维普中文期刊产品整合服务
25篇 您的检索式:作者名="Shaohui Yin"
    题名 作者 年代 出处 被引量
1The China Alzheimer Report 2022显示文摘China’s population has rapidly aged over the recent decades of social and economic development as neurodegenerative disorders have proliferated,especially Alzheimer’s disease(AD)and related dementias(ADRD).AD’s incidence rate,morbidity,and mortality have steadily increased to make it presently the fifth leading cause of death among urban and rural residents in China and magnify the resulting financial burdens on individuals,families and society.The‘Healthy China Action’plan of 2019-2030 promotes the transition from disease treatment to health maintenance for this expanding population with ADRD.This report describes related epidemiological trends,evaluates the economic burden of the disease,outlines current clinical diagnosis and treatment status and delineates existing available public health resources.More specifically,it examines the public health impact of ADRD,including prevalence,mortality,costs,usage of care,and the overall effect on caregivers and society.In addition,this special report presents technical guidance and supports for the prevention and treatment of AD,provides expertise to guide relevant governmental healthcare policy development and suggests an information platform for international exchange and cooperation.Rujing Ren Jinlei Qi Shaohui Lin Xinya Liu Peng Yin Zhihui Wang Ran Tang Jintao Wang Qiang Huang Jianping Li Xinyi Xie Yongbo Hu Shishuang Cui Yuan Zhu Xiaoping Yu Pengfei Wang Yikang Zhu Yiran Wang Yanyan Huang Yisong Hu Ying Wang Chunbo Li Maigeng Zhou Gang Wang 2022General Psychiatry2022,35,1:20
2Review of small aspheric glass lens molding technologies显示文摘Shaohui YIN Hongpeng JIA Guanhua ZHANG Fengjun CHEN Kejun ZHU 2017Frontiers of Mechanical Engineering2017,12,1:9
3ELID grinding characteristics of glass-ceramic materials显示文摘Shaohui Yin Hitoshi Ohmori Yutang Dai Yoshihiro Uehara Fengjun Chen Hengning Tang 2008International Journal of Machine Tools and Manufacture2008,,3:2
4Profile error compensation in ultra-precision grinding of aspheric surfaces with on-machine measurement显示文摘CHEN Fengjun YIN Shaohui HUANG Han 2010International Journal of Machine Tools and Manufacture2010,50,5:1
5HEART FAILURE MYOCYTE CONTRACTILE MECHANICS AND ITS CONTRACTILE PROTEIN GENE EXPRESSION显示文摘It is not certain whether the myocyte contractile function in the heartfailure is normal according to recent some studies,therefore the contractile functionof the myocytes with the heart failure should be studied. The myocyte heart failuremodel was set up by the method of stretching the cultured myocytes,and the myocytes with and without the heart failure were measured the contractile mechanicscharacteristic,the parameters being the maximal contractive velocity of the myocyte(Vmax), the maximal shortening length of myocyte contraction (ΔLmax) and themaximal decrease of the myocyte size during contraction (ΔSmax), by the videoedgedetector system. And then the protein genes (including α-MHC and β-MHC)expression of these myocytes were quantitatively measured by the dot blotting. Thecorrelative and regressive analysis were used to analyze the relationship between themyocyte contractile mechanics characteristic and the contractile protein genes expression level. The results showed that the contractile mechanics parameters,Vmax=41.5±6.0(μm/sec), △Lmax= 10.6±1.9 (% ) and △Smax= 14.3± 2.3 (% ), in themyocytes with the heart failure are statistically significant lower than the normalmyocytes (P<0.01), whose parameters are Vmax=67.9±6.7 (μm/sec), △Lmax=17.7±1.6 (% ) and △Smax=21.5±2.4 (%). The myocyte contractile protein gene (αMHC) expression level in the heart failure myocytes is statistically significant lowerthan that in the normal myocytes,but β-MHC gene expression level is statisticallysignificant higher than the normal myocytes. The α-MllC gene expression level is apositive correlation coefficient with the myocyte contractile mechanics parametersseparately,covering Vmax,△Lmax and △max; but the β- MHC gene expression levelis a negative correlation coefficietn with the myocyte contractile mechanics parameters separately.Wang Zhengrong Wang Ling Cai Shaohui Yin Huahu(Biomedical Engineering Dept,West China University ofMedical Sciences, Chengdu,Sichuan 610041, China) 1998Chinese Journal of Biomedical Engineering(English Edition)1998,7,2:1
6Fabrication of micro glass lens mould by using ultra-precision micro-grinding process显示文摘YIN Shaohui TANG Kun ZHU Yongjian 2009Proceeding of SPIE2009,7282,:1
7Profile error compensation in ultra-precision grinding of aspheric surfaces with on-machine measurement显示文摘CHEN Fengjun YIN Shaohui HUANG Han 2010International Journal of Machine Tools and Manufacture2010,50,5:1
8Profile error compensation in ultra-precision grinding of aspheric surfaces with on-machine measurement显示文摘CHEN Fengjun YIN Shaohui HUANG Han 2010International Journal of Machine Tools and Manufacture2010,50,5:1
9Isothermal crystallization kinetics of PP in PP/Mg(OH)2 composites显示文摘Yin Jun Wang Shaohui Zhang Yong 2005Journal of Polymer Science:Polymer Physics2005,43,:1
