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标记参数和呼吸运动对用于肾灌注成像的速度选择性动脉自旋标记的影响。

Influence of labeling parameters and respiratory motion on velocity-selective arterial spin labeling for renal perfusion imaging.

作者信息

Bones Isabell K, Franklin Suzanne L, Harteveld Anita A, van Osch Matthias J P, Hendrikse Jeroen, Moonen Chrit, van Stralen Marijn, Bos Clemens

机构信息

Center for Image Sciences, University Medical Center Utrecht, Utrecht, the Netherlands.

C.J. Gorter Center for High Field MRI, Department of Radiology, Leiden University Medical Center, Leiden, the Netherlands.

出版信息

Magn Reson Med. 2020 Oct;84(4):1919-1932. doi: 10.1002/mrm.28252. Epub 2020 Mar 17.

Abstract

PURPOSE

Arterial transit time uncertainties and challenges during planning are potential issues for renal perfusion measurement using spatially selective arterial spin labeling techniques. To mitigate these potential issues, a spatially non-selective technique, such as velocity-selective arterial spin labeling (VSASL), could be an alternative. This article explores the influence of VSASL sequence parameters and respiratory induced motion on VS-label generation.

METHODS

VSASL data were acquired in human subjects (n = 15), with both single and dual labeling, during paced-breathing, while essential sequence parameters were systematically varied; (1) cutoff velocity, (2) labeling gradient orientation and (3) post-labeling delay (PLD). Pseudo-continuous ASL was acquired as a spatially selective reference. In an additional free-breathing single VSASL experiment (n = 9) we investigated respiratory motion influence on VS-labeling. Absolute renal blood flow (RBF), perfusion weighted signal (PWS), and temporal signal-to-noise ratio (tSNR) were determined.

RESULTS

(1) With decreasing cutoff velocity, tSNR and PWS increased. However, undesired tissue labeling occurred at low cutoff velocities (≤ 5.4 cm/s). (2) Labeling gradient orientation had little effect on tSNR and PWS. (3) For single VSASL high signal appeared in the kidney pedicle at PLD < 800 ms, and tSNR and PWS decreased with increasing PLD. For dual VSASL, maximum tSNR occurred at PLD = 1200 ms. Average cortical RBF measured with dual VSASL (264 ± 34 mL/min/100 g) at a cutoff velocity of 5.4 cm/s, and feet-head labeling was slightly lower than with pseudo-continuous ASL (283 ± 55 mL/min/100 g).

CONCLUSION

With well-chosen sequence parameters, tissue labeling induced by respiratory motion can be minimized, allowing to obtain good quality RBF maps using planning-free labeling with dual VSASL.

摘要

目的

在使用空间选择性动脉自旋标记技术进行肾灌注测量时,规划过程中动脉通过时间的不确定性和挑战是潜在问题。为了减轻这些潜在问题,一种空间非选择性技术,如速度选择性动脉自旋标记(VSASL),可能是一种替代方法。本文探讨了VSASL序列参数和呼吸诱导运动对VS标记生成的影响。

方法

在15名人类受试者中采集VSASL数据,采用单标记和双标记,在有节奏呼吸期间,同时系统地改变关键序列参数;(1)截止速度,(2)标记梯度方向和(3)标记后延迟(PLD)。采集伪连续动脉自旋标记(ASL)作为空间选择性参考。在另外一个自由呼吸的单VSASL实验(9名受试者)中,我们研究了呼吸运动对VS标记的影响。测定绝对肾血流量(RBF)、灌注加权信号(PWS)和时间信噪比(tSNR)。

结果

(1)随着截止速度降低,tSNR和PWS增加。然而,在低截止速度(≤5.4 cm/s)时会出现不期望的组织标记。(2)标记梯度方向对tSNR和PWS影响很小。(3)对于单VSASL,在PLD < 800 ms时肾蒂出现高信号,且tSNR和PWS随PLD增加而降低。对于双VSASL,最大tSNR出现在PLD = 1200 ms时。在截止速度为5.4 cm/s时,用双VSASL测量的平均皮质RBF为(264±34 mL/min/100 g),头足标记略低于伪连续ASL(283±55 mL/min/100 g)。

结论

通过精心选择序列参数,可将呼吸运动引起的组织标记降至最低,从而使用双VSASL的无规划标记获得高质量的RBF图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec1/7384062/9925e8b1b19b/MRM-84-1919-g001.jpg

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