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无炒作:一种用于评估 MRI 流量测量的新型流体动力模型。

NO-HYPE: a novel hydrodynamic phantom for the evaluation of MRI flow measurements.

机构信息

Section of Ferrara, National Institute for Nuclear Physics (INFN), 44122, Ferrara, Italy.

Department of Advanced Biomedical Sciences, University of Naples "Federico II", 80131, Napoli, Italy.

出版信息

Med Biol Eng Comput. 2021 Sep;59(9):1889-1899. doi: 10.1007/s11517-021-02390-2. Epub 2021 Aug 8.

Abstract

Accurate and reproducible measurement of blood flow profile is very important in many clinical investigations for diagnosing cardiovascular disorders. Given that many factors could affect human circulation, and several parameters must be set to properly evaluate blood flows with phase-contrast techniques, we developed an MRI-compatible hydrodynamic phantom to simulate different physiological blood flows. The phantom included a programmable hydraulic pump connected to a series of pipes immersed in a solution mimicking human soft tissues, with a blood-mimicking fluid flowing in the pipes. The pump is able to shape and control the flow by driving a piston through a dedicated software. Periodic waveforms are used as input to the pump to move the fluid into the pipes, with synchronization of the MRI sequences to the flow waveforms. A dedicated software is used to extract and analyze flow data from magnitude and phase images. The match between the nominal and the measured flows was assessed, and the scope of phantom variables useful for a reliable calibration of an MRI system was accordingly defined. Results showed that the NO-HYPE phantom is a valuable tool for the assessment of MRI scanners and sequence design for the MR evaluation of blood flows. Overview of the NOvel HYdrodynamic Phantom for the Evaluation of MRI flow measurements (NO-HYPE). Left: internal of the CompuFlow 1000 MR pump unit. Right: Setting of the NO-HYPE before a MRI acquisition session. Soft tissue mimicking material is hosted in the central part of the phantom (light blue chamber). Glass pipes pass through the chamber carrying the blood mimicking fluid.

摘要

准确且可重现的血流剖面测量在许多心血管疾病诊断的临床研究中非常重要。鉴于许多因素会影响人体循环,并且必须设置多个参数才能正确地使用相位对比技术评估血流,我们开发了一种与 MRI 兼容的流体动力模型来模拟不同的生理血流。该模型包括一个可编程的液压泵,通过一个专门的软件,该泵与一系列浸入模拟人体软组织溶液中的管道相连,使血液模拟液在管道中流动。泵能够通过驱动活塞来塑造和控制流动。周期性的波形被用作输入到泵中,以将流体移动到管道中,同时与流动波形同步进行 MRI 序列。专用软件用于从幅度和相位图像中提取和分析流动数据。评估了名义流量和测量流量之间的匹配程度,并相应地定义了用于对 MRI 系统进行可靠校准的模型变量范围。结果表明,NO-HYPE 模型是评估 MRI 扫描仪和用于 MR 血流评估的序列设计的有价值工具。用于 MRI 流量测量评估的新型流体动力学模型(NO-HYPE)概述。左:CompuFlow 1000 MR 泵单元的内部。右:在 MRI 采集会话之前的 NO-HYPE 设置。软组织模拟材料位于模型的中央部分(浅蓝色腔室)。玻璃管穿过腔室,携带血液模拟液。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a2b/8382656/f3c32074bd9a/11517_2021_2390_Figa_HTML.jpg

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