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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Ketamine modulation of the haemodynamic response to spreading depolarization in the gyrencephalic swine brain
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Ketamine modulation of the haemodynamic response to spreading depolarization in the gyrencephalic swine brain

机译:酮胺调节血管猪肿瘤中扩散去极化的血管动力学响应

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摘要

Spreading depolarization (SD) generates significant alterations in cerebral haemodynamics, which can have detrimental consequences on brain function and integrity. Ketamine has shown an important capacity to modulate SD; however, its impact on SD haemodynamic response is incompletely understood. We investigated the effect of two therapeutic ketamine dosages, a low-dose of 2mg/kg/h and a high-dose of 4mg/kg/h, on the haemodynamic response to SD in the gyrencephalic swine brain. Cerebral blood volume, pial arterial diameter and cerebral blood flow were assessed through intrinsic optical signal imaging and laser-Doppler flowmetry. Our findings indicate that frequent SDs caused a persistent increase in the baseline pial arterial diameter, which can lead to a diminished capacity to further dilate. Ketamine infused at a low-dose reduced the hyperemic/vasodilative response to SD; however, it did not alter the subsequent oligemic/vasoconstrictive response. This low-dose did not prevent the baseline diameter increase and the diminished dilative capacity. Only infusion of ketamine at a high-dose suppressed SD and the coupled haemodynamic response. Therefore, the haemodynamic response to SD can be modulated by continuous infusion of ketamine. However, its use in pathological models needs to be explored to corroborate its possible clinical benefit.
机译:扩散去极化(SD)在脑血管动力学产生显着的改变,这可能对脑功能和完整性产生不利影响。氯胺酮显示出调节SD的重要能力;然而,它对SD血管动力学反应的影响不完全理解。我们研究了两种治疗性氯胺酮剂量,低剂量的2mg / kg / h和高剂量的4mg / kg / h,对椎弓母猪脑中SD的血液动力学反应的影响。通过本征光信号成像和激光多普勒流动法评估脑血容量,小型动脉直径和脑血流。我们的研究结果表明,频繁的SDS导致基线小脉动直径持续增加,这可能导致进一步扩张的减少容量。在低剂量下注入的氯胺酮降低了SD的血细胞/血管响应;然而,它没有改变随后的寡糖/血管收缩反应。这种低剂量没有防止基线直径增加和减少的扩张能力。仅在高剂量抑制SD和偶联的血液动力学反应中才输注氯胺酮。因此,可以通过连续输注氯胺酮来调节对SD的血管动力学反应。然而,需要探索其在病理模型中的使用来证实其可能的临床益处。

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