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May 31, 2026Healthcare0 citationsOpen Access

Integrating Cardiopulmonary Exercise Testing, Stress Echocardiography and Near-Infrared Spectroscopy for Multimodal Assessment of Exercise Intolerance: A Narrative Review

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GHGéza HálaszRMRaffaella MistrulliMFMarco Di Francesco

Key Result

Integrating CPET, stress echocardiography, and NIRS provides a mechanism-based framework for phenotyping and risk stratification of exercise intolerance.

Key Points

  • The aim is to explore how integrating CPET, stress echocardiography, and NIRS can enhance the assessment of exercise intolerance.
  • Applied a narrative review approach to combine data from CPET, stress echocardiography, and NIRS.
  • Discussed physiological rationale, clinical applications, and methodologies across various cardiac and pulmonary conditions.
  • Evaluated implications for individualized therapeutic decision-making.
  • Integration of CPET, stress echocardiography, and NIRS offers a more complete understanding of exercise intolerance mechanisms.
  • The combined approach aids in phenotyping and risk stratification for heart failure and pulmonary hypertension.
  • Recommends further studies to improve protocol harmonization and validate multimodal assessment indices.

Structured PICO

P
Population
Patients with exercise intolerance, including those with heart failure, pulmonary hypertension, peripheral artery disease, cardiomyopathies, and athletes (sports cardiology)
I
Intervention
Combined cardiopulmonary exercise testing (CPET), stress echocardiography, and near-infrared spectroscopy (NIRS)

Integrating CPET, stress echocardiography, and NIRS offers a comprehensive, mechanism-based approach to evaluating exercise intolerance by linking systemic gas exchange, central hemodynamics, and peripheral oxygen handling.

Limitations

  • Further studies are needed to harmonize protocols, validate reproducible multimodal indices and demonstrate incremental prognostic value over conventional testing.
  • Methodological limitations
  • Need to harmonize protocols
  • Need to validate reproducible multimodal indices
  • Need to demonstrate incremental prognostic value over conventional testing

Abstract

Cardiopulmonary exercise testing (CPET) is the reference method for the objective assessment of exercise capacity because it provides an integrated appraisal of cardiovascular, respiratory and metabolic responses to exertion. However, CPET alone quantifies the magnitude of functional impairment without fully resolving the central and peripheral mechanisms that determine exercise intolerance. The integration of CPET with exercise stress echocardiography and near-infrared spectroscopy (NIRS) has therefore emerged as a clinically relevant multimodal strategy. Stress echocardiography provides real-time information on ventricular reserve, filling pressures, pulmonary pressure response, valvular function, pulmonary congestion and dynamic outflow obstruction, whereas NIRS provides continuous insight into skeletal muscle oxygen delivery, extraction and utilization. This narrative review summarizes the physiological rationale, practical workflow, methodological limitations and clinical applications of combined CPET, stress echocardiography and NIRS across heart failure, pulmonary hypertension, peripheral artery disease, cardiomyopathies and sports cardiology. By linking systemic gas exchange, central hemodynamics and peripheral oxygen handling, this approach may move exercise evaluation from a descriptive measure of performance toward a mechanism-based framework for phenotyping, risk stratification and individualized therapeutic decision-making. Further studies are needed to harmonize protocols, validate reproducible multimodal indices and demonstrate incremental prognostic value over conventional testing.

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Cite This Study

Hálasz et al. (2026) conducted a review in Exercise intolerance. Combined CPET, stress echocardiography, and NIRS vs. Conventional testing was evaluated. Integrating CPET, stress echocardiography, and NIRS provides a mechanism-based framework for phenotyping and risk stratification of exercise intolerance.

synapsesocial.com/papers/6a1bd1db5783ba022b6fd4a3https://doi.org/10.3390/healthcare14111511
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