Related Experiment Video
Updated: Jan 19, 2026

Author Spotlight: Advancing Cardiovascular Research — Tailored Langendorff Perfusion Techniques for Improved Experimental Outcomes
Published on: June 14, 2024
A compressed sensing accelerated radial MS-CAIPIRINHA technique for extended anatomical coverage in myocardial
Tobias Wech1, Karl P Kunze2, Christoph Rischpler3
1Department of Diagnostic and Interventional Radiology, University Hospital Würzburg, Germany; Comprehensive Heart Failure Centre, University Hospital Würzburg, Germany.
Purpose:
Simultaneous acquisition of myocardial first-pass perfusion MRI and 18F-FDG PET viability imaging on integrated whole-body PET/MR hybrid systems synergistically delivers both functional and metabolic information on the tissue state. While PET viability scans are inherently three-dimensional, conventional MR myocardial perfusion imaging is typically performed using only three short-axis slices with a temporal resolution of one RR-interval. To improve the integrated diagnostics, an acquisition and image reconstruction method based on "Multi-Slice Controlled Aliasing In Parallel Imaging Results IN Higher Acceleration (MS-CAIPIRINHA)" was developed extending anatomical coverage for MR perfusion imaging to six short-axis slices per RR-interval.
Methods:
An ECG-gated radial TurboFLASH MR pulse sequence with dual band excitation was implemented on an integrated whole-body PET/MR system and a model-based reconstruction technique was developed to fully reconstruct the undersampled CAIPIRINHA acquisitions. An 18F-FDG viability PET scan was performed simultaneously to the MR protocol, additionally complemented by a late enhancement MRI acquisition (LGE).
Results And Conclusion:
The developed imaging technique was tested in five patients with known collateralized coronary total occlusions, resulting in improved characterization of perfusion across areas of decreased tissue viability as indicated by the simultaneously determined 18F-FDG uptake. While conventional MR perfusion with only three slice positions was occasionally missing substantial parts of the viable area, the new approach achieved LV coverage only slightly inferior to LGE imaging and therefore better comparable to PET results. The quality of first-pass enhancement curves was comparable between conventional and radial MS-CAIPIRINHA-based acquisitions.
Related Concept Videos
06:22Modified Langendorff Perfusion for Extended Perfusion Times of Rodent Cardiac Grafts
10:46MRI and PET in Mouse Models of Myocardial Infarction
04:22Pipeline for Multi-Scale Three-Dimensional Anatomic Study of the Human Heart
06:02Anatomical Reconstructions of the Human Cardiac Venous System using Contrast-computed Tomography of Perfusion-fixed Specimens
08:19The Mouse Isolated Perfused Kidney Technique
13:26Basic Surgical Techniques in the Göttingen Minipig: Intubation, Bladder Catheterization, Femoral Vessel Catheterization, and Transcardial Perfusion

