首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >EPR oximetry in the beating heart: myocardial oxygen consumption rate as an index of postischemic recovery.
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EPR oximetry in the beating heart: myocardial oxygen consumption rate as an index of postischemic recovery.

机译:跳动心脏的EPR血氧饱和度测定法:心肌耗氧率作为缺血后恢复的指标。

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摘要

Oxygen plays a critical role in the pathophysiology of myocardial injury during both ischemia and subsequent reperfusion (I/R). Thus, oxygen concentration is an important variable to measure during I/R. In the present work, electron paramagnetic resonance (EPR)-based oximetry was used to measure the oxygen concentration during a series of I/R episodes and oxygenation levels were correlated with the contractile and hemodynamic functions of the heart. A custom-developed electronically tunable surface coil resonator working at 1.1 GHz was used to determine tissue pO(2) in the beating heart. Microcrystalline particulate of lithium phthalocyanine was used as an EPR oximetry probe. Isolated and perfused rat hearts were subjected to 1 or 3 hr durations of preischemic perfusion, followed by 15-min I/R cycles. In hearts perfused for 3 hr prior to 15-min I/R cycles, the myocardial pO(2) decreased gradually on subsequent reperfusions of three successive I/R cycles. However, in hearts perfused for 1 hr there was almost 100% recovery of myocardial pO(2) in all three I/R cycles. The extent of oxygenation recovered in each reperfusion cycle correlated with the recovery of hemodynamic and contractile function. The results also showed that the oxygen consumption rate of the heart at the end of each I/R episode decreased in direct proportion to the functional recovery. In summary, it was observed that the amount of myocardial oxygen consumption during I/R could provide a reliable index of functional impairment in the heart.
机译:在缺血和随后的再灌注(I / R)期间,氧气在心肌损伤的病理生理中起关键作用。因此,氧浓度是在I / R期间要测量的重要变量。在当前的工作中,基于电子顺磁共振(EPR)的血氧测定法用于测量一系列I / R发作期间的氧浓度,并且氧合水平与心脏的收缩和血液动力学功能相关。定制开发的电子可调表面线圈谐振器的工作频率为1.1 GHz,用于确定跳动心脏中的组织pO(2)。锂酞菁锂的微晶颗粒用作EPR血氧饱和度测定仪探针。分离并灌注的大鼠心脏经过1或3个小时的缺血前灌注持续时间,然后进行15分钟的I / R循环。在15分钟I / R周期之前的3小时心脏灌注中,在随后的三个连续I / R周期的再灌注中,心肌pO(2)逐渐降低。但是,在灌注1小时的心脏中,在所有三个I / R周期中,心肌pO(2)的恢复率几乎都为100%。在每个再灌注循环中恢复的氧合作用程度与血液动力学和收缩功能的恢复相关。结果还表明,每次I / R发作结束时心脏的耗氧率与功能恢复成正比。总而言之,观察到I / R期间心肌耗氧量可以提供心脏功能损害的可靠指标。

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