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Pressure drop and arterial compliance - Two arterial parameters in one measurement
Oren M Rotman1, Uri Zaretsky2, Avraham Shitzer3
1Department of Biomedical Engineering, Tel Aviv University, Tel Aviv 69978, Israel; Department of Biomedical Engineering, Stony Brook University, Stony Brook, NY 11794, USA.
Insights
Coronary artery pressure drop can reveal both functional and biomechanical properties of arterial lesions. This single measurement may offer superior clinical insights compared to fractional flow reserve (FFR).
Area of Science:
- Cardiovascular physiology
- Biomedical engineering
- Medical device development
Background:
- Coronary artery pressure drop and distensibility are key indicators of arterial health and atherosclerosis.
- Current methods often assess these parameters separately, limiting comprehensive lesion evaluation.
- Fractional flow reserve (FFR) assesses functional stenosis severity but relies on induced hyperemia.
Purpose of the Study:
- To investigate the hypothesis that local coronary artery pressure drops are dependent on arterial distensibility.
- To establish the foundation for understanding the relationship between pressure drop and distensibility.
- To define the required accuracy and sensitivity for pressure measurement systems.
Main Methods:
- Numerical fluid-structure interaction (FSI) simulations were employed.
- Experiments validated simulations using a high-accuracy differential pressure measurement system.
- Mock coronary arteries with varying stenoses, distensibility, diameter, and flow rates were studied.
Main Results:
- Results demonstrated a relationship between pressure drop and arterial distensibility.
- Simulated hyperemic flow cases were compared to fractional flow reserve (FFR).
- A high-accuracy pressure drop-based parameter showed potential clinical advantages over FFR.
Conclusions:
- A single pressure drop measurement could provide both functional and biomechanical metrics of coronary lesions.
- This approach may offer lesion-specific information, independent of pharmacologically induced hyperemia.
- The findings suggest potential clinical superiority over FFR for real-time decision-making prior to stenting.
Abstract:
Coronary artery pressure-drop and distensibility (compliance) are two major, seemingly unrelated, parameters in the cardiovascular clinical setting, which are indicative of coronary arteries patency and atherosclerosis severity. While pressure drop is related to flow, and therefore serves as a functional indicator of a stenosis severity, the arterial distensibility is indicative of the arterial stiffness, and hence the arterial wall composition. In the present study, we hypothesized that local pressure drops are dependent on the arterial distensibility, and hence can provide information on both indices. The clinical significance is that a single measurement of pressure drop could potentially provide both functional and bio-mechanical metrics of lesions, and thus assist in real-time decision making prior to stenting. The goal of the current study was to set the basis for understanding this relationship, and define the accuracy and sensitivity required from the pressure measurement system. The investigation was performed using numerical fluid-structure interaction (FSI) simulations, validated experimentally using our high accuracy differential pressure measurement system. Simplified silicone mock coronary arteries with zero to intermediate size stenoses were used, and various combinations of arterial distensibility, diameter, and flow rate were simulated. Results of hyperemic flow cases were also compared to fractional flow reserve (FFR). The results indicate the potential clinical superiority of a high accuracy pressure drop-based parameter over FFR, by: (i) being more lesion-specific, (ii) the possibility to circumvent the FFR dependency on pharmacologically-induced hyperemia, and, (iii) by providing both functional and biomechanical lesion-specific information.
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