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1)  anti-anoxia activity
耐缺氧活性
1.
Aim:To search for cyclovirobuxine D derivatives with better anti-anoxia activity.
目的:寻找具有更好耐缺氧活性的环维黄杨星D的衍生物。
2)  Hypoxia-tolerance
缺氧耐受性
1.
Experimental Research on Different Hypothermia Combined with Pharmacological Preconditioning to Enhance Cerebral Hypoxia-tolerance;
不同低温与药物预处理相结合提高脑缺氧耐受性的实验研究
3)  anti-hypoxia activity
抗缺氧活性
1.
Preliminary tests about anti-hypoxia activity of these compounds through the mouse asphyxia model were carried to get the compounds, with the results of which as the basement, the SAR was discussed to synthesize compound with high anti-hypoxia activity, suitable stability.
采用小鼠窒息缺氧模型(mouse asphyxia model)测定所得化合物的抗缺氧活性,初步探讨构效关系。
2.
Conclusion Compound 1 is the first reported anti-hypoxia constituent of Choerospondias axillaries and its anti-hypoxia activity was also assayed for the first time.
方法利用各种色谱技术分离化学成分,根据理化性质和波谱数据鉴定结构,利用MTT法测评抗肿瘤及抗缺氧活性,采用纸片法测定抗菌活性。
4)  resistance of acute hypoxia
急性缺氧耐受性
5)  surviving duration of enduring anoxia
常压耐缺氧存活时间
1.
The paper investigates the effects of NingXia Lycium Barbarum Lon exercise capacity of mice,The results show that swiming duration and surviving duration of enduring anoxia of mice can be significantly prolonged(P<0.
本文采用一次灌胃和长期喂养的方法观察了小白鼠服用宁夏枸杞子后其游泳时间、常压耐缺氧存活时间、体重、血红蛋白、(Hb)的变化以及定量负荷运动后的血糖和血乳酸水平。
6)  anoxic activated sludge
缺氧活性污泥
1.
Batch experiments were conducted to investigate the sorption isotherms and degradation kinetics of 17β-estradiol(E2) at a low levels((μg/L)) by anoxic activated sludge.
试验用缺氧活性污泥降解17β-雌二醇,降解过程中,同时测定17β-雌二醇在水相与泥相上的浓度,考察了缺氧活性污泥对17β-雌二醇的吸附等温线与降解动力学,并研究了温度和电子受体NO3--N浓度对吸附与降解的影响。
2.
In order to aim at anoxic activated sludge absorption capacity and absorption mechanism for dyestuff,as well as to investigate kinetic and equilibrium of methylene blue onto anoxic activated sludge,the batch isothermal absorption experiments were carried out.
为了考察缺氧活性污泥对染料的吸附性能和吸附机理,以缺氧活性污泥作为吸附剂,亚甲基蓝作为吸附质进行等温吸附试验。
补充资料:交叉耐受性
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性质:机体对药物的耐受性,指连续多次重复给药后反应减弱,必须增加剂量才能得到原来的反应。机体对某药物产生耐受后,如对另一药物也有耐受,称为交叉耐受。化学结构类似的药物常有交叉耐受,如巴比妥类安眠药物之间有交叉耐受现象,但结构不同的药物也可能有交叉耐受,如对吗啡有耐受性者,对美散痛也有耐受。

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