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首页> 外文期刊>NeuroImage >Magnetic resonance imaging quantification of regional cerebral blood flow and cerebrovascular reactivity to carbon dioxide in normotensive and hypertensive rats.
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Magnetic resonance imaging quantification of regional cerebral blood flow and cerebrovascular reactivity to carbon dioxide in normotensive and hypertensive rats.

机译:磁共振成像定量在正常血压和高血压大鼠中局部脑血流量和脑血管对二氧化碳的反应性。

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摘要

Hypertension afflicts 25% of the general population and over 50% of the elderly. In the present work, arterial spin labeling MRI was used to non-invasively quantify regional cerebral blood flow (CBF), cerebrovascular resistance and CO(2) reactivity in spontaneously hypertensive rats (SHR) and in normotensive Wistar Kyoto rats (WKY), at two different ages (3 months and 10 months) and under the effects of two anesthetics, alpha-chloralose and 2% isoflurane (1.5 MAC). Repeated CBF measurements were highly consistent, differing by less than 10% and 18% within and across animals, respectively. Under alpha-chloralose, whole brain CBF at normocapnia did not differ between groups (young WKY: 61 +/- 3ml/100g/min; adult WKY: 62 +/- 4ml/100g/min; young SHR: 70 +/- 9ml/100g/min; adult SHR: 69 +/- 8ml/100g/min), indicating normal cerebral autoregulation in SHR. At hypercapnia, CBF values increased significantly, and a linear relationship between CBF and PaCO(2) levels was observed. In contrast, 2% isoflurane impaired cerebral autoregulation. Whole brain CBF in SHR was significantly higher than in WKY rats at normocapnia (young SHR: 139 +/- 25ml/100g/min; adult SHR: 104 +/- 23ml/100g/min; young WKY: 55+/- 9ml/100g/min; adult WKY: 71 +/- 19ml/100g/min). CBF values increased significantly with increasing CO(2); however, there was a clear saturation of CBF at PaCO(2) levels greater than 70mmHg in both young and adult rats, regardless of absolute CBF values, suggesting that isoflurane interferes with the vasodilatory mechanisms of CO(2). This behavior was observed for both cortical and subcortical structures. Under either anesthetic, CO(2) reactivity values in adult SHR were decreased, confirming that hypertension, when combined with age, increases cerebrovascular resistance and reduces cerebrovascular compliance.
机译:高血压困扰着总人口的25%和老年人的50%以上。在目前的工作中,动脉自旋标记MRI被用于无创地定量自发性高血压大鼠(SHR)和血压正常的Wistar Kyoto大鼠(WKY)的局部脑血流量(CBF),脑血管阻力和CO(2)反应性两种不同的年龄(3个月和10个月),并且在两种麻醉剂的作用下,使用了α-氯草糖和2%的异氟烷​​(1.5 MAC)。重复的CBF测量值高度一致,在动物内部和动物之间的差异分别小于10%和18%。在使用α-氯醛糖的情况下,正常人之间的全脑CBF在两组之间没有差异(年轻的WKY:61 +/- 3ml / 100g / min;成人的WKY:62 +/- 4ml / 100g / min;年轻的SHR:70 +/- 9ml / 100g / min;成人SHR:69 +/- 8ml / 100g / min),表明SHR中的大脑自动调节正常。在高碳酸血症时,CBF值显着增加,并且观察到CBF与PaCO(2)水平之间存在线性关系。相反,2%的异氟烷​​会损害大脑的自我调节。在正常血症时,SHR中的全脑CBF明显高于WKY大鼠(年轻SHR:139 +/- 25ml / 100g / min;成人SHR:104 +/- 23ml / 100g / min;年轻WKY:55 +/- 9ml / 100克/分钟;成人WKY:71 +/- 19毫升/ 100克/分钟)。 CBF值随着CO(2)的增加而显着增加;然而,无论绝对的CBF值是多少,无论幼小和成年大鼠,PaCO(2)浓度均大于70mmHg时,CBF都有明显的饱和,这表明异氟烷会干扰CO(2)的血管舒张机制。对于皮质和皮质下结构均观察到此行为。在任何麻醉下,成人SHR中的CO(2)反应性值均降低,从而证实高血压与年龄结合会增加脑血管抵抗力并降低脑血管顺应性。

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