Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myocardial perfusion CT imaging. Methods. One porcine heart was perfused according to Langendorff. Dynamic perfusion scanning was performed with a second-generation dual source CT scanner. Circulatory parameters like blood flow, aortic pressure, and heart rate were monitored throughout the experiment. Stenosis was induced in the circumflex artery, controlled by a fractional flow reserve (FFR) pressure wire. CT-derived myocardial perfusion parameters were analysed at FFR of 1 to 0.10/0.0. Results. CT images did not show major artefacts due to interference of the model setup. The pacemaker-induced heart rhythm was generally stable at 70 beats per ...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
To test the accuracy of quantification of myocardial perfusion imaging (MPI) using computed tomograp...
To test the accuracy of quantification of myocardial perfusion imaging (MPI) using computed tomograp...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Copyright © 2015 Gert Jan Pelgrim et al. This is an open access article distributed under the Creati...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
To test the accuracy of quantification of myocardial perfusion imaging (MPI) using computed tomograp...
To test the accuracy of quantification of myocardial perfusion imaging (MPI) using computed tomograp...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Copyright © 2015 Gert Jan Pelgrim et al. This is an open access article distributed under the Creati...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
Objective. To test the feasibility of a CT-compatible, ex vivo, perfused porcine heart model for myo...
To test the accuracy of quantification of myocardial perfusion imaging (MPI) using computed tomograp...
To test the accuracy of quantification of myocardial perfusion imaging (MPI) using computed tomograp...