification (dry, wet, barking, whooping) with confidence scores, and (iii) temporal duration estimation with start-end boundaries. To prevent alert fatigue, HealthCUES introduces dialogue-aware gating mechanisms that modulate triggering based on conversational context. The system leverages Qwen3Omni, a multimodal large language model (MLLM), with constrained structured outputs, decomposing cough analysis into parallel prediction tasks for independent prompt optimization. Evaluation on 847 in-house conversational audio segments demonstrates 93\% F1 for cough detection, 0.75 weighted-F1 for wet/dry subtype classification, and average end-to-end latency of 340ms; external validation on the AMI meeting corpus confirms robust cough, throat-clearing, and speech separation in the presence of speech (0.91 macro-F1). A user study with licensed healthcare professionals confirms the clinical relevance of subtype information and the system's utility in telehealth workflows.
Comments: Accepted for publication at SIGDIAL 2026
Subjects: Computation and Language (cs.CL); Artificial Intelligence (cs.AI); Human-Computer Interaction (cs.HC); Multiagent Systems (cs.MA); Sound (cs.SD)
Cite as: arXiv:2608.26163 [cs.CL]
  (or arXiv:2608.26163v1 [cs.CL] for this version)
  https://doi.org/10.48550/arXiv.2608.26163
arXiv-issued DOI via DataCite (pending registration)

Submission history

From: Tanmay Laud [view email]
[v1] Fri, 10 Jul 2026 21:30:45 UTC (29 KB)
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