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首页> 外文期刊>Advances in Experimental Medicine and Biology >Single shot T1rho magnetic resonance imaging of metabolically generated water in vivo.
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Single shot T1rho magnetic resonance imaging of metabolically generated water in vivo.

机译:体内代谢产生的水的单次T1rho磁共振成像。

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摘要

The use of Oxygen-17 MRI provides great promise for the clinically-useful quantification of metabolism. To bring techniques based on 17O closer to clinical application, we demonstrate imaging of metabolically generated H2 17O in pigs after 17O2 delivery with increased temporal resolution T1rho-weighted imaging and precision delivery of 17O2 gas. The kinetics of the appearance of H2 17O in pig brains are displayed with one to two minutes of 17O2 delivery, the shortest delivery times reported in the literature. It is also shown that H2 17O concentrations can be quantified with single shot T1rho imaging based on a balanced steady state free precession readout, and that with this strategy pausing to reduce T1 saturation increases sensitivity to H2 17O over acquisition in the steady state. Several additional considerations with this sequence, which can be generalized to any pre-encoding cluster, such as energy deposition are considered.
机译:Oxygen-17 MRI的使用为临床量化代谢提供了广阔前景。为了使基于17O的技术更接近于临床应用,我们演示了17O2输送后猪体内代谢产生的H2 17O的成像,具有更高的时间分辨率T1rho加权成像和17O2气体的精确输送。猪脑中H2 17O出现的动力学以一到两分钟的17O2递送来展示,这是文献中报道的最短递送时间。还显示,可以基于平衡的稳态自由进动读数,通过单次T1rho成像对H2 17O浓度进行定量,并且采用此策略暂停降低T1饱和度会增加对H2 17O的敏感性,而不是在稳态下采集。考虑了该序列的一些其他考虑,这些考虑可以推广到任何预编码簇,例如能量沉积。

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