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1.
Progress in Modern Biomedicine ; (24): 5091-5095, 2017.
Artigo em Chinês | WPRIM | ID: wpr-615383

RESUMO

Objective:To investigate the door-to-balloon (D2B) time and its influencing factors for Percutaneous Coronary Intervention (PCI) in patients with acute ST-segment elevation myocardial infarction (STEMI).Methods:180 cases of patients with STEMI in our hospital from January 2014 to April 2016 were selected.PCI therapy were operated on all patients after their consent.The pre-hospital delay time and D2B time of the patients were recorded.The related information of the patients,including demographic data,clinical factors,background of the disease and psychological factors,were investigated by the questionnaire survey.The patients were divided into short D2B group (D2B time≤ 126 min,n=96) and long D2B group (D2B time>126 min,n=84).Univariate and multivariate logistic regression methods were used to analyze the influencing factors of D2B time.Results:The median D2B time of all the patients was 126 min,and only 26.7% of patients' D2B time controlled within 90 min.Univariate analysis showed that differences of sudden attack,pay attention to symptoms,someone was present when attack,symptoms progress was fast,in hospital during holiday,no symptom in CCU,outpatient treatment,transfered by emergency medical service system (EMSS),time in CCU (6 am-10 pm),angina before infarction and pre-hospital delay time between the two groups were statistically significant (P<0.05).Multivariate logistic regression analysis showed that in hospital during holiday,outpatient service,no symptom in CCU,pay attention to symptoms,use of transfered by EMSS,time in CCU (6am-10pm) are the factors affecting the time of D2B (OR=2.62,2.04,1.59,0.52,0.28,0.61 P<0.05).Conclusion:The D2B time of most patients with STEMI can not reach the guidelines.The factors of patients,doctors,accepting mechanism of hospital are all related with D2B time.

2.
Progress in Modern Biomedicine ; (24): 66-68, 2006.
Artigo em Chinês | WPRIM | ID: wpr-498902

RESUMO

The equilibrium configuration of fluid-phase phospholipid vesicles in aqueous solutions are controlled by bending elasticity. We exploited a method for calculating explicitly the stability of arbitrary symmetric shapes. The morphology of lipid vesicles with topological genus g=2, i.e. with two holes or two handles, is studied. We provided some stable shapes with results explicitly.

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