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1.
China Pharmacy ; (12): 75-80, 2020.
Article in Chinese | WPRIM | ID: wpr-817381

ABSTRACT

ABSTRACT OBJECTIVE:To compare the effectiveness and economics of peramivir and oseltamivir in the treatment of influenza complicated with febrile seizures in children. METHODS:In retrospective study,152 children with influenza complicated with febrile seizures were collected from our hospital during Dec. 2018 to Mar. 2019.They were divided into peramivir group(81 cases) and oseltamivir group (71 cases). Fever remission time, medication duration, hospital duration, clinical efficacy (determined by convulsion,cough,nasal obstruction,runny nose,sore throat,etc.),the incidence of rash,the number of children with combined antibiotic and TCM were compared between 2 groups. Cost-effectiveness analysis was used to evaluate cost-effectiveness ratio(CER)and incremental cost-effectiveness ratio(ICER)of medication regimen in 2 groups. The sensitivity analysis of the effect and total cost were carried out with Logistic regression and multiple linear regression respectively through CER and ICER calculated by reducing 15% drug price. RESULTS:There was no statistical significance in fever remission time, medication duration,hospitalization duration,the incidence of rash and proportion of children with combined antibiotics between 2 groups(P>0.05). There was statistical significance in proportion of children with combined TCM and clinical effect,and the proportion of children with combined TCM in peramivir group was significantly lower than oseltamivir group(P<0.001). Clinical effect of peramivir group was significantly better than that of oseltamivir group(P=0.021). Total cost of peramivir group and oseltamivir group were 5 442.84 yuan/person and 5 571.71 yuan/person(P=0.795);CER of them were 54.47 and 56.51;ICER of peramivir group was - 89.38. The results of sensitivity analysis were consistent with those of basic analysis.CONCLUSIONS: Compared with oseltamivir,peramivir is more effective and less costly for children with influenza and febrile seizures.

2.
Chinese Journal of Medical Instrumentation ; (6): 101-107, 2020.
Article in Chinese | WPRIM | ID: wpr-942708

ABSTRACT

The complex electromagnetic field environments in magnetic resonance imaging system(MRI) can have a significant impact on patients carrying implants, the RF heating problems being particularly important. To ensure the safety of the patients, it is necessary to understand the distribution of tissue temperature in the MRI environment and its changes over time. Based on the analysis of tissue temperature rise in MRI, this paper constructs a bird cage coil for generating RF field in MRI system, and constructs ASTM standard/improved phantom and single-cavity pacemaker finite element models, use time-domain finite difference (FDTD) to simulate. Firstly, the correctness of the simulation software and simulation method was validated according to the method of ISO. Then the distribution of the electric field, SAR and temperature field and the temperature change with time were calculated in the environment of 64 MHz, 2 W/kg. The difference in temperature rise with blood heat exchange and no blood heat exchange (standard/improved phantom) was specifically compared. The simulation results show that there are electric field and SAR hotspots near the electrode tip, the wire tail and the case of pacemaker. There are high SAR values on both sides of the phantom, and the shorter the distance from the coil, the higher the SAR. The temperature field distribution is similar to the SAR distribution; the temperature is higher in the area around the end of the wire and the case of pacemaker because the heat accumulation is higher around this area. At the same time, blood heat exchange can reduce the temperature rise to a certain extent.


Subject(s)
Humans , Electromagnetic Fields , Magnetic Resonance Imaging , Models, Theoretical , Phantoms, Imaging , Prostheses and Implants , Temperature
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