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首页> 外文期刊>Investigative radiology >Feasibility of k-t BLAST for BOLD fMRI with a spin-echo based acquisition at 3 T and 7 T.
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Feasibility of k-t BLAST for BOLD fMRI with a spin-echo based acquisition at 3 T and 7 T.

机译:k-t BLAST用于大胆功能磁共振成像的可行性,在3 T和7 T时进行基于自旋回波的采集。

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OBJECTIVES: This study tested the feasibility of applying k-t BLAST to blood oxygen level dependent functional MRI of the brain at 3 Tesla (T) and at 7 T. Shorter echo train lengths, achieved through the application of k-t BLAST, are expected to counteract increased sensitivity to inhomogeneities in B0 at higher magnetic field strengths, especially in echo planar images, and reduce the relatively long acquisition times and high RF power deposition in spin-echo based methods. MATERIALS AND METHODS: k-t BLAST was combined with displaced UFLARE at 3 T and 7 T. Temporal and spatial fidelity of k-t BLAST were investigated using a test object, in which localized variations in signal intensity mimic activation-induced signal changes. fMRI was performed using typical box-car design finger tapping. In a separate analysis full k-space data were decimated to simulate k-t BLAST acquisitions and compare results with the fully sampled data, thereby avoiding physiological and noise differences between acquisitions. RESULTS: Activation can be detected at under-sampling factors as high as 16, whereas appropriately reconstructed data, under-sampled at factors below 8 entail insignificant loss of sensitivity and considerable reductions in acquisition times and RF power deposition. CONCLUSIONS: k-t BLAST is compatible with fMRI acquisitions and opens up possibilities including distortion-free T2*-weighted blood oxygen level dependent fMRI with displaced UFLARE at high magnetic field strengths.
机译:目的:本研究测试了在3特斯拉(T)和7 T下将kt BLAST应用于脑中依赖于血氧水平的功能性MRI的可行性。通过使用kt BLAST可以实现更短的回波长度,从而抵消在较高的磁场强度下(特别是在回波平面图像中)对B0中的不均匀性具有较高的灵敏度,并减少了基于自旋回波的方法中相对较长的采集时间和较高的RF功率沉积。材料与方法:在3 T和7 T将k-t BLAST与置换的UFLARE结合使用。使用测试对象研究k-t BLAST的时空保真度,其中信号强度的局部变化模拟激活诱导的信号变化。使用典型的箱式车设计的手指敲击功能进行了功能磁共振成像。在单独的分析中,抽取完整的k空间数据以模拟k-t BLAST采集,并将结果与​​完整采样的数据进行比较,从而避免采集之间的生理和噪声差异。结果:可以在高达16的欠采样因子下检测到激活,而在低于8的因子下进行适当重构的数据经过适当采样后,灵敏度的损失不明显,采集时间和RF功率沉积显着减少。结论:k-t BLAST与fMRI采集兼容,并开辟了可能性,包括无畸变的T2 *加权血氧水平依赖性fMRI,以及在高磁场强度下移位的UFLARE。

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