Suppr超能文献

使用体外四维血流磁共振成像评估瓣膜反流血流喷射:对二尖瓣反流的意义

Valvular regurgitation flow jet assessment using in vitro 4D flow MRI: Implication for mitral regurgitation.

作者信息

Lee Jeesoo, Gupta Aakash N, Ma Liliana E, Scott Michel B, Mason O'Neil R, Wu Erik, Thomas James D, Markl Michael

机构信息

Department of Radiology, Northwestern University, Feinberg School of Medicine, Chicago, Illinois, USA.

Division of Cardiology, Northwestern Memorial Hospital, Chicago, Illinois, USA.

出版信息

Magn Reson Med. 2022 Apr;87(4):1923-1937. doi: 10.1002/mrm.29082. Epub 2021 Nov 16.

Abstract

PURPOSE

The purpose of this study was to evaluate the accuracy of four-dimensional (4D) flow MRI for direct assessment of peak velocity, flow volume, and momentum of a mitral regurgitation (MR) flow jets using an in vitro pulsatile jet flow phantom. We systematically investigated the impact of spatial resolution and quantification location along the jet on flow quantities with Doppler ultrasound as a reference for peak velocity.

METHODS

Four-dimensional flow MRI data of a pulsatile jet through a circular, elliptical, and 3D-printed patient-specific MR orifice model was acquired with varying spatial resolution (1.5-5 mm isotropic voxel). Flow rate and momentum of the jet were quantified at various axial distances (x = 0-50 mm) and integrated over time to calculate Vol and MTI . In vivo assessment of Vol and MTI was performed on 3 MR patients.

RESULTS

Peak velocities were comparable to Doppler ultrasound (3% error, 1.5 mm voxel), but underestimated with decreasing spatial resolution (-40% error, 5 mm voxel). Vol was similar to regurgitant volume (RVol) within 5 mm, and then increased linearly with the axial distance (19%/cm) because of flow entrainment. MTI remained steady throughout the jet (2%/cm) as theoretically predicted. Four and 9 voxels across the jet were required to measure flow volume and momentum-time-integral within 10% error, respectively.

CONCLUSION

Four-dimensional flow MRI detected accurate peak velocity, flow rate, and momentum for in vitro MR-mimicking flow jets. Spatial resolution significantly impacted flow quantitation, which otherwise followed predictions of flow entrainment and momentum conservation. This study provides important preliminary information for accurate in vivo MR assessment using 4D flow MRI.

摘要

目的

本研究旨在使用体外脉动射流模型评估四维(4D)流动磁共振成像(MRI)直接测量二尖瓣反流(MR)血流喷射峰值速度、流量和动量的准确性。我们以多普勒超声测量的峰值速度作为参考,系统研究了空间分辨率和沿射流的定量位置对流量的影响。

方法

通过圆形、椭圆形和3D打印的患者特异性MR孔口模型获取脉动射流的四维流动MRI数据,空间分辨率不同(各向同性体素为1.5 - 5 mm)。在不同轴向距离(x = 0 - 50 mm)处对射流的流速和动量进行定量,并随时间积分以计算容积(Vol)和动量时间积分(MTI)。对3例MR患者进行了Vol和MTI的体内评估。

结果

峰值速度与多普勒超声相当(误差3%,体素为1.5 mm),但随着空间分辨率降低而被低估(误差 - 40%,体素为5 mm)。在5 mm范围内,Vol与反流容积(RVol)相似,然后由于血流夹带,随轴向距离呈线性增加(19%/cm)。如理论预测,MTI在整个射流中保持稳定(2%/cm)。分别需要在射流上4个和9个体素才能在10%误差范围内测量流量和动量时间积分。

结论

四维流动MRI能够准确检测体外模拟MR的血流喷射的峰值速度、流速和动量。空间分辨率对流量定量有显著影响,否则其遵循血流夹带和动量守恒的预测。本研究为使用4D流动MRI进行准确的体内MR评估提供了重要的初步信息。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验