Artículo de revista
Estimation of Cardiovascular Relative Pressure Using Virtual Work-Energy
Fecha
2019Registro en:
Scientific Reports, Volumen 9, Issue 1, 2019
20452322
10.1038/s41598-018-37714-0
Autor
Marlevi, David
Ruijsink, Bram
Balmus, Maximilian
Dillon-Murphy, Desmond
Fovargue, Daniel
Pushparajah, Kuberan
Bertoglio, Cristóbal
Colarieti-Tosti, Massimiliano
Larsson, Matilda
Lamata, Pablo
Figueroa, C. Alberto
Razavi, Reza
Nordsletten, David A.
Institución
Resumen
Many cardiovascular diseases lead to local increases in relative pressure, reflecting the higher costs of
driving blood flow. The utility of this biomarker for stratifying the severity of disease has thus driven
the development of methods to measure these relative pressures. While intravascular catheterisation
remains the most direct measure, its invasiveness limits clinical application in many instances. Noninvasive
Doppler ultrasound estimates have partially addressed this gap; however only provide
relative pressure estimates for a range of constricted cardiovascular conditions. Here we introduce a
non-invasive method that enables arbitrary interrogation of relative pressures throughout an imaged
vascular structure, leveraging modern phase contrast magnetic resonance imaging, the virtual
work-energy equations, and a virtual field to provide robust and accurate estimates. The versatility
and accuracy of the method is verified in a set of complex patient-specific cardiovascular models,
where relative pressures into previously inaccessible flow regions are assessed. The method is further
validated within a cohort of congenital heart disease patients, providing a novel tool for probing relative
pressures in-vivo.