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1)  low temperature cycling
低温循环
1.
The varying principle of residual stress in the SiC w/6061Al composites during low temperature cycling was investigated.
研究了低温循环过程中压铸态SiCw/6061Al 复合材料残余应力的变化规律。
2)  hypothermic circulatory arrest
低温停循环
3)  high-low temperature cycle
高低温循环
1.
Based on the operation of VRLA batteries a series of experiments on linear expansion coefficient,charge under high temperature and high pressure and high-low temperature cycle were done to verify the sealed effect of terminals sealed with the glue,and solving the problem of the terminal leakage.
通过对端子密封胶的线性膨胀系数、高温高压充电性能、高低温循环性能的测试,更好地验证了端子密封胶的性能,从而使铅酸蓄电池端子漏液问题得到解决。
4)  low temperature cyclic deformation
低温循环变形
5)  deep hypothermic circulatory arrest
深低温停循环
1.
Methylprednisolone on the cerebral protection of the rats after deep hypothermic circulatory arrest;
甲基强的松龙对深低温停循环大鼠脑保护作用的研究
2.
Experimental study of intermittent selective antegrade cerebral perfusion during deep hypothermic circulatory arrest;
深低温停循环犬间断选择性脑灌注的实验研究
3.
Experimental study of neuron apoptosis in hippocampus and neuroprotection during deep hypothermic circulatory arrest in dogs;
深低温停循环下犬海马组织神经细胞凋亡及脑保护的实验研究
6)  DHCA
深低温停循环
1.
Objective: To investigate the protective effects of L-arg and selective cerebral perfusion(SCP) through right subclavian artery on brain during deep hypothermic circulatory arrest(DHCA).
目的:研究氧化亚氮(NO)前体L-精氨酸(L-arg)和经右锁骨下动脉选择性脑灌注(SCP)在深低温停循环(DHCA)中对脑组织的保护效果。
2.
Objective The study was undertaken to evaluate the cerebral protective role of IUACP during DHCA with long-term window(90 min).
目的研究深低温停循环长程时间窗90min行间歇性一侧颈动脉顺行灌注脑保护液的辅助脑保护作用。
3.
Methods: One hundred and fifty-four SD rats were randomly divided into 4 groups: fake operation group(n=16),DHCA group(n=46),7-nitroindinazole(7-NI) group(n=46),arachisoil group(n=46).
目的:探讨神经元型一氧化氮合酶(nNOS)在深低温停循环(deep hypothermic circulatory arrest,DHCA)大鼠中的脑损伤作用。
补充资料:低温体外循环


低温体外循环
hypothermia extracorporeal circulation

  低温是指利用药物或辅以物理方法使体温降低至一定程度,以降低体内特别是重要器官的代谢和耗氧,增加机体对缺氧的耐受力。体外循环是将静脉血引到体外人工心肺机的氧合器(人工肺)内进行氧合,使之成为动脉血,再经血泵(人工心脏)送回体内动脉,从而代替心肺维持全身的血液循环和呼吸功能。低温和体外循环技术常结合使用,广泛应用于心脏外科的心脏内直视手术。
  
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