Functional airway phenotyping: a new paradigm for perioperative airway assessment

Despite advances in airway assessment, the ability to predict perioperative airway-related complications remains limited. Current evaluation relies predominantly on static anatomical descriptors, although airway behavior results from the interaction of structural, physiological, biomechanical, and patient-specific determinants. We propose functional airway phenotyping (FAP) as a conceptual framework to integrate these complementary domains. FAP extends conventional anatomy-based airway assessment by linking airway structure with function through the integration of anatomical characteristics, physiological behavior, tissue mechanical properties, and patient-specific factors. Rather than representing a new bedside test or a validated classification system, FAP provides a structure–function framework to better understand why patients with similar anatomical characteristics may experience different airway-related outcomes. We discuss how multimodal assessment, including clinical history, imaging, dynamic airway evaluation, physiological surrogates, and emerging artificial intelligence–supported approaches, could support future individualized perioperative airway assessment. FAP provides a conceptual roadmap for integrating structure and function in perioperative airway assessment. Future studies should validate clinically meaningful Functional Airway Phenotyping and determine their role in precision perioperative airway management.

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Publication Details

Journal
Journal of Anesthesia Analgesia and Critical Care
Published
2026-09-16
DOI
https://doi.org/10.1186/s44158-026-00451-2
Primary Topic
Tracheal and airway disorders
Type
article
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article

Functional airway phenotyping: a new paradigm for perioperative airway assessment

Lorenzo Trevisiol, Ottavio Piccin, Marco Bottazzoli, Silvia De Rosa
Journal of Anesthesia Analgesia and Critical Care
Tracheal and airway disorders
article

Functional airway phenotyping: a new paradigm for perioperative airway assessment

Lorenzo Trevisiol, Ottavio Piccin, Marco Bottazzoli, Silvia De Rosa
article en

Abstract

Despite advances in airway assessment, the ability to predict perioperative airway-related complications remains limited. Current evaluation relies predominantly on static anatomical descriptors, although airway behavior results from the interaction of structural, physiological, biomechanical, and patient-specific determinants. We propose functional airway phenotyping (FAP) as a conceptual framework to integrate these complementary domains. FAP extends conventional anatomy-based airway assessment by linking airway structure with function through the integration of anatomical characteristics, physiological behavior, tissue mechanical properties, and patient-specific factors. Rather than representing a new bedside test or a validated classification system, FAP provides a structure–function framework to better understand why patients with similar anatomical characteristics may experience different airway-related outcomes. We discuss how multimodal assessment, including clinical history, imaging, dynamic airway evaluation, physiological surrogates, and emerging artificial intelligence–supported approaches, could support future individualized perioperative airway assessment. FAP provides a conceptual roadmap for integrating structure and function in perioperative airway assessment. Future studies should validate clinically meaningful Functional Airway Phenotyping and determine their role in precision perioperative airway management.

Journal of Anesthesia Analgesia and Critical Care
University of Trento (IT), Ospedale Santa Chiara (IT), Provincia Autonoma di Trento (IT)
Openalex Percentile: Top 11%
Tracheal and airway disorders
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Functional airway phenotyping: a new paradigm for perioperative airway assessment — Lorenzo Trevisiol, Ottavio Piccin, et al. · Journal of Anesthesia Analgesia and Critical Care (2026) | TGRS Research Map | TGRS