Division of Imaging Sciences, King's College London BHF Centre of Excellence, NIHR Biomedical Research Centre and Wellcome Trust and EPSRC Medical Engineering Centre at Guy's and St Thomas' NHS Foundation Trust, The Rayne Institute, London, United Kingdom.
Magn Reson Med. 2013 Mar 1;69(3):698-707. doi: 10.1002/mrm.24299. Epub 2012 Apr 24.
The aim of this article is to describe a novel hardware perfusion phantom that simulates myocardial first-pass perfusion allowing comparisons between different MR techniques and validation of the results against a true gold standard. MR perfusion images were acquired at different myocardial perfusion rates and variable doses of gadolinium and cardiac output. The system proved to be sensitive to controlled variations of myocardial perfusion rate, contrast agent dose, and cardiac output. It produced distinct signal intensity curves for perfusion rates ranging from 1 to 10 mL/mL/min. Quantification of myocardial blood flow by signal deconvolution techniques provided accurate measurements of perfusion. The phantom also proved to be very reproducible between different sessions and different operators. This novel hardware perfusion phantom system allows reliable, reproducible, and efficient simulation of myocardial first-pass MR perfusion. Direct comparison between the results of image-based quantification and reference values of flow and myocardial perfusion will allow development and validation of accurate quantification methods.
本文的目的是描述一种新型的硬件灌注模型,模拟心肌首过灌注,可用于比较不同的磁共振技术,并将结果与真实的金标准进行验证。在不同的心肌灌注率、钆对比剂剂量和心输出量下采集 MR 灌注图像。该系统对心肌灌注率、对比剂剂量和心输出量的可控变化敏感。它为灌注率在 1 到 10 毫升/毫升/分钟范围内产生了明显的信号强度曲线。通过信号反卷积技术对心肌血流量进行定量分析,可以提供准确的灌注测量。该模型在不同的时间段和不同的操作人员之间也具有非常好的重现性。这种新型的硬件灌注模型系统可实现可靠、可重复和高效的心肌首过磁共振灌注模拟。基于图像的定量分析结果与流量和心肌灌注的参考值之间的直接比较,将有助于开发和验证准确的定量方法。