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Design of Cosine Modulated Very Selective Suppression Pulses for Magnetic Resonance Spectroscopic Imaging at 3T

机译:3T磁共振成像的余弦调制极选择性抑制脉冲设计

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摘要

The advantages of using a 3 Tesla scanner for MR spectroscopic imaging (MRSI) of brain tissue include improved spectral resolution and increased sensitivity. Very selective saturation (VSS) pulses are important for maximizing selectivity for PRESS MRSI and minimizing chemical shift misregistration by saturating signals from outside the selected region. Although 3D PRESS MRSI is able to provide excellent quality metabolic data for patients with brain tumors and has been shown to be important for defining tumor burden, the method is currently limited by how much of the anatomic lesion can be covered within a single examination. In this study we designed and implemented cosine modulated VSS pulses that were optimized for 3 Tesla MRSI acquisitions. This provided improved coverage and suppression of unwanted lipid signals with a smaller number of pulses. The use of the improved pulse sequence was validated in volunteer studies, and in clinical 3D MRSI exams of brain tumors.
机译:使用3 Tesla扫描仪进行脑组织MR光谱成像(MRSI)的优势包括提高光谱分辨率和提高灵敏度。极高选择性的饱和(VSS)脉冲对于最大化PRESS MRSI的选择性并通过使来自选定区域外部的信号饱和来最大程度地减少化学位移重合失调非常重要。尽管3D PRESS MRSI能够为脑肿瘤患者提供优质的代谢数据,并且已显示出对定义肿瘤负荷的重要性,但该方法目前受限于一次检查可覆盖多少解剖病变。在这项研究中,我们设计并实现了针对3 Tesla MRSI采集进行了优化的余弦调制VSS脉冲。这以较少的脉冲数提供了更好的覆盖范围并抑制了不需要的脂质信号。改进的脉冲序列的使用已在志愿者研究和脑肿瘤的临床3D MRSI检查中得到验证。

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