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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Rapid high-resolution T(1) mapping by variable flip angles: accurate and precise measurements in the presence of radiofrequency field inhomogeneity.
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Rapid high-resolution T(1) mapping by variable flip angles: accurate and precise measurements in the presence of radiofrequency field inhomogeneity.

机译:可变翻转角的快速高分辨率T(1)映射:在存在射频场不均匀性的情况下进行准确而精确的测量。

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摘要

Rapid 3D mapping of T(1) relaxation times is valuable in diverse clinical applications. Recently, the variable flip angle (VFA) spoiled gradient recalled echo approach was shown to be a practical alternative to conventional methods, providing better precision and speed. However, the method is known to be sensitive to transmit field (B(1) (+)) inhomogeneity and can result in significant systematic errors in T(1) estimates, especially at high field strengths. The main challenge is to improve the accuracy of the VFA approach without sacrificing speed. In this article, the VFA method was optimized for both accuracy and precision by considering the influence of imperfect transmit fields, noise bias, and selection of flip angles. An analytic solution was developed for systematic B(1) (+)-induced T(1) errors and allows simple correction of T(1) measurements acquired with any imaging parameters. A noise threshold was also identified and provided a guideline for avoiding T(1) biases. Finally, it was shown that three flip angles were the most efficient for maintaining accuracy and high precision over large ranges of T(1). A rapid B(1) (+) mapping sequence was employed in all phantom experiments and high-field in vivo brain scans. Experimental results confirmed the theory and validated the accuracy of the proposed method.
机译:T(1)弛豫时间的快速3D映射在各种临床应用中都很有价值。最近,可变回弹角(VFA)损坏的梯度回波方法被证明是常规方法的一种实用替代方法,具有更高的精度和速度。但是,已知该方法对传输场(B(1)(+))不均匀敏感,并且可能导致T(1)估计中的重大系统误差,尤其是在高场强下。主要的挑战是在不牺牲速度的情况下提高VFA方法的准确性。在本文中,通过考虑不完美的发射场,噪声偏置和翻转角的选择,对VFA方法进行了精度和精度优化。针对系统性B(1)(+)引起的T(1)误差开发了一种解析解决方案,该解决方案可轻松校正通过任何成像参数获取的T(1)测量值。还确定了噪声阈值,并提供了避免T(1)偏差的指南。最后,结果表明,在大范围T(1)上,三个翻转角对于保持精度和高精度是最有效的。快速的B(1)(+)映射序列用于所有幻像实验和高场体内脑扫描。实验结果证实了该理论并验证了该方法的准确性。

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