[Attempt to Improve MIP Image of Cerebrovascular MRA by Subtraction Method: Efficient Acquisition of Mask Images Using Segmented TOF and Compressed Sensing].

Kazuyuki Ito, Nozomi Hamasaki, Takashi Shirato, Kazuhiko Doryo, Yutaka Ozaki
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Abstract

Purpose: The aim of this study was to investigate imaging conditions that allow for the rapid acquisition of mask images used in the subtraction method, one of the depiction improvement methods for brain magnetic resonance angiography, by employing compressed sensing (CS) combined with segmented time-of-flight (TOF).

Methods: The experiment was performed on healthy volunteers using 3.0T-MRI. We examined the blood flow signal suppression effects in arteries and veins at different numbers of segments. We determined the flip angle at which the signal value of fat in the mask image became equivalent to that in the angio image. We visually assessed the impact of mask images with varying CS factors on subtraction images and determined the optimal CS factor.

Results: Effective blood flow signal suppression in arteries and veins was achieved with segment numbers of 12 or fewer, and a flip angle of 18° resulted in equivalent fat signal values. Even with a CS factor set to its maximum value of 12, no degradation in image quality was observed in the maximum intensity projection images.

Conclusion: Using segmented TOF with CS, optimal imaging conditions for acquiring mask images for the subtraction method were determined to be segment number 9, flip angle 18°, and CS factor 12.

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[尝试用减法改进脑血管 MRA 的 MIP 图像:利用分段 TOF 和压缩传感高效获取掩膜图像]。
目的:本研究旨在通过采用压缩传感(CS)与分段飞行时间(TOF)相结合的方法,研究在脑磁共振血管造影的描述改进方法之一--减影法中快速获取掩膜图像的成像条件:实验在健康志愿者身上使用 3.0T-MRI 进行。我们检测了不同分段数量下动脉和静脉的血流信号抑制效果。我们确定了掩膜图像中脂肪信号值与血管图像中脂肪信号值相等的翻转角度。我们目测了不同 CS 因子的掩膜图像对减影图像的影响,并确定了最佳 CS 因子:结果:段数为 12 或更少时,动脉和静脉的血流信号可得到有效抑制,翻转角度为 18°时,脂肪信号值相等。即使将 CS 因子设置为最大值 12,在最大强度投影图像中也没有观察到图像质量下降:结论:使用带 CS 的分段 TOF,为减影法获取掩膜图像的最佳成像条件被确定为分段数 9、翻转角 18°、CS 因子 12。
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