asphyctic

网络  窒息的

医学



双语例句

  1. The study of cerebrovascular hemodynamics of asphyctic neonate by Doppler ultrasonic examination
    彩色多普勒超声检查窒息新生儿脑血流动力学的意义
  2. Objective: To evaluate relationship between electrolyte, amion gap ( AG) and renal function injury post asphyctic newborn.
    目的:探讨新生儿窒息后水电解质和酸碱平衡紊乱及其与肾功能损害的关系。
  3. Relativity analysis and changes of blood urea nitrogen, serum creatinine, amion gap and electrolyte in asphyctic newborn
    窒息新生儿血尿素氮、肌酐、阴离子隙与电解质的变化及其相关性分析
  4. Asphyctic Causes for 69 Newborns and Preventive Countermeasures
    69例新生儿窒息原因分析及预防对策
  5. Observation of early intervention on intelligence development of asphyctic neonate
    早期干预对窒息新生儿的智能发育观察
  6. Meterials and Methods: Collected 43 new-borns of cephalic presentation with amniotic opacity ( include 36 asphyctic cases). All applying CT scanning and Apgar evaluation.
    材料与方法:收集头位分娩时羊水混浊的患儿43例(其中窒息史的36例),均经CT扫描和Apgar评分。
  7. Conclusion: Early systemic intervention possesses an important promotion role on intel ˉ ligence development of asphyctic neonate.
    结论:系统性早期干预对窒息新生儿智能发育有重要促进作用[1]。
  8. Conclusions: The asphyctic neonates might be damaged in the hearing and lower part of the midbrain. BAEP might be of important value in the judgement of the disorders in hearing and brainstem function.
    结论:窒息新生儿可有听力损失和中脑下部的损害,BAEP对了解新生儿早期听力及脑干功能障碍有重要价值。
  9. 314 asphyctic and 303 npn-asphyctic neonates were examined by cranial ultrasonography.
    对314例窒息新生儿及303例非窒息儿进行颅脑超声检查。
  10. Spectral analysis of burst periods in EEG from healthy and post asphyctic full-term neonates
    健康和出生后窒息的足月新生儿爆发脑电图周期的光谱分析
  11. Determination CTnI to evaluate myocardial injury in asphyctic newborn
    心肌肌钙蛋白I测定评价窒息新生儿心肌损害的临床价值
  12. Objective To study the change of cerebrovascular hemodynamics of asphyctic neonate and to offer early diagnostic methods.
    目的探讨窒息新生儿脑血流动力学的状况,提供早期诊断方法。
  13. Combustion products contain more carbon monoxide in the process of fire suppression as water mist has asphyctic effect on the core of fire combustion zone which burns inadequately without enough oxygen.
    在细水雾作用于固体火灾过程中,由于细水雾对火灾核心燃烧区的窒息作用,氧气含量相对不足,燃烧不充分,燃烧生成物中含有较多的一氧化碳,但一氧化碳含量在安全界限以下。