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Comparison of conventional and directional freezing for the cryopreservation of human umbilical vein endothelial cells
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作者 Bing Qi Qing-Shan Ji +3 位作者 Guang-Hui Hou Liu Li Xian-Fen Cao Jing Wu 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2014年第5期768-772,共5页
AIM:To compare conventional slow equilibrium cooling and directional freezing(DF) by gauze package for cryopreservation of human umbilical vein endothelial cells(HUVECs).METHODS:HUVECs were randomly assigned to conven... AIM:To compare conventional slow equilibrium cooling and directional freezing(DF) by gauze package for cryopreservation of human umbilical vein endothelial cells(HUVECs).METHODS:HUVECs were randomly assigned to conventional freezing(CF) and DF by gauze package group. The two groups of HUVECs were incubated with a freezing liquid consisting of 10% dimethylsulfoxide(DMSO), 60% fetal bovine serum(FBS) and 30%Dulbecco’s modified Eagle’s medium(DMEM) and then put into cryopreserved tubes. CF group, slow equilibrium cooling was performed with the following program:precool in 4℃ for 30 min,-20℃ for 1h, and then immersion in-80℃ refrigerator. DF group, the tubes were packaged with gauze and then directional freezing in-80℃ refrigerator straightly. One month later, the vitality of HUVECs were calculated between two groups.RESULTS:There was no significant difference in the survival rate and growth curve between CF and DF groups. The DF group was significantly better than CFgroup in adherent rates, morphological changes and proliferative ability.CONCLUSION:In the conventional cryopreserved method, cells are slow equilibrium cooling by steps(4℃,-20℃ and finally-80℃), which is a complicated and time-consuming process. But the improved DF by gauze package method is better than conventional method, for which is convenient and easy to operate. 展开更多
关键词 CRYOPRESERVATION human umbilical vein endothelial cells slow equilibrium cooling directional freezing
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Existence of Solution to Transpiration Cooling Control Problem 被引量:1
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作者 HAN Shizhong(Kaifeng Education College, Kaifeng, 475004)BU Chunxia ZHAO Yu(Institute of System Science, Academia Sinica, Beijing, 100080) 《Systems Science and Systems Engineering》 CSCD 1996年第2期250-256,共7页
This paper introduces non-local equilibrium model of the transpiratin cooling control with moving boundary. We regard the velocity of the coolant as the controlled of system, and prove that the solutio to the transpir... This paper introduces non-local equilibrium model of the transpiratin cooling control with moving boundary. We regard the velocity of the coolant as the controlled of system, and prove that the solutio to the transpiration coolig control problem exists uniquely under the fair assumption with non-ablation. Moreover, continuous dependence of solution on the controller is presented. 展开更多
关键词 Non-local equilibrium model transpiration cooling control evolutin system.
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