输液微粒

  • 网络infusion particle
输液微粒输液微粒
  1. 采用侧孔针与斜面针溶药对输液微粒的影响

    Influence of Different Kinds of Needles Used in Drug Dissolution on Infusion Particles

  2. 目的探究输液微粒对家兔血浆内皮素(ET-1)、一氧化氮(NO)水平及肺动脉压的影响。

    Objective To study the effect of transfusion particles on plasma ET-1 、 NO in blood plasma and pulmonary arterial pressure in rabbits .

  3. 结论输液微粒可引起肺动脉压升高,可引起血浆ET-1、NO含量发生变化,微粒导致药源性肺损害可能与ET-1、NO动态失衡有一定关系。

    [ WTHZ ] Conclusions Transfusion of particles can induce pulmonary arterial pressure to increase and result in changes of ET-1 、 NO quantities , and there is a certain relationship between particle induced medicine originated pulmonary injury and ET-1 、 NO dynamic balance-breaking .

  4. 中药注射液对输液微粒的影响

    The effect of Chinese materia medical injection on the particulate matter

  5. 输液微粒污染的危害及预防

    Exploration and precautionary measures of polluted transfusion by fine particles

  6. 静脉输液微粒引起小鼠产生炎症反应

    Particulate in Infusion Fluid Induce Mice Produce Inflammatory Reaction

  7. 套管过滤型注射器预防输液微粒污染的研究

    Study on tube filtering syringe to prevent particulate contamination for patients undergoing transfusion

  8. 结果输液微粒对人体造成的危害是严重而持久的。

    Results : The danger of fine particles in liquid transfusion is serious and perpetual .

  9. 前言:目的综述输液微粒对人体的危害及预防。

    Objective : To summarize the danger to the body and prevention of fine particles .

  10. 目的:分析输液微粒产生的原因,探索减少微粒产生的方法。

    Objective : Analyze the reason of transfusion microparticle forming , research the method which could reduce microparticle 's forming .

  11. 两种过滤方法对输液中微粒的影响

    Effects of Two Filtrations on Insoluble Microparticles in Infusion Fluid

  12. 无毒聚氯乙烯薄膜袋装输液中微粒和混浊物的分析

    Investigation of the particles occurred in the transfusion solution stored in PVC bag

  13. 对两种一次性输液器微粒检测比较

    Comparison of Two Kinds of Single-use Transfusion Apparatus

  14. 配药与输液液体微粒污染的相关性研究

    Drug Dispensing and Particle Contamination of Fluid Infusion

  15. 临床输液的微粒污染途径与控制

    Infusion Micro-particle Pollution Terminal Filter Control

  16. 结果:通过建立静脉配液中心,加强人员培训,规范操作规程,减少了输液中微粒的产生。

    RESULTS : Particle production was halted effectively by the construction of PIVAS , the strengthening of personnel training and the standardization of operation procedures .

  17. 按GB8368的要求对输液器中微粒污染项的测试方法进行比较,并对其实验方法进行分析讨论。

    Compared the Particle Pollution Testing Methods according to the requirements of GB8368 , and analyzed and discussed the experimental methods .

  18. 医院输液中的微粒污染的实验观察

    Experimental Observation of Pollution Particles of Infusion in Hospital

  19. 目的观察过滤前后参脉注射液加入不同输液中的微粒变化情况。

    OBJECTIVE To observe the changes of insoluble particle in Shenmai Injection mixed with infusion solution .

  20. 配制输液过程中微粒污染的危害性

    Hardness of Particulate in Prepared Transfusion

  21. 复方毛冬青注射液与3种输液配伍后的微粒及其pH值观察

    Determination of particles and pH in mixtures of three infusion solutions with Ilicis Pubescentis Compound Injection

  22. 结论从头孢哌酮钠的溶解时间和输液不溶性微粒的情况来看,推荐临床使用C或F。

    CONCLUSION It is suggested that C or F might be used better in clinical according to the dissolved time of Cefoperazone Sodium for Injection and the particulate matter in fusion in this experiment .

  23. 临床输液不溶性微粒危害及其预防

    Hazard of Insoluble Particles of Clinical Transfusion and Its Prophylaxis

  24. 输液液体中的微粒污染进口与国产尼莫地平注射液与常用输液液体配伍稳定性比较

    Particle Pollution in Infusion Fluid Comparison of stability between import and domestic nimodipines

  25. 静脉输液加药后的微粒变化

    Change of particles in transfusion after drug additives

  26. 输液液体中的微粒污染

    Particle Pollution in Infusion Fluid

  27. 目的研究中药注射剂过滤前、后加入不同输液剂中的微粒变化情况。

    OBJECTIVE : To study the change of particles of Chinese medicinal injection added to different kinds of infu-sions fluid before and after filtration .

  28. 目的:对开放式和封闭式输液的微生物和微粒污染状态进行对照比较。方法:按中国药典不溶性微粒和微生物法进行测定。

    Objective : Two intravenous solutions , the open system with tube and the plastic bag system were compared to determine the microbes and particle contamination .

  29. 方法采用光阻法和电阻法分别测定粒径为10.2μm、25.8μm标准微粒和一次性使用输液器所含微粒。

    Methods Determination of particle counts of 10.2 μ m , 25.8 μ m standard particulate matter and infusion sets for single use with light obscuration method and electrical zone-sensing method respectively .

  30. 输液器对氨苄青霉素输液微粒的影响

    The Effect of Infusion Set on the Number of Particles in Ampicillin Infusion Fluid