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无导航剂的心脏代谢循环质子波谱。

Navigator-free metabolite-cycled proton spectroscopy of the heart.

机构信息

Institute for Biomedical Engineering, University and ETH Zurich, Zurich, Switzerland.

出版信息

Magn Reson Med. 2020 Mar;83(3):795-805. doi: 10.1002/mrm.27961. Epub 2019 Aug 26.

Abstract

PURPOSE

Respiratory gating in cardiac water-suppressed (WS) proton spectroscopy leads to long and unpredictable scan times. Metabolite cycling allows to perform frequency and phase correction on the water signal and, hence, offers an approach to navigator-free cardiac spectroscopy with fixed scan time. The objective of the present study was to develop and implement navigator-free metabolite-cycled cardiac proton spectroscopy (MC nonav) and compare it with standard navigator-gated WS (WS nav) and navigator-free WS (WS nonav) measurements for the assessment of triglyceride-to-water ratios (TG/W) and creatine-to-water ratios (CR/W) in the intraventricular septum of the in vivo heart.

METHODS

Navigator-free metabolite-cycled spectroscopy was implemented on a clinical 1.5T system. In vivo measurements were performed on 10 young and 5 older healthy volunteers to assess signal-to-noise ratio efficiency as well as TG/W and CR/W and the relative Cramér-Rao lower bounds for CR. The performance of the metabolite-cycled sequence was verified using simulations.

RESULTS

On average, scan times of MC nonav were 3.4 times shorter compared with WS nav, while no significant bias for TG/W was observed (coefficient of variation = 14.0%). signal-to-noise ratio efficiency of both TG and CR increased for MC nonav compared with WS nav. Relative Cramér-Rao lower bounds of CR decreased for MC nonav. Overall spectral quality was found comparable between MC nonav and WS nav, while it was inferior for WS nonav.

CONCLUSION

Navigator-free metabolite-cycled cardiac proton spectroscopy offers 3.4-fold accelerated assessment of TG/W and CR/W in the heart with preserved spectral quality when compared with navigator-gated WS scans.

摘要

目的

心脏水抑制(WS)质子波谱中的呼吸门控会导致扫描时间长且难以预测。代谢物循环可对水信号进行频率和相位校正,因此提供了一种无需导航的固定扫描时间心脏波谱方法。本研究的目的是开发和实施无需导航的代谢物循环心脏质子波谱(MC 非导航),并将其与标准导航门控 WS(WS 导航)和无需导航的 WS(WS 非导航)测量进行比较,以评估活体内心室间隔中的甘油三酯与水的比值(TG/W)和肌酸与水的比值(CR/W)。

方法

在临床 1.5T 系统上实施无需导航的代谢物循环波谱。对 10 名年轻和 5 名老年健康志愿者进行体内测量,以评估信噪比效率以及 TG/W 和 CR/W,以及 CR 的相对克拉默-罗下限。使用模拟验证代谢物循环序列的性能。

结果

平均而言,与 WS 导航相比,MC 非导航的扫描时间缩短了 3.4 倍,而 TG/W 无明显偏差(变异系数=14.0%)。与 WS 导航相比,MC 非导航的 TG 和 CR 的信噪比效率均提高。MC 非导航的 CR 的相对克拉默-罗下限降低。MC 非导航与 WS 导航之间的整体光谱质量相当,而 WS 非导航的光谱质量较差。

结论

与 WS 导航相比,无需导航的代谢物循环心脏质子波谱可提供 3.4 倍加速的 TG/W 和 CR/W 评估,且保留了光谱质量。

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