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1Ameliorating effects of Inonotus obliquus on high fat diet-induced obese rats显示文摘根据从的数据,将在在一年 2030 的世界上有 21.6 亿过重和 11.2 亿个肥胖的个人[1 ] ,它提起多重疾病的风险例如高血压,癌症的糖尿病,心血管的疾病,和几种类型[2,3 ] 。肥胖被看作新陈代谢的混乱,它被高精力吸入主要导致。在哺乳动物,过量精力首先在脂肪质的织物作为 triglyceride (TG ) 被存储。在过去的十年,调整 adipogenesis 的过程的众多的分子很好被记录了。Peroxisome 激活 proliferator 的受体(PPAR-) 为脂肪质的织物的累积被要求并且贡献肥胖[4 ] 。甾醇规章的元素绑定蛋白质(SREBP ) 作为激活胆固醇和丰满的酸合成的全部节目的抄写因素的一个家庭被识别了[5 ] 。Glyceraldehydes 3 磷酸盐 acyltransferase (GPAT ) 和 diacylglycerol acyltransferase (DGAT ) 广泛地在哺乳动物的纸巾被表示并且催化第一并且在 TG 合成的最后的步,分别地[6 ] 。因此,这些分子可以是为肥胖和类脂化合物新陈代谢的评估的大目标。最近,阳光等。[7 ] 证明了在糖尿病的老鼠的类脂化合物的浆液层次显著地与 Inonotus obliquus 的文化肉汤的干燥的事在 3 星期的治疗以后被减少。李和 Hyun [8 ] 证明水摘录从我。obliquus 减少了高脂肪的饮食的胖重量喂的肥胖的老鼠。因此,我们对什么进一步感兴趣,是怎么能我。obliquus 摘录影响类脂化合物新陈代谢并且什么是位于这反肥胖效果下面的可能的机制。在现在的学习,我们造了一个高脂肪的导致食谱的老鼠模型。Tao Wu Qingyu Shu Kai Yang Xiaoxian Xie Xia Wang Yangling Wang Anqi Guo Nate Y-uan Binggong Zhao Binbin Chi QiaobeiWu Zhengwei Fu 2015Acta Biochimica et Biophysica Sinica2015,47,9:4
2fGWAS:An R package for genome-wide association analysis with longitudinal phenotypes显示文摘The past two decades have witnessed a revolution in identifying genetic risk factors underlying diseases and complex traits using genome-wide association studies(GWAS)(Risch and Merikangas,1996;Hirschhorn and Daly,2005;Altshuler et al.,2008).Together with advanced high-throughput technologies for genotypingZhong Wang Nating Wang Rongling Wu Zuoheng Wang 2018Journal of Genetics and Genomics2018,45,7:2
3A multi-directional ground fihering algorithm for airborne LIDAR 显示文摘Xuelian Meng _ Le Wang Jose Luis Silvan-Cardenas Nate Currit 2009ISPRS Journal of Photogramme- try and Remote Sensing2009,64,:1
4A multi-directional ground filtering algorithm for airborne LIDAR 显示文摘Xuelian Meng Le Wang Jose Luis Silvan-Cardenas Nate Currit 2009ISPRS Journal of Photogrammetry and Remote Sensing2009,64,:1
5Localized-domains staging structure and evolution in lithiated graphite显示文摘Intercalation provides to the host materials a means for controlled variation of many physical/chemical properties and dominates the reactions in metal‐ion batteries.Of particular interest is the graphite intercalation compounds with intriguing staging structures,which however are still unclear,especially in their nanostructure and dynamic transition mechanism.Herein,the nature of the staging structure and evolution of the lithium(Li)‐intercalated graphite was revealed by cryogenic‐transmission electron microscopy and other methods at the nanoscale.The intercalated Li‐ions distribute unevenly,generating local stress and dislocations in the graphitic structure.Each staging compound is found macroscopically ordered but microscopically inhomogeneous,exhibiting a localized‐domains structural model.Our findings uncover the correlation between the long‐range ordered structure and short‐range domains,refresh the insights on the staging structure and transition of Li‐intercalated/deintercalated graphite,and provide effective ways to enhance the reaction kinetic in rechargeable batteries by defect engineering.Suting Weng Siyuan Wu Zepeng Liu Gaojing Yang Xiaozhi Liu Xiao Zhang Chu Zhang Qiuyan Liu Yao Huang Yejing Li Mehmet NAteş Dong Su Lin Gu Hong Li Liquan Chen Ruijuan Xiao Zhaoxiang Wang Xuefeng Wang 2023Carbon Energy2023,5,1:1
6The blast resistance of sandwich composites with stepwise graded cores 显示文摘Erheng Wang Nate Gardner Arun Shukla 2009International Journal of Solids and Structures2009,46,1819:1
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