首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >A novel continuous arterial spin labeling approach for CBF measurement in rats with reduced labeling time and optimized signal-to-noise ratio efficiency
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A novel continuous arterial spin labeling approach for CBF measurement in rats with reduced labeling time and optimized signal-to-noise ratio efficiency

机译:用于大鼠CBF测量的新型连续动脉自旋标记方法,可减少标记时间并优化信噪比效率

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摘要

Objective: To develop a continuous arterial spin labeling (CASL) perfusion imaging method for cerebral blood flow (CBF) measurement in rats with reduced spin-labeling length and optimized signal-to-noise ratio (SNR _f) per unit time. Materials and methods: In the proposed method, the longitudinal magnetization of brain tissue water in the imaging slice is prepared into a proper state before spin-labeling, and a post-tagging delay is employed after spin-labeling. The method was implemented on a 4.7 T small animal scanner. Numerical simulations and in vivo experiments were used to evaluate the performance of the method proposed. Results: With the proposed method, absolute CBF could be measured accurately from normal rat with a spin-labeling pulse as short as 400 ms, and yet employing the same formula as that used in the conventional CASL perfusion imaging method for calculation. The method also showed improved SNR _f per unit time over the conventional CASL perfusion imaging method and the pulsed arterial spin labeling perfusion imaging method FAIR. Conclusion: Compared to the conventional CASL perfusion imaging method, the proposed method would be advantageous for CBF measurement in small animals having short vascular transit time in terms of SNR _f per unit time and other benefits brought by shortened spin-labeling pulse.
机译:目的:建立减少大鼠自旋标记长度,优化单位时间信噪比(SNR_f)的连续动脉自旋标记(CASL)灌注成像方法,用于大鼠脑血流量(CBF)测量。材料和方法:在提出的方法中,在旋转标记之前将成像切片中脑组织水的纵向磁化准备为合适的状态,并在旋转标记之后采用后标记延迟。该方法在4.7 T小动物扫描仪上实施。数值模拟和体内实验被用来评估所提出方法的性能。结果:使用所提出的方法,可以使用短至400 ms的自旋标记脉冲,从正常大鼠中准确测量绝对CBF,但仍采用与常规CASL灌注成像方法相同的公式进行计算。与常规CASL灌注成像方法和脉冲动脉自旋标记灌注成像方法FAIR相比,该方法还显示出每单位时间的SNR _f改善。结论:与传统的CASL灌注成像方法相比,该方法在具有短血管通过时间的小型动物中,每单位时间的SNR _f以及较短的自旋标记脉冲带来的其他好处将有利于CBF的测量。

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