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首页> 外文期刊>Journal of cardiovascular magnetic resonance : >Rapid assessment of myocardial infarct size in rodents using multi-slice inversion recovery late gadolinium enhancement CMR at 9.4T
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Rapid assessment of myocardial infarct size in rodents using multi-slice inversion recovery late gadolinium enhancement CMR at 9.4T

机译:使用多层反转恢复晚期late增强CMR在9.4T快速评估啮齿类动物的心肌梗塞大小

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BackgroundMyocardial infarction (MI) can be readily assessed using late gadolinium enhancement (LGE) cardiovascular magnetic resonance (CMR). Inversion recovery (IR) sequences provide the highest contrast between enhanced infarct areas and healthy myocardium. Applying such methods to small animals is challenging due to rapid respiratory and cardiac rates relative to T1 relaxation.MethodsHere we present a fast and robust protocol for assessing LGE in small animals using a multi-slice IR gradient echo sequence for efficient assessment of LGE. An additional Look-Locker sequence was used to assess the optimum inversion point on an individual basis and to determine most appropriate gating points for both rat and mouse. The technique was applied to two preclinical scenarios: i) an acute (2 hour) reperfused model of MI in rats and ii) mice 2 days following non-reperfused MI.ResultsLGE images from all animals revealed clear areas of enhancement allowing for easy volume segmentation. Typical inversion times required to null healthy myocardium in rats were between 300-450 ms equivalent to 2-3 R-waves and ~330 ms in mice, typically 3 R-waves following inversion. Data from rats was also validated against triphenyltetrazolium chloride staining and revealed close agreement for infarct size.ConclusionThe LGE protocol presented provides a reliable method for acquiring images of high contrast and quality without excessive scan times, enabling higher throughput in experimental studies requiring reliable assessment of MI.
机译:背景心肌梗塞(MI)可以使用晚期g增强(LGE)心血管磁共振(CMR)轻松评估。反转恢复(IR)序列可在梗死面积增加与健康心肌之间提供最高对比度。由于与T1放松相关的快速呼吸和心跳频率,将此类方法应用于小型动物具有挑战性。附加的Look-Locker序列用于分别评估最佳反转点,并确定对大鼠和小鼠最合适的门控点。该技术已应用于两种临床前情况:i)大鼠的MI急性(2小时)再灌注模型,ii)非再灌注的MI后2天的小鼠。结果所有动物的LGE图像均显示清晰的增强区域,可轻松进行体积分割。使大鼠健康心肌无效所需的典型反转时间在300-450毫秒之间,相当于2-3个R波至〜330毫秒,在小鼠中,通常为反转后的3个R波。还对大鼠的数据进行了三苯基四唑氯化物染色验证并显示了梗塞面积的紧密一致性。结论所提出的LGE协议提供了一种可靠的方法来获取高对比度和高质量的图像,而无需花费过多的扫描时间,从而在需要可靠评估MI的实验研究中实现了更高的通量。

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