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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 >Simultaneous monitoring of potassium, glucose and lactate during spreading depolarization in the injured human brain - Proof of principle of a novel real-time neurochemical analysis system, continuous online microdialysis
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Simultaneous monitoring of potassium, glucose and lactate during spreading depolarization in the injured human brain - Proof of principle of a novel real-time neurochemical analysis system, continuous online microdialysis

机译:在损伤人脑中蔓延去极化过程中同时监测钾,葡萄糖和乳酸乳酸,连续在线微透视

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摘要

Spreading depolarizations occur spontaneously and frequently in injured human brain. They propagate slowly through injured tissue often cycling around a local area of damage. Tissue recovery after an spreading depolarization requires greatly augmented energy utilisation to normalise ionic gradients from a virtually complete loss of membrane potential. In the injured brain, this is difficult because local blood flow is often low and unreactive. In this study, we use a new variant of microdialysis, continuous on-line microdialysis, to observe the effects of spreading depolarizations on brain metabolism. The neurochemical changes are dynamic and take place on the timescale of the passage of an spreading depolarization past the microdialysis probe. Dialysate potassium levels provide an ionic correlate of cellular depolarization and show a clear transient increase. Dialysate glucose levels reflect a balance between local tissue glucose supply and utilisation. These show a clear transient decrease of variable magnitude and duration. Dialysate lactate levels indicate non-oxidative metabolism of glucose and show a transient increase. Preliminary data suggest that the transient changes recover more slowly after the passage of a sequence of multiple spreading depolarizations giving rise to a decrease in basal dialysate glucose and an increase in basal dialysate potassium and lactate levels.
机译:在受伤的人体大脑中自发地和经常发生传播的去偏振。它们通过损伤的组织缓慢繁殖,经常围绕局部损坏。扩散去极化后的组织恢复需要极大地增加能量利用,从几乎完全损失的膜电位损失来标准化离子梯度。在受伤的大脑中,这很困难,因为当地血流往往是低且不起的。在这项研究中,我们使用微透析的新变种,连续在线微透过,观察扩散去极化对脑新陈代谢的影响。神经化学变化是动态的,并在传播去极化通过微透析探针的过程中进行的。透析液钾水平提供细胞去极化的离子相关,并显示出透明的瞬时​​增加。透析液葡萄糖水平反映了局部组织葡萄糖供应和利用之间的平衡。这些显示可变幅度和持续时间的透明瞬态降低。透析液乳酸水平表明葡萄糖的非氧化代谢并显示出瞬态增加。初步数据表明,在一系列多种展开的去偏振序列通过后,瞬态变化更慢地恢复,从而产生基础透析苷葡萄糖的减少和基础透析钾钾和乳酸水平的增加。

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