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On the application of balanced steady-state free precession to MR microscopy

机译:均衡稳态自由进术对MR显微镜的应用

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Objective The applicability of the balanced steady-state free precession (bSSFP) sequence to the field of MR microscopy was investigated, since the potentially high SNR makes bSSFP attractive. However, particularly at ultra-high magnetic fields, a number of constraints emerge: the frequency sensitivity of the bSSFP signal, the duty cycle of the imaging gradients, and the intrinsic diffusion attenuation of the steady state due to the imaging gradients. Materials and methods Optimization of the bSSFP sequence was performed on three imaging systems (7 T and 9.4 T) suited for MR microscopy. Since biological samples are often imaged in the very proximity of materials from sample containers/ holder or devices such as electrodes, several microscopy phantoms representing such circumstances were fabricated and examined with 3D bSSFP. Results Artifact-free microscopic bSSFP images could be obtained with voxel sizes down to 16 μm × 16 μm × 78 μm and with an SNR gain of 25% over standard gradient echo images. Conclusion With appropriate choice of phantom materials, optimization of the flip angle to the diffusion-attenuated steady state and protocols considering duty-cycle limitations, bSSFP can be a valuable tool in MR microscopy.
机译:目的,研究了平衡稳态自由进样(BSSFP)序列对MR显微镜技术领域的适用性,因为潜在的高SNR使BSSFP具有吸引力。然而,特别是在超高磁场,许多约束出现:BSSFP信号的频率灵敏度,成像梯度的占空比,以及由于成像梯度引起的稳态的内在漫射衰减。材料和方法在适于MR显微镜的三个成像系统(7T和9.4T)上进行BSSFP序列的优化。由于生物样品通常在来自样品容器/支架或诸如电极的样品/支架或器件的物料的非常接近的内,因此用3D BSSFP制造并检查表示这种情况的若干显微镜体模。结果可以使用Voxel尺寸下降至16μm×16μm×78μm的伪影显微镜BSSFP图像,并在标准梯度回波图像上具有25%的SNR增益。 Conclusion With appropriate choice of phantom materials, optimization of the flip angle to the diffusion-attenuated steady state and protocols considering duty-cycle limitations, bSSFP can be a valuable tool in MR microscopy.

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