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| 1 | Taking the pulse of COVID-19:a spatiotemporal perspective显示文摘The sudden outbreak of the Coronavirus disease(COVID-19)swept across the world in early 2020,triggering the lockdowns of several billion people across many countries,including China,Spain,India,the U.K.,Italy,France,Germany,Brazil,Russia,and the U.S.The transmission of the virus accelerated rapidly with the most confirmed cases in the U.S.,India,Russia,and Brazil.In response to this national and global emergency,the NSF Spatiotemporal Innovation Center brought together a taskforce of international researchers and assembled implementation strategies to rapidly respond to this crisis,for supporting research,saving lives,and protecting the health of global citizens.This perspective paper presents our collective view on the global health emergency and our effort in collecting,analyzing,and sharing relevant data on global policy and government responses,human mobility,environmental impact,socioeconomical impact;in developing research capabilities and mitigation measures with global scientists,promoting collaborative research on outbreak dynamics,and reflecting on the dynamic responses from human societies. | Chaowei Yang Dexuan Sha Qian Liu Yun Li Hai Lan Weihe Wendy Guan Tao Hu Zhenlong Li Zhiran Zhang John Hoot Thompson Zifu Wang David Wong Shiyang Ruan Manzhu Yu Douglas Richardson Luyao Zhang Ruizhi Hou You Zhoua Cheng Zhong Yifei Tian Fayez Beaini Kyla Carte Colin Flynn Wei Liu Dieter Pfoser Shuming Bao Mei Li Haoyuan Zhang Chunbo Liu Jie Jiang Shihong Du Liang Zhