期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
Effects of Intravenous Thrombolytic Therapy with Alteplase on Neurological Function,Coagulation Function and Serum Inflammatory Factors in Patients with Acute Cerebral Infarction 被引量:1
1
作者 xianfang yue Hua Zhou 《Journal of Clinical and Nursing Research》 2020年第3期59-62,共4页
Objective:To investigate the effects of intravenous thrombolysis therapy with alteplase on neurological function,coagulation function and serum inflammatory factors in patients with acute cerebral infarction.Methods:A... Objective:To investigate the effects of intravenous thrombolysis therapy with alteplase on neurological function,coagulation function and serum inflammatory factors in patients with acute cerebral infarction.Methods:A total of 96 patients with acute cerebral infarction admitted to our hospital from September 2017 to October 2019 were randomly divided into two groups,with 48 patients in each group.The control group(n=48)received routine treatment,and the observation group received intravenous thrombolysis therapy with alteplase on the basis of routine treatment.The neurological deficit score,prothrombin time(PT),activated partial thromboplastin time(APTT),tumor necrosis factor-a level(TNF-α),and high-sensitivity C-reactive protein(hs-CRP)were compared between the two groups after 15 days of treatment.Results:After treatment,NIHSS scores in both groups were lower than those before treatment;PT levels were increased,while APTT,TNF-αand hs-CRP levels were all decreased in both groups,and the changes in the observation group were greater than those in the control group,with statistically significant difference(P<0.05).Conclusions:Intravenous thrombolysis therapy with alteplase can improve the neurological function,coagulation function and serum levels of inflammatory factors in patients with acute cerebral infarction,which is worthy of clinical application. 展开更多
关键词 Acute cerebral infarction ALTEPLASE Intravenous thrombolysis Neurological function Coagulation function Serum levels of inflammatory factors
下载PDF
Preparation and Analysis of Porous Oxychloride Titanium Oxide Precursor Material
2
作者 Mingchun Jiao Jing Wang +2 位作者 xianfang yue Yinping Zhou Xiao Sun 《Journal of Applied Mathematics and Physics》 2019年第8期1599-1605,共7页
Oxychloride titanium oxide precursor material is one of the key substances produced by the giant electrorheological effect. In this paper, tetrabutyl titanate and oxalic acid and anhydrous ethanol are used to prepare ... Oxychloride titanium oxide precursor material is one of the key substances produced by the giant electrorheological effect. In this paper, tetrabutyl titanate and oxalic acid and anhydrous ethanol are used to prepare porous titanyl oxalate precursor powder by precipitation method. The materials, morphology and grain size were analyzed by X-ray diffraction and electron microscope method. Conductivity was measured by a four-probe method, and then the infiltration property of water and silicone oil on the surface of the powder was investigated. The results show that Oxychloride titanium oxide precursor has good wettability to water and silicone oil. The wettability has little to do with the bath temperature and the pH of the solution. The contact angle of water on oxychloride titanium oxide precursor surface does not change greatly with the change of the bath temperature and pH, ranging from 26.8? to 31.1?. Similarly, the contact angle of silicone oil on the surface of the sample ranges from 9.5? to 11.5?. So, silicone oil has better wettability on the surface of the sample than water. Porous titanium oxalate is an insulating material having a resistivity more than 1 GΩ?cm. Oxychloride titanium oxide precursor is poor thermal stability, and it breaks down to generate TiO2 when the temperature is higher than 70?C. 展开更多
关键词 ITANIUM OXALATE ELECTRORHEOLOGICAL Fluid Coprecipitation
下载PDF
Clinical Study of Xingnaojing Injection Combined with Craniocerebral Hypothermia Apparatus in the Treatment of Acute Hemorrhagic Stroke
3
作者 xianfang yue Hua Zhou 《Proceedings of Anticancer Research》 2020年第2期14-17,共4页
Objective:To investigate the clinical effect of Xingnaojing injection combined with craniocerebral hypothermia apparatus in the treatment of acute hemorrhagic stroke.Methods:Seventy-two patients with acute hemorrhagic... Objective:To investigate the clinical effect of Xingnaojing injection combined with craniocerebral hypothermia apparatus in the treatment of acute hemorrhagic stroke.Methods:Seventy-two patients with acute hemorrhagic stroke admitted to our hospital from March 2018 to September 2019 were randomly divided into two groups,with 36 cases in each group.The control group(n=36)was treated with craniocerebral hypothermia apparatus,and the observation group(n=36)was treated with Xingnaojing injection combined with craniocerebral hypothermia apparatus.The clinical efficacy,the National Institutes of Health Stroke Scale(NIHSS)score and the activity of daily living(MBI score)after 1 month of treatment were compared.Results:The effective rate of treatment in the observation group was higher than that in the control group(P<0.05);NIHSS score was decreased in both groups(P<0.05);MBI score was increased in both groups,and the change range of the observation group was greater than that of the control group,showing statistically significant differences(P<0.05).Conclusion:Xingnaojing injection combined with craniocerebral hypothermia apparatus can improve the clinical efficacy,the neurological impairment and activity of daily living in the treatment of acute hemorrhagic stroke,which is worthy of clinical application. 展开更多
关键词 Acute hemorrhagic stroke Xingnaojing injection Craniocerebral hypothermia apparatus
下载PDF
液膜反应器中异丙醇脱氢性能及反应动力学
4
作者 李石琨 许闽 +2 位作者 蔡军 岳献芳 淮秀兰 《过程工程学报》 CAS CSCD 北大核心 2018年第3期652-656,共5页
研究了反应物进料速度、催化剂用量和反应温度对以非晶态合金雷尼镍为催化剂的液膜多相反应模式下异丙醇脱氢反应的影响,考察了反应动力学.结果表明,温度的影响最显著,与搅拌釜液相脱氢相比,该反应模式有效提升了产氢速率,Langmuir-Hins... 研究了反应物进料速度、催化剂用量和反应温度对以非晶态合金雷尼镍为催化剂的液膜多相反应模式下异丙醇脱氢反应的影响,考察了反应动力学.结果表明,温度的影响最显著,与搅拌釜液相脱氢相比,该反应模式有效提升了产氢速率,Langmuir-Hinshelwood反应动力学表达式计算结果与实验结果吻合良好. 展开更多
关键词 化学热泵 多相脱氢 异丙醇 液膜 动力学
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部