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Conversational speech for respiratory triage in primary care: a pilot study
1Amplifier Health, Inc., San Francisco, CA, United States.
Frontiers in Medicine
|August 14, 2026
Summary
This study shows that analyzing patient voice during primary care visits can help differentiate respiratory illnesses. Acoustic signals in conversational audio offer a promising tool for clinical triage and diagnosis.
Area of Science:
- Medical Informatics
- Artificial Intelligence
- Speech Processing
Background:
- Respiratory complaints are a major reason for adult ambulatory visits.
- Accurate triage is crucial for antibiotic stewardship and targeted therapy.
- Previous voice analysis research focused on single conditions using scripted speech, not real-world primary care conversations.
Purpose of the Study:
- To evaluate the effectiveness of using acoustic features from conversational primary care audio for respiratory illness triage.
- To develop and test voice-based classifiers for differentiating various respiratory conditions.
- To establish a baseline for voice-based clinical AI in differential diagnosis.
Main Methods:
- Utilized a dataset of 514,377 ambient-recorded primary care visits.
- Extracted spectral, voice quality, and prosodic features from doctor-patient conversations.
- Trained 11 binary acoustic classifiers for respiratory triage tasks and compared them against demographic/geographic baselines.
Main Results:
- Acoustic models achieved moderate performance (AUC 0.602-0.745) in differentiating respiratory conditions.
- Six of eleven classifiers outperformed non-acoustic baselines.
- Voice analysis demonstrated discrimination beyond demographic or geographic factors in several tasks.
Conclusions:
- Conversational primary care audio contains acoustic signals that can differentiate respiratory conditions.
- This pilot study demonstrates the feasibility of voice-based differential diagnosis in a primary care setting.
- The findings advance voice-based clinical AI from simple detection to complex diagnostic tasks.
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