麻醉深度

  • 网络depth of anesthesia;Anesthetic Depth;bis
麻醉深度麻醉深度
  1. 脑电图(Electroencephalogram,EEG)信号作为检测大脑皮层活动的最主要信号,在目前麻醉深度监测研究中处于主导地位。

    Electroencephalogram ( EEG ) assumes a dominant position in the current researches on detecting the depth of anesthesia .

  2. 且麻醉深度变化与NOS活性及NO产量变化相关。

    Also , the changes of the depth of Anesthesia were related to the inhibition of NOS activity and NO output .

  3. 目的探讨麻醉深度指数(cerebralstateindex,CSI)监测在低温体外循环心内直视手术患者中应用的可行性。

    Objective To evaluate the feasibility of Cerebral state index ( CSI ) monitoring in patients undergoing hypothermic cardiopulmonary bypass .

  4. 组I术中麻醉深度以MAP、HR和对手术刺激的反应为依据调节麻醉深度。

    In group I , anesthesia depth adjusting was based on MAP , HR and the reaction of operation stimulation .

  5. 另外,模型中还包含了脑电双谱指数(BIS)的描述,以表征麻醉深度。

    The BIS was contained in the model to describe the depth of anaesthesia ( DOA ) .

  6. 麻醉深度指数(CSI)用于老年患者喉罩全麻麻醉深度监测的研究

    Cerebral State Index for Monitoring the Depth of General Anesthesia for the Elderly with Laryngeal Mask Anesthesia

  7. 目的:评价麻醉深度指数(cerebralstateindex,CSI)在靶控输注异丙酚麻醉诱导过程中预测患者麻醉深度的精确程度。

    Objective To evaluate the accuracy of cerebral state index ( CSI ) as an indicator of anesthesia depth in patients in the induction of anesthesia with target-controlled infusion of propofol .

  8. Kolmogorov熵在大鼠脑电麻醉深度监测中的应用

    Study on Kolmogorov Entropy of Electroencephalogram for Monitoring Depth of Anesthesia of Rat

  9. 神经网络的输入是复杂度值和对应的MAC水平,输出即是麻醉深度状况的结果。

    The input to the neural network was the C ( n ) values and the MAC level , the output was results of the prediction .

  10. 结论临床常用的全身麻醉深度不能有效抑制FOB经口气管插管在小儿引起的加压反应和心率增快反应。

    Conclusion General anesthesia of clinical standard depth can not effectively inhibit the pressor and tachycardiac responses caused by fiberoptic orotracheal intubation in children .

  11. 在合适的麻醉深度下,选择0.75MAC的异氟烷更适合术中皮层SSEP监护。

    Under appropriate anesthetic depth 0.75 MAC isoflurane is suitable for intraoperative cortical SSEP monitoring .

  12. 目的观察Narcotrend(NT)麻醉深度监测仪对于全麻苏醒期患者意识恢复的预测效能。

    Objective To evaluate the predictive effect of Narcotrend ( NT ) parameters on consciousness recovery during the emergence of general anesthesia .

  13. 目的对异丙酚靶控输注(TCI)镇静的患者,比较麻醉深度指数(CSI)与脑电双频谱指数(BIS)在无手术刺激条件下监测镇静深度的准确性。

    Objective To compare the accuracy of bispectral index ( BIS ) and cerebral state index ( CSI ) used to measure depth of sedation during target-controlled infusion ( TCI ) of propofol .

  14. 每次刺激的持续时间为200ms。麻醉深度由尾静脉泵注异丙酚的速率所控制。

    The duration of stimuli was 200ms . Anesthesia levels were modulated by the infusion rate of propofol administrated from tail vein .

  15. 目的研究麻黄碱对浅全麻患者中潜伏期听觉诱发电位(middlelatencyauditoryevokedpotential,MLAEP)的影响,以评价麻黄碱对麻醉深度的作用。

    Objective To study the effect of ephedrine on middle latency auditory-evoked potentials ( MLAEP ) during light general anesthesia , and evaluate the influence of ephedrine on anesthesia level .

  16. 在现代临床麻醉学上,脑电信号分析成为麻醉深度监测的主要手段。其中,对于中潜伏期听觉诱发电位(MLAEP)信号的研究越来越受到重视。

    Electroencephalogram ( EEG ) has become the main method of monitoring the depth of anesthesia in modern clinic anesthesiology , and the study of middle latency auditory evoked potentials ( MLAEP ) has been widely supplied .

  17. 首先记录600s的自发活动,随后每隔4s给予一次胡须刺激,持续1000s。每个刺激的持续时间为50ms。麻醉深度的由尾静脉泵注丙泊酚维持。

    Firstly record the spontaneous activities for 600s , then record the evoked activity for 1000s with stimulated the whisker every 4 s , the duration of stimulation was 50 ms. Anesthesia levels were modulated by the infusion rate of propofol administrated from tail vein .

  18. 颅脑手术病人不同麻醉深度监测方法的比较

    Comparison of three techniques monitoring depth of anesthesia during brain surgery

  19. 麻醉深度监测的实验研究

    Experiment Research on the Method of Monitoring the Depth of Anesthesia

  20. 双频指数和听觉诱发电位在监测麻醉深度中的价值

    Assessment of anesthetic depth by bispectral index and auditory evoked potentials

  21. 结论静脉注射麻黄碱可减浅麻醉深度。

    Conclusion Ephedrine injected intravenously can decrease the level of anesthesia .

  22. 急性失血所致的麻醉深度变异性及机制探讨

    Variability of anesthetic depth resulted from acute hemorrhage and its mechanism

  23. 不同麻醉深度下大鼠脑活动的复杂性分析

    Brain Activity Complexity Analysis to Rat Under Different Depth of Anesthesia

  24. 监测麻醉深度的脑电信号的近似熵特征研究

    EEG Approximate Entropy as a Measure of Depth of Anesthesia

  25. 7-硝基吲唑对兔异丙酚麻醉深度调节的研究

    Effects of 7-nitro indazole on anesthetic depths in rabbits induced by propofol

  26. 麻醉深度神经检测模型研究现状综述

    The Development of Neuro-models for Monitoring the Depth of Anesthesia

  27. 麻醉深度监测的进展和展望

    The Advances and Prospects of the Monitoring of Anesthetic Depth

  28. 脑电非线性分析在麻醉深度监测中的应用

    Application of EEG non-linear analysis in monitoring depth of anesthesia

  29. 异丙酚不同麻醉深度对学习和记忆的影响

    The Effect of Different Levels of Propofol Sedation on Learning and Memory

  30. 椎管内阻滞对麻醉深度的影响

    The Effect of Intrathecal Blook on the Depth of Anesthesia