论文标题

分析用于检测振荡磁场的自旋锁定制剂的鲁棒性和动力学

Analysis of the robustness and dynamics of spin-locking preparations for the detection of oscillatory magnetic fields

论文作者

Capiglioni, Milena, Turco, Federico, Wiest, Roland, Kiefer, Claus

论文摘要

通过非侵入性成像提取神经元信号的定量信息是理解大脑功能和病理学的重要挑战。但是,最先进的技术对深层电源的敏感性低。刺激诱导的旋转饱和度(SIRS)是最近提出的磁共振成像(MRI)序列,使用自旋锁定制备检测振荡磁场。幻影实验和仿真证明了其效率和敏感性,但是该方法对场不均匀性的敏感性仍未得到充分了解。在这项研究中,我们模拟和分析了三种自旋锁剂制剂的动态及其对谐振振荡场的情况下对场不均匀性的反应。我们表明,在双谐振效果内,复合旋转锁的制备对场变化更为强大。此外,我们测试了所选的复合自旋锁制备的能力,以恢复有关复合信号的光谱成分的信息。这项研究使基地将基于MR的神经元电流成像的临床应用迈进了一步。

Extracting quantitative information of neuronal signals by non-invasive imaging is an outstanding challenge for understanding brain function and pathology. However, state-of-the-art techniques offer low sensitivity to deep electrical sources. Stimulus induced rotary saturation (SIRS) is a recently proposed magnetic resonance imaging (MRI) sequence that detects oscillatory magnetic fields using a spin-lock preparation. Phantom experiments and simulations proved its efficiency and sensitivity, but the susceptibility of the method to field inhomogeneities is still not well understood. In this study, we simulated and analyzed the dynamic of three spin-lock preparations and their response to field inhomogeneities in the presence of a resonant oscillating field. We show that the composite spin-lock preparation is more robust against field variations within the double resonance effect. In addition, we tested the capability of the chosen composite spin-lock preparation to recover information about the spectral components of a composite signal. This study sets the bases to move one step further towards the clinical application of MR-based neuronal current imaging.

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