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首页> 外文期刊>Neurocritical care >Alterations in cerebral oxidative metabolism following traumatic brain injury.
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Alterations in cerebral oxidative metabolism following traumatic brain injury.

机译:脑外伤后脑氧化代谢的改变。

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BACKGROUND: Traumatic brain injury (TBI) generates regional alterations in cerebral metabolism, leading to the potential evolution of persistent metabolic dysfunction. In the case of penetrating, firearm-related TBI, the pathophysiological mechanisms underlying these acute-phase metabolic derangements are not entirely understood-hindering the potential effectiveness of therapeutic intervention. The use of cerebral microdialysis to monitor biochemical alterations that occur, post-TBI, provides critical insight into the events that perpetuate neurological deterioration. METHODS: Cerebral microdialysis was used to monitor alterations in the brain tissue chemistry of a 22-year-old female patient who sustained a penetrating gunshot wound to the head. Extracellular glucose, lactate, pyruvate, and lactate pyruvate ratio (LPR) were monitored over the course of the first-week post-injury. RESULTS: Analysis of the microdialysate revealed sustained elevations in LPR with peaks in excess of those seen in patients who have sustained permanent ischemic injury. This interval of persistently elevated LPR was followed by a spontaneous reduction of values, to levels below the defined threshold for metabolic crisis, over a period of several days. CONCLUSIONS: Microdialysis studies may significantly improve the understanding of the metabolic alterations that occur in patients who sustain a variety of forms of neurotrauma. Ultimately, monitoring these variations in brain tissue chemistry will improve the insight into the neuropathological mechanisms underlying penetrating traumatic brain injury, and enhance the therapeutic approach of these patients.
机译:背景:颅脑外伤(TBI)在脑代谢中产生区域性变化,从而导致持续性代谢功能障碍的潜在发展。在穿透性枪支相关性TBI的情况下,尚未完全理解这些急性期代谢紊乱的病理生理机制,这阻碍了治疗干预的潜在有效性。在TBI后使用脑微透析监测发生的生化改变,可提供对导致神经功能恶化的事件的重要见解。方法:使用脑微透析监测一名22岁女性头部穿透性枪伤的脑组织化学变化。在受伤后第一周的过程中监测细胞外葡萄糖,乳酸,丙酮酸和乳酸丙酮酸的比率(LPR)。结果:对微量透析液的分析显示LPR持续升高,其峰值超过了遭受永久性永久性缺血性损伤的患者的峰值。 LPR持续升高的时间间隔是几天后,其值自发降低至代谢危机定义的阈值以下的水平。结论:微透析研究可以显着提高对维持各种形式的神经创伤的患者发生的代谢改变的了解。最终,监测脑组织化学的这些变化将改善对穿透性脑损伤的潜在神经病理学机制的了解,并增强这些患者的治疗方法。

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