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Protective Effect of Mulberry Extract against Pb-induced Learning and Memory Deficits in Mice 被引量:1
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作者 CHEN Yao LI Qian +8 位作者 ZOU Ye ZHOU Zhao Xiang FENG Wei Wei BAO Yong Tuan MA Rui Hong JI Peng Cheng WU Jiang YANG Liu Qing WU Xiang Yang 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2014年第1期70-75,共6页
Lead (Pb) is ubiquitous in the environment, and low-level Pb exposure can cause neurotoxicity and irreversible damage to children's cognition, learning and memory ability. Nutritional intervention is an effective m... Lead (Pb) is ubiquitous in the environment, and low-level Pb exposure can cause neurotoxicity and irreversible damage to children's cognition, learning and memory ability. Nutritional intervention is an effective method to prevent Pb poisoning. Mul- berry is rich in anthocyanins, possessing protective effects for nerves. This study investigated the neuroprotective effects of mulberry extract (ME) against Pb-induced learning and memory deficits in mice. The results showed that the learning and memory abilities of mice, assessed using the Morris test, improved significantly after treatment with ME at a dose of 100 mg/kg body weight. The level of Pb in the brains of mice in the three ME intervention groups decreased significantly, while NO production and anti-oxidant enzymes were significantly restored. It is suggested that ME inhibits Pb-induced neurotoxicity by reversing Pb-induced alterations in the aspect of neurotoxic effects and improving learning and memory. 展开更多
关键词 PB Protective Effect of Mulberry extract against Pb-induced Learning and memory Deficits in Mice DMSA ME SOD
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Superelasticity of Cu–Ni–Al shape-memory fibers prepared by melt extraction technique
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作者 Dong-yue Li Shu-ling Zhang +2 位作者 Wei-bing Liao Gui-hong Geng Yong Zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第8期928-933,共6页
In the paper, a melt extraction method was used to fabricate Cu–4Ni–14Al(wt%) fiber materials with diameters between 50 and 200 μm. The fibers exhibited superelasticity and temperature-induced martensitic transfo... In the paper, a melt extraction method was used to fabricate Cu–4Ni–14Al(wt%) fiber materials with diameters between 50 and 200 μm. The fibers exhibited superelasticity and temperature-induced martensitic transformation. The microstructures and superelasticity behavior of the fibers were studied via scanning electron microscopy(SEM) and a dynamic mechanical analyzer(DMA), respectively. Appropriate heat treatment further improves the plasticity of Cu-based alloys. The serration behavior observed during the loading process is due to the multiple martensite phase transformation. 展开更多
关键词 copper nickel aluminum alloys shape memory effect melt extraction method superelasticity
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