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Simultaneous and noninvasive imaging of cerebral oxygen metabolic rate, blood flow and oxygen extraction fraction in stroke mice

机译:中风小鼠脑氧代谢率,血流量和氧提取分数的同时和无创成像

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摘要

Many brain diseases have been linked to abnormal oxygen metabolism and blood perfusion; nevertheless, there is still a lack of robust diagnostic tools for directly imaging cerebral metabolic rate of oxygen (CMRO 2) and cerebral blood flow (CBF), as well as the oxygen extraction fraction (OEF) that reflects the balance between CMRO 2 and CBF. This study employed the recently developed in vivo 17O MR spectroscopic imaging to simultaneously assess CMRO 2, CBF and OEF in the brain using a preclinical middle cerebral arterial occlusion mouse model with a brief inhalation of 17O-labeled oxygen gas. The results demonstrated high sensitivity and reliability of the noninvasive 17O-MR approach for rapidly imaging CMRO 2, CBF and OEF abnormalities in the ischemic cortex of the MCAO mouse brain. It was found that in the ischemic brain regions both CMRO 2 and CBF were substantially lower than that of intact brain regions, even for the mildly damaged brain regions that were unable to be clearly identified by the conventional MRI. In contrast, OEF was higher in the MCAO affected brain regions. This study demonstrates a promising 17O MRI technique for imaging abnormal oxygen metabolism and perfusion in the diseased brain regions. This 17O MRI technique is advantageous because of its robustness, simplicity, noninvasiveness and reliability: features that are essential to potentially translate it to human patients for early diagnosis and monitoring of treatment efficacy.
机译:许多脑部疾病与氧气代谢异常和血液灌注异常有关;但是,仍然缺乏可靠的诊断工具来直接对大脑的氧的新陈代谢率(CMRO 2)和脑血流量(CBF)以及反映CMRO 2和CBF之间平衡的氧提取率(OEF)进行成像。这项研究使用临床前中脑动脉阻塞小鼠模型并短暂吸入17O标记的氧气,利用最近开发的体内17O MR光谱成像同时评估大脑中的CMRO 2,CBF和OEF。结果表明,无创17O-MR方法对MCAO小鼠大脑缺血皮层中CMRO 2,CBF和OEF异常的快速成像具有很高的灵敏度和可靠性。发现在缺血性脑区域,CMRO 2和CBF均显着低于完整脑区域,即使对于常规MRI无法清楚识别的轻度受损脑区域也是如此。相反,在受MCAO影响的大脑区域,OEF较高。这项研究证明了一种很有前景的17O MRI技术,可用于对患病的大脑区域中异常的氧代谢和灌注进行成像。这项17O MRI技术的优势在于它的鲁棒性,简单性,无创性和可靠性:对潜在地将其翻译给人类患者以进行早期诊断和监测治疗效果必不可少的功能。

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