6533b854fe1ef96bd12af4cc

RESEARCH PRODUCT

Aortic Function's Adaptation in Response to Exercise-Induced Stress Assessing by 1.5T MRI : A Pilot Study in Healthy Volunteers

Philippe PiquetFrank KoberLaurence Bal-theoleyreGilbert HabibJean-françois AvierinosRoch GiorgiMonique BernardAlexis JacquierFrederic CollartMaxime GuyeAlain Lalande

subject

Male[INFO.INFO-IM] Computer Science [cs]/Medical Imaginglcsh:MedicineAorta ThoracicPilot Projects030204 cardiovascular system & hematologyCardiovascular MedicineVascular Medicine030218 nuclear medicine & medical imagingDiagnostic Radiology0302 clinical medicineDiastole[SPI.MECA.BIOM] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Biomechanics [physics.med-ph]Supine PositionMedicine and Health SciencesThoracic aortaPublic and Occupational Healthlcsh:SciencePulse wave velocityAortaMultidisciplinary[ INFO.INFO-IM ] Computer Science [cs]/Medical ImagingRadiology and Imaging[SPI.MECA.BIOM]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Biomechanics [physics.med-ph]Adaptation PhysiologicalHealthy VolunteersSports Science[SDV.MHEP.CSC] Life Sciences [q-bio]/Human health and pathology/Cardiology and cardiovascular systemPulmonary imagingCardiovascular diseasesDescending aortaVentricular pressureCardiologycardiovascular systemBlood pressureFemaleAnatomyResearch ArticleAdultmedicine.medical_specialtySystoleImaging TechniquesHeart rateCardiologyPulse Wave AnalysisResearch and Analysis Methods03 medical and health sciencesVascular StiffnessMagnetic resonance imaging[SDV.MHEP.CSC]Life Sciences [q-bio]/Human health and pathology/Cardiology and cardiovascular systemStress PhysiologicalDiagnostic Medicinemedicine.arteryInternal medicineAscending aortamedicine[INFO.INFO-IM]Computer Science [cs]/Medical ImagingHumansSystoleExerciseAortabusiness.industrylcsh:RBiology and Life SciencesPhysical ActivityElasticityBlood pressurePhysical FitnessCardiovascular AnatomyBlood Vesselslcsh:QSports and exercise medicinebusiness

description

AIM:Evaluation of the aortic "elastic reserve" might be a relevant marker to assess the risk of aortic event. Our aim was to compare regional aortic elasticity at rest and during supine bicycle exercise at 1.5 T MRI in healthy individuals. METHODS:Fifteen volunteers (8 men), with a mean age of 29 (23-41) years, completed the entire protocol. Images were acquired immediately following maximal exercise. Retrospective cine sequences were acquired to assess compliance, distensibility, maximum rates of systolic distension and diastolic recoil at four different locations: ascending aorta, proximal descending aorta, distal descending aorta and aorta above the coeliac trunk level. Segmental aortic pulse wave velocity (PWV) was assessed by through plane velocity-encoded MRI. RESULTS:Exercise induced a significant decrease of aortic compliance and distensibility, and a significant increase of the absolute values of maximum rates of systolic distension and diastolic recoil at all sites (p<10-3). At rest and during stress, ascending aortic compliance was statistically higher compared to the whole descending aorta (p≤0.0007). We found a strong correlation between the rate pressure product and aortic distensibility at all sites (r = - 0.6 to -0.75 according to the site, p<10-4). PWV measured at the proximal and distal descending aorta increased significantly during stress (p = 0.02 and p = 0.008, respectively). CONCLUSION:Assessment of regional aortic function during exercise is feasible using MRI. During stress, aortic elasticity decreases significantly in correlation with an increase of the PWV. Further studies are required to create thresholds for ascending aorta dysfunction among patients with aneurysms, and to monitor the impact of medication on aortic remodeling.

10.1371/journal.pone.0157704https://hal.science/hal-01362479