1.Hospital medical equipment purchase demonstration based on cost-benefit analysis
Jianfei PANG ; Shangjun LI ; Liang WEI
Chinese Medical Equipment Journal 2015;36(5):119-121
Objective To establish an optimization model of hospital medical equipment purchase based on cost-benefit analysis to enhance equipment purchase demonstration.Methods An integer programming model for the types and amount of purchased hospital medical equipment was constructed with the cost benefit parameters based on market survey and the hospital annual purchase plan. LINGO optimization software was used to determine the optimal purchase scheme.Results The model acquired was applied to medical equipment purchase demonstration in some hospital, so that the purchase scheme was formed rapidly as desired.Conclusion The model may promote hospital medical equipment purchase demonstration and provide references for equipment selection.
2.Effects of benazepril on peritoneal fibrosis in rats with peritoneal dialysis
Jianfei LI ; Liqing WEN ; Fuyou LIU ; Hong LIU ; Youming PANG
Chinese Journal of Tissue Engineering Research 2010;14(5):858-861
BACKGROUND: It has confirmed that angiotensin converting enzyme inhibitor benazepril can delay fibrosis of varied organs. However, whether benazepril has inhabited effect on peritoneal fibrosis in the process of peritoneal dialysis is poorly understood. OBJECTIVE: It is assumed that benazepril could inhabit peritoneal fibrosis of peritoneum with peritoneal dialysis, in addition, to compare the effect to other mehods. METHODS: All rats were randomly and evenly divided into 4 groups. There was no intervention in the control group; saline solution, and 20 mL 42.5 g/L Dianeal solution, was injected into rats in the saline solution and peritoneal dialysis groups; in the combination group, 20 mL 42.5 g/L Dianeal solution was injected combined with oral taken benazepril 20 mg/(kg·d). The intraperitoneal injection performed once a day, for 4 successive weeks. The ultrafiltration function was performed 4 weeks later. Meantime, Paraffin sections were cut and stained by Van Gieson to measure peritoneal thickness. RESULTS AND CONCLUSION: Two rats in the peritoneal dialysis group and 1 rat in the combination group were dead. The remained 37 rats were included in the final analysis. Compared to the control and saline solution groups, the ultrafiltration volume of the peritoneal dialysis and combination groups were obviously decreased (P_(all)< 0.05), especially notably decreased in the combination group (P< 0.05). Compared to the control group end saline solution groups, the peritoneal thickness was significantly elevated in the combination group, but not as much as in the peritoneal dialysis group (P < 0.05). In the long-term peritoneal dialysis rats, administration of benazepril can effectively protect the ultrofiltration function of peritoneum and delay the progression of peritoneal fibrosis.
3.Related research on a novel macropores calcium phosphate cement as bone tissue engineering scaffold
Tao LIU ; Jian LI ; Kang LU ; Zhihui BIAN ; Jianfei PANG ; Chao YANG ; Zengwu SHAO
International Journal of Biomedical Engineering 2012;35(2):116-120
ObjectiveTo investigate the cell toxicity of a novel macropores calcium phosphate cement (CPC) scaffold and its influence on cell adhesion,growth and proliferation.MethodsA novel CPC material was synthesized by means of adding mannitol porogens and applying sodium solution as the cement liquid.The cell growth and proliferation in the novel CPC material extraction was observed by CCK8 assay.Scanning electron microscopy was used to observe hole diameter of the material,cell adhesion and growth in the material.The experiment of three point bending was used to test the biomechanic performance of the CPC material.ResultsThe novel CPC material reached hole diameter value of (267.43±118.01)μm,microporosity of (66.15±6.91)%.Maximum load,flexural strength and toughness of the novel CPC material was increased about one time compared to the traditional CPC(P<0.05).CCK8 assay showed there were no significant difference of the light absorption value of cells in the CPC extraction in the 4th,6th,8th day compare to the control group (P>0.05).ConclusionThe novel CPC material has the strong biomechanics performance,macropores,high microporosity and excellent biocompatibility,which is promising for ideal bone tissue engineering scaffold.