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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >3D fast spin echo with out-of-slab cancellation: a technique for high-resolution structural imaging of trabecular bone at 7 Tesla.
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3D fast spin echo with out-of-slab cancellation: a technique for high-resolution structural imaging of trabecular bone at 7 Tesla.

机译:带板外抵消的3D快速自旋回波:一种在7 Tesla下对小梁骨进行高分辨率结构成像的技术。

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摘要

Spin-echo-based pulse sequences are desirable for the application of high-resolution imaging of trabecular bone but tend to involve high-power deposition. Increased availability of ultrahigh field scanners has opened new possibilities for imaging with increased signal-to-noise ratio (SNR) efficiency, but many pulse sequences that are standard at 1.5 and 3 T exceed specific absorption rate limits at 7 T. A modified, reduced specific absorption rate, three-dimensional, fast spin-echo pulse sequence optimized specifically for in vivo trabecular bone imaging at 7 T is introduced. The sequence involves a slab-selective excitation pulse, low-power nonselective refocusing pulses, and phase cycling to cancel undesired out-of-slab signal. In vivo images of the distal tibia were acquired using the technique at 1.5, 3, and 7 T field strengths, and SNR was found to increase at least linearly using receive coils of identical geometry. Signal dependence on the choice of refocusing flip angles in the echo train was analyzed experimentally and theoretically by combining the signal from hundreds of coherence pathways, and it is shown that a significant specific absorption rate reduction can be achieved with negligible SNR loss.
机译:基于自旋回波的脉冲序列对于小梁骨的高分辨率成像的应用是理想的,但往往涉及高功率沉积。超高场扫描仪可用性的提高为信噪比(SNR)效率的提高提供了成像的新可能性,但是许多标准的1.5和3 T脉冲序列超过了7 T的特定吸收率限制。引入了特定吸收率,三维,快速自旋回波脉冲序列,该序列专门针对7 T的体内小梁骨成像进行了优化。该序列涉及板坯选择性激励脉冲,低功率非选择性重聚焦脉冲和相位循环,以消除不希望的板外信号。使用该技术在1.5、3和7 T场强下获取胫骨远端的体内图像,并且使用相同几何形状的接收线圈发现SNR至少线性增加。通过组合来自数百个相干路径的信号,从实验和理论上分析了信号对回声序列中重新聚焦翻转角选择的依赖性,结果表明,可以将显着的比吸收率降低并降低SNR损失。

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