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Exploring and enhancing relaxation-based sodium MRI contrast

机译:探索和增强基于松弛的钠MRI对比

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Object Sodium MRI is typically concerned with measuring tissue sodium concentration. This requires the minimization of relaxation weighting. However, ~(23)Na relaxation may itself be interesting to explore, given an underlying mechanism (i.e. the electric-quadrupolemoment- electric-field-gradient interaction) that differs from ~1H. A new sodium sequence was developed to enhance ~(23)Na relaxation contrast without decreasing signal-to-noise ratio. Materials and Methods The new sequence, labeled Projection Acquisition in the steady-state with Coherent MAgNetization (PACMAN), uses gradient refocusing of transverse magnetization following readout, a short repetition time, and a long radiofrequency excitation pulse. It was developed using simulation, verified in model environments (saline and agar), and evaluated in the brain of three healthy adult volunteers. Results Projection Acquisition in the steady-state with Coherent MAgNetization generates a large positive contrast-to-noise ratio (CNR) between saline and agar, matching simulation-based design. In addition to enhanced CNR between cerebral spinal fluid and brain tissue in vivo, PACMAN develops substantial contrast between gray and white matter. Further simulation shows that PACMAN has a ln(T_(2f)/T_1) contrast dependence (where T_(2f) is the fast component of ~(23)Na T_2), as well as residual quadrupole interaction dependence. Conclusion The relaxation dependence of PACMAN sodium MRI may provide contrast related to macromolecular tissue structure.
机译:对象钠MRI通常与测量组织钠浓度有关。这需要最小化松弛加权。然而,给定不同于(〜1H)的潜在机制(即电-四极矩-电场-梯度相互作用),〜(23)Na弛豫本身可能会很有趣。开发了一种新的钠序列,以增强〜(23)Na弛豫对比度,而又不降低信噪比。材料和方法新的序列标记为具有相干MAgNetization(PACMAN)的稳态状态下的“投影采集”,该序列使用读出后的横向磁化强度的梯度重新聚焦,较短的重复时间和较长的射频激励脉冲。它是通过仿真开发的,并在模型环境(盐水和琼脂)中进行了验证,并在三名健康成人志愿者的大脑中进行了评估。结果通过相干MAgNetization在稳态下进行投影采集,可以在盐水和琼脂之间产生大的正对比度和噪声比(CNR),并与基于仿真的设计相匹配。除了增强体内脑脊髓液和脑组织之间的CNR外,PACMAN还可以在灰质和白质之间形成明显的对比。进一步的仿真表明,PACMAN具有ln(T_(2f)/ T_1)对比度依赖性(其中T_(2f)是〜(23)Na T_2的快速成分)以及剩余的四极子相互作用依赖性。结论PACMAN钠MRI的弛豫依赖性可能与大分子组织结构有关。

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