...
首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Microdialysis in cisterna magna during cerebral air embolism in swine.
【24h】

Microdialysis in cisterna magna during cerebral air embolism in swine.

机译:Microdialysis在大脑小脑延髓池猪的空气栓塞。

获取原文
获取原文并翻译 | 示例
           

摘要

Arterial gas embolism may occur as a consequence of lung rupture, decompression sickness, following operative procedures or as accidental infusion of gas during various diagnostic procedures. It can lead to severe morbidity or even death. Microdialysis is a technique that has been extensively used for evaluating localized changes in the brain. The microdialysis probe is only capable of measuring changes in the immediate adjacent tissue. In arterial gas embolism the changes are multifocal. Thus a probe located in the cerebral cortex will not detect the total amount of damage. We used microdialysis in the cisterna magna of 9 anaesthetized pigs to study the diffuse injury following arterial gas embolism. After injection of 5.0 mL of air in the internal carotid artery, we found a significantly increased lactate-pyruvate ratio in the cerebrospinal fluid, lasting for 2 hours. This indicates anaerobic metabolism. Mean levels of glycerol were significantly increased, indicating membrane disruption. Glutamate levels were also elevated, although not significantly. The injection of air affected carotid flow. Flow in the carotid artery of the side of injection decreased significantly, but returned to baseline in 1 hour. Flow in the contralateral carotid was increased, but not significantly. We conclude that massive air embolism causes ischemia and reduced blood flow in the brain that can be detected in the cisterna magna.
机译:动脉气体栓塞可能发生的后果肺破裂,减压病,手术后或意外注入的气体在不同的诊断程序。甚至死亡。被广泛用于评估本地化大脑的变化。只有测量变化的能力直接相邻的组织。栓塞多焦点的变化。位于大脑皮层不检测损失的总金额。9的小脑延髓池麻醉的猪研究弥漫性损伤后动脉气体栓塞。颈内动脉,我们发现明显lactate-pyruvate比率的增加脑脊液,持续2小时。表明厌氧代谢。甘油是显著增加,表明膜破坏。显著升高,虽然不是。注入的空气影响颈动脉流。的颈动脉注射显著降低,但回到基线在1小时。增加,但并不显著。大量空气栓塞引起缺血和大脑的血流量,可以减少小脑延髓池中检测到。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号