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The changes of neuronal Ca^(2+) channel and its effects on BBB permeability and cerebral edema associated with brain injury
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作者 徐如祥 易声禹 《Journal of Medical Colleges of PLA(China)》 CAS 1994年第1期9-12,共4页
ThechangesofneuronalCa^(2+)channelanditseffectsonBBBpermeabilityandcerebraledema associatedwithbraininjuryXu... ThechangesofneuronalCa^(2+)channelanditseffectsonBBBpermeabilityandcerebraledema associatedwithbraininjuryXuRuxiang(徐如祥);YiSh?.. 展开更多
关键词 BRAIN injuries CEREBRAL EDEMA ion channels calcium channe kers blood-brain barrier NIMODIPINE rats
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Modulating ion current rectification generating high energy output in a single glass conical nanopore channel by concentration gradient
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作者 Li-Xiang Zhang Yu-Bin Zheng +2 位作者 Sheng-Lin Cai Xiao-Hong Cao Yao-Qun Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2015年第1期43-46,共4页
Inspired by biological systems that have the inherent skill to generate considerable bioelectricity from the salt content in fluids with highly selective ion channels and pumps on cell membranes, herein, a fully abiot... Inspired by biological systems that have the inherent skill to generate considerable bioelectricity from the salt content in fluids with highly selective ion channels and pumps on cell membranes, herein, a fully abiotic, single glass conical nanopores energy-harvesting is demonstrated. Ion current rectification (ICR) in negatively charged glass conical nanopores is shown to be controlled by the electrolyte concentration gradient depending on the direction of ion diffusion. The degree of ICR is enhanced with the increasing forward concentration difference. An unusual rectification inversion is observed when the concentration gradient is reversely applied. The maximum power output with the individual nanopore approaches 10^4pW. This facile and cost-efficient energy-harvesting system has the potential to power tiny biomedical devices or construct future clean-energy recovery plants. 展开更多
关键词 Glass conical nanopore channe Ion current rectification Concentration gradient Energy generation
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