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Control of susceptibility-related image contrast by spin-lock techniques

机译:通过自旋锁技术控制与磁化率相关的图像对比度

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摘要

Macroscopic magnetic field inhomogeneities might lead to image distortions, while microscopic held inhomogeneities, due to susceptibility changes in tissues, cause spin dephasing and decreasing T-2* relaxation time. The latter effects are especially observed in the trabecular bone and in regions adjacent to air-containing cavities when gradient-echo sequences are applied. In conventional MRI, these susceptibility-related signal voids can be avoided by applying spin-echo (SE) techniques. In this study, an alternative method for the examination and control of susceptibility-related effects by spin-lock (SL) radiofrequency pulses is presented: SL pulses were applied in two different susceptibility-sensitive sequence types: (a) between the jump and return 90 degrees pulses in a 90(x)degrees-tau-90 degrees-(x) magnetization-prepared Fast Low Angle Shot (FLASH) sequence and (b) between the 90 degrees pulse and the 180 degrees pulse in an asymmetric SE sequence. The range of Larmor frequencies used for spin locking can be determined for different B-1 amplitudes of the SL pulses, allowing control of image contrast by the amplitude of the SL pulses.
机译:宏观磁场的不均匀性可能会导致图像变形,而微观保持的不均匀性则由于组织中的磁化率变化而引起自旋相移并减少了T-2 *弛豫时间。当应用梯度回波序列时,后一种效应尤其在小梁骨和邻近含气腔的区域中观察到。在常规MRI中,可以通过应用自旋回波(SE)技术来避免这些与磁化率相关的信号空隙。在这项研究中,提出了一种通过自旋锁(SL)射频脉冲检查和控制磁化相关效应的替代方法:SL脉冲应用于两种不同的磁化敏感性序列类型:(a)跳跃和返回之间以90(x)-tau-90度-(x)磁化准备的快速低角度拍摄(FLASH)序列的90度脉冲,以及(b)非对称SE序列的90度脉冲和180度脉冲之间的脉冲。可以针对SL脉冲的不同B-1幅度确定用于自旋锁定的Larmor频率范围,从而可以通过SL脉冲的幅度控制图像对比度。

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