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相位对比超短TE:一种测量高速湍流狭窄射流的更可靠技术。

Phase contrast ultrashort TE: A more reliable technique for measurement of high-velocity turbulent stenotic jets.

作者信息

O'Brien Kieran R, Myerson Saul G, Cowan Brett R, Young Alistair A, Robson Matthew D

机构信息

Bioengineering Institute, University of Auckland, Auckland, New Zealand.

出版信息

Magn Reson Med. 2009 Sep;62(3):626-36. doi: 10.1002/mrm.22051.

Abstract

Accurate measurement of peak velocity is critical to the assessment of patients with stenotic valvular disease. Conventional phase contrast (PC) methods for imaging high-velocity jets in aortic stenosis are susceptible to intravoxel dephasing signal loss, which can result in unreliable measurements. The most effective method for reducing intravoxel dephasing is to shorten the echo time (TE); however, the amount that TE can be shortened in conventional sequences is limited. A new sequence incorporating velocity-dependent slice excitation and ultrashort TE (UTE) centric radial readout trajectories is proposed that reduces TE from 2.85 to 0.65 ms. In a high-velocity stenotic jet phantom, a conventional sequence had >5% flow error at a flow rate of only 400 mL/s (velocity >358 cm/s), whereas the PC-UTE showed excellent agreement (<5% error) at much higher flow rates (1080 mL/s, 965 cm/s). In vivo feasibility studies demonstrated that by measuring velocity over a shorter time the PC-UTE approach is more robust to intravoxel dephasing signal loss. It also has less inherent higher-order motion encoding. This sequence therefore demonstrates potential as a more robust method for measuring peak velocity and flow in high-velocity turbulent stenotic jets.

摘要

准确测量峰值流速对于评估患有狭窄瓣膜疾病的患者至关重要。用于成像主动脉瓣狭窄中高速射流的传统相位对比(PC)方法易受体素内失相信号损失的影响,这可能导致测量结果不可靠。减少体素内失相的最有效方法是缩短回波时间(TE);然而,在传统序列中TE能够缩短的量是有限的。本文提出了一种新的序列,该序列结合了速度依赖的切片激发和以超短TE(UTE)为中心的径向读出轨迹,可将TE从2.85 ms缩短至0.65 ms。在高速狭窄射流模型中,传统序列在仅400 mL/s(速度>358 cm/s)的流速下就有>5%的流量误差,而PC-UTE在更高的流速(1080 mL/s,965 cm/s)下显示出极好的一致性(<5%误差)。体内可行性研究表明,通过在更短的时间内测量流速,PC-UTE方法对体素内失相信号损失更具鲁棒性。它还具有较少的固有高阶运动编码。因此,该序列显示出作为一种更鲁棒的方法来测量高速湍流狭窄射流中的峰值流速和流量的潜力。

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