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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Improved detection of fMRI activation in the cerebellum at 7T with dielectric pads extending the imaging region of a commercial head coil
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Improved detection of fMRI activation in the cerebellum at 7T with dielectric pads extending the imaging region of a commercial head coil

机译:利用介电焊盘改进了7T的小脑中FMRI活化的检测,延伸了商业头部线圈的成像区域

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Background There is growing interest in detecting cerebro‐cerebellar circuits, which requires adequate blood oxygenation level dependent contrast and signal‐to‐noise ratio (SNR) throughout the brain. Although 7T scanners offer increased SNR, coverage of commercial head coils is currently limited to the cerebrum. Purpose To improve cerebellar functional MRI (fMRI) at 7T with high permittivity material (HPM) pads extending the sensitivity of a commercial coil. Study Type Simulations were used to determine HPM pad configuration and assess radiofrequency (RF) safety. In vivo experiments were performed to evaluate RF field distributions and SNR and assess improvements of cerebellar fMRI. Subjects Eight healthy volunteers enrolled in a prospective motor fMRI study with and without HPM. Field Strength/Sequence Gradient echo (GRE) echo planar imaging for fMRI, turbo FLASH for flip angle mapping, GRE sequence for SNR maps, and T 1 ‐weighted MPRAGE were acquired with and without HPM pads at 7T. Assessment Field maps, SNR maps, and anatomical images were evaluated for coverage. Simulation results were used to assess SAR levels of the experiment. Activation data from fMRI experiments were compared with and without HPM pads. Statistical Tests fMRI data were analyzed using FEAT FSL for each subject followed by group level analysis using paired t‐test of acquisitions with and without HPM. Results Simulations showed 52% improvement in transmit efficiency in cerebellum with HPM and SAR levels well below recommended limits. Experiments showed 27% improvement in SNR in cerebellum and improvement in coverage on T 1 ‐weighted images. fMRI showed greater cerebellar activation in individual subjects with the HPM pad present (Z??=?4), especially in inferior slices of cerebellum, with 59% average increase in number of activated voxels in the cerebellum. Group‐level analysis showed improved functional activation (Z??=?2.3) in cerebellar regions with HPM pads without loss of measured activation elsewhere. Data Conclusion HPM pads can improve cerebellar fMRI at 7T with a commonly‐used head coil without compromising RF safety. Level of Evidence : 2 Technical Efficacy : Stage 1 J. MAGN. RESON. IMAGING 2018;48:431–440.
机译:背景技术对检测脑大脑电路的兴趣日益增长,这需要在整个大脑中获得足够的血氧水平依赖性对比和信噪比(SNR)。虽然7T扫描仪提供增加的SNR,但商业头部线圈的覆盖率目前仅限于大脑。目的,以高介电常数(HPM)焊盘在7T处改善小脑功能MRI(FMRI),其延伸了商用线圈的灵敏度。研究型模拟用于确定HPM PAD配置并评估射频(RF)安全性。进行体内实验以评估RF场分布和SNR并评估小脑FMRI的改进。主题八个健康志愿者参加了一项潜在电机FMRI研究,没有HPM。用于FMRI的场强/序列梯度回波(GRE)回波平面成像,用于翻转角映射的Turbo Flash,用于SNR映射的GRE序列,并在7T时没有HPM焊盘获取T 1 -wutigrated Mprage。评估评估场地图,SNR地图和解剖图像以进行覆盖范围。仿真结果用于评估实验的SAR水平。将来自FMRI实验的激活数据与HPM垫进行比较。使用FEAT FSL为每个主题进行分析统计测试FMRI数据,然后使用具有和无HPM的采集的配对T检验进行组级别分析。结果模拟表明,脑卒中的发射效率有52%,HPM和SAR水平远低于建议的限制。实验表明,小脑中的SNR改善了27%,改善了T 1-Wutighted图像的覆盖范围。 FMRI在具有HPM垫的个体受试者中显示出更大的小脑活化(Z?&?=α4),特别是在小切片中,小脑中的活化体素数量增加59%。组水平分析显示在小脑区域中具有改进的功能激活(Z?& =α2.3),其中HPM垫在其他地方的测量激活损失。数据结论HPM焊盘可以在7T中提高小脑FMRI,在不损害RF安全的情况下用共同使用的头部线圈提高7T。证据水平:2技术疗效:第1阶段J. MANG。恢复。 2018年成像; 48:431-440。

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