10Numerical simulation on two-step isothermal glass lens molding显示文摘YIN Shaohui ZHU Kejun WANG Yufang 2010Advanced Materials Research2010,126,128:1
11A No- vel Orderly Arrangement Method Controlled by Magnetic Field for Diamond Abrasives of Grinding Wheel显示文摘Yin Shaohui Chen Fengjun Yu Jianwu 2012Advance Material Research2012,497,:1
12ELID Grinding Characteristics of Glass--ceramic Materials显示文摘Yin Shaohui Ohmori H Dai Yutang 2008International Journal of Machine Tools and Manufacture2008,49,34:1
13Development on Micro Precision Truing Method for Metal Bonded Diamond Grinding Wheel on ELID -- Grinding显示文摘Yin Shaohui Ohmori H Lin Weimin 2005Key Engineering Materials2005,,:1
14Development of ultra-precision grinding process for aspheric surface based on feed rate controlling and error compensation methods显示文摘Yin Shaohui Li Haifeng Fan Yufeng 2010Advanced Materials Research2010,,:1
15Study on Ultrapresion Synergistic Finishing Process of ELID-- grinding and MRF显示文摘Yin Shaohui Ohmori H Lin Weimin 2006JSAT2006,50,6:1
16Fabrication of extreme wettability surface for controllable droplet manipulation over a wide temperature range显示文摘Droplet controllable manipulation over a wide temperature range has promising applications in microelectronic heat dissipation, inkjet printing, and high temperature microfluidic system. However, the fabrication of a platform for controllable droplet manipulation using the methods commonly used in industry remains a tremendously challenge. The popular method of controlling droplets is highly dependent on external energy input and has relatively poor controllability in terms of droplet motion behaviors and manipulation environment, such as distance, velocity, direction and a wide temperature range. Here, we report a facile and industrially applicable method for preparing Al superhydrophobic (S-phobic) surfaces, which enables controlled droplet bouncing, evaporation, and transport over a wide temperature range. Systematic mechanistic studies are also investigated. Extreme wettability surfaces were prepared on Al substrate by a composite process of electrochemical mask etching and micro-milling. To investigate the evaporation process and thermal coupling characteristics, controlled evaporation and controlled bouncing of droplet in a wide temperature range were conducted. Based on the evaporation regulation and bouncing mechanism of droplets on an extreme wettability surface, by using Laplace pressure gradients and temperature gradients, we realized controlled transport of droplets with confluence, split-flow, and gravity-resistant transport over a wide temperature range, offering a potential platform for a series of applications, such as new drug candidates and water collection.Chengsong Shu Qitong Su Minghao Li Zhenbin Wang Shaohui Yin Shuai Huang 2022International Journal of Extreme Manufacturing2022,4,4:1
17Large Number of Micro V--grooves Fabrication of Large Germanium Immersion Rating Element for Midinfrared Spectrograph by Ultraprecision Micro grindingTechnique显示文摘Yin Shaohui Ohmori H Uehara Y 2004JSME Series C2004,47,1:1
18Using hydrochemical signatures to characterize the long-period evolution of groundwater information in the Dagu River Basin,China显示文摘The evolution of hydrochemical compositions influenced by long-period interactions between groundwater and the geo-environment is a fundamental issue for exploring groundwater quality and vulnerability.This study systematically investigated the hydrochemical processes and anthropogenic interference occurring in the river basin by bivariate plots,Gibbs diagrams,saturation index,and the major ions ratios.Apparent changes in groundwater hydrochemistry have been observed in the study area,illustrating the origins of major ions are affected by various internal and external factors.Results highlighted that TDS varied from freshwater to brackish water,ranging between 187.90 and 2294.81 mg/L.Ca^(2+)and HCO_(3)^(−)are the dominant ions in the studied samples.The results gained by Gibbs diagrams,bivariate plots,saturation index,and the major ions ratios demonstrated that minerals dissolution/precipitation,cation exchange,and human inputs play crucial roles in the unconfined aquifers.Moreover,the overuse of nitrogen fertilizer,livestock manure,and industrial/domestic sewage led to nitrate and nitrite contamination and brought significant challenges to the surrounding hydrogeo-environment.The present study could make an unambiguous identification of natural processes and anthropogenic interventions influencing groundwater hydrochemistry’s long-period evolution and create a preliminary strategy for groundwater resources management.Ziyue Yin Qing Lin Shaohui Xu 2021Frontiers of Environmental Science & Engineering2021,15,5:1
19One-point Nano - grinding Technology of Micro - aspherical Glass Lens Mould显示文摘Yin Shaohui Wang Yu Fan Yufeng 2010Advanced Materials Research2010,,:1
20Profile Error Compensation in Ultra-precision Grind- ing of Aspheric Surfaces with On-machine Measurement 显示文摘Chen Fengjun Yin Shaohui Huang Han 2010International Journal of Machine Tools and Manufacture2010,50,5:1
返回顶部 每页显示:
共2页 首页 上一页 第1页 下一页 末页 /2 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费