Hôpital Européen Georges Pompidou
Paris, 75015, France
NCT Number: NCT05711693
Aortic stiffness is an important imaging biomarker of vascular aging. The ascending aorta is the most elastic segment, and it is excluded by reference non-invasive method carotid to femoral pulse wave velocity (PWV). We propose to use laser-doppler vibrometry (LDV) to record superficial vibrations generated by cardiac activity and arterial pulses for measuring heart carotid PWV, a surrogate for ascending aorta.
The trial aims to demonstrate the equivalence between heart-carotid PWV made by laser-doppler vibrometry (LDV) with the reference MRI measurement (4D-FLOW MRI).
As secondary objectives, A) we aim to assess the reproducibility of LDV, compared with MRI, B) show that aortic stiffness measured by LDV fulfils international recommendations, C) to study the association between PWV and age or other cardiovascular risk factors, D) assess the acceptability of the measurement. For this, we include 100 consecutive patients, 50 women, 50 men, scheduled for clinically indicated thoracic aorta MRI.
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Notify Me18 year–90 year
All sexes
Interventional
Not applicable
Paris, 75015, France
Cardiovascular (CV) diseases and their risk factors are the leading causes of morbidity and mortality in the world. They are responsible for more than 17.3 million deaths per year worldwide, accounting for 30% of all causes of death.
The measurement of arterial stiffness is useful to estimate the global CV risk with more precision than the simple point assessment of the classical cardiovascular risk factors.
Carotid-femoral pulse wave velocity (cfPWV) by tonometry is the reference method. However, it excludes by principle the ascending aorta, which is the most distensible and physiologically the most important segment. The InSiDe project aims to measure heart - carotid pulse wave velocity (hcPWV) from the measurement of skin vibrations on the chest and neck by laser doppler vibrometry (LDV), enclosing principally the ascending aorta. This will allow the measurement and validation of a new biomarker that quantifies the stiffness of the ascending aorta. We have demonstrated a very good agreement of the LDV-based cfPWV with the reference technique by tonometry. Our hypothesis, based on physiological reasons, is that heart-carotid PWV will surpass carotid-femoral PWV as a biomarker of large artery stiffness.
The trial aims to demonstrate the equivalence between heart-carotid PWV measured by laser-doppler vibrometry (LDV) with the reference MRI measurement (4D-FLOW MRI). MRI, the gold standard comparator is technically demanding and uncomfortable for the patient, much more expensive and not applicable at the general population level. It is therefore likely that measurement by laser-doppler vibrometry, without contact, more comfortable, acceptable and fast, could replace MRI for mass applications.
For this, we include 100 consecutive patients, 50 women, 50 men, scheduled for clinically indicated thoracic aorta MRI.
ENDPOINTS
Primary endpoint:
Secondary endpoints:
Statistical analysis The statistical technique used will be the Bland - Altman plot and the corresponding bias assessment (mean Bland-Altman bias and limits of agreement, defined as the mean bias ±1.96 - standard deviation, are provided); the coefficient of variation (CV) will also be used.
Description of the device being investigated:
The LDV device, developed by the European consortium CARDIS (Medtronic,SIOS, iMEC, Tyndall Institute) uses two arrays with 6 laser beams. It is a non-invasive exploration, by category 1 laser without any risk for the patient and allows to measure the local arterial stiffness (to evaluate the heart-carotid PWV) and segmental without contact with the skin by using the LDV technique. In practice, this device allows the evaluation of the hcPWV from the measurement of skin vibrations on the chest and neck.
Description of the device used as a comparator:
The reference technique is MRI, used in combination with 4D-FLOW MRI, an innovative technique that allows full 3-dimensional anatomical coverage as well as velocity coding in all 3 directions, opening new and unique possibilities for visualizing and quantifying complex cardiovascular blood flow
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
and before any examination required by the research and even before the thoracic MRI planned in the care setting).
Exclusion criteria
Patients scheduled for thoracic aorta MRI will have LDV measurement of ccPWV. Both techniques will be compared
To all patients:
To all patients:
All patients will complete a questionnaire of acceptability
Time frame: 1 hour
Values of PWV obtained by LDV and by MRI will be compared.
Time frame: 1 hour
Measures will be duplicated and the average calculated, in case of discrepancy > 0.5 m/s, a third measurement is made and the median determined. Two series of measurements will be taken at 5minutes of interval.
Time frame: 1 hour
Values of cfPWV obtained by LDV will be also compared with values obtained by tonometry.
Time frame: 1 hour
The correlation coefficient and linear regression will be calculated.
Time frame: 1 hour
A questionnaire of acceptability will be completed by the patient after the measurements.
Institut National de la Santé Et de la Recherche Médicale, France
Other Gov
Integrated Silicon Photonics for Cardiovascular Disease Monitoring InSiDe-CC Clinical Validation of the Diagnostic Device (LDV) for the Measurement of Heart-carotid Pulse Wave Velocity (PWV) by Magnetic Resonance Imaging (MRI)
Acronym: InSide-CC
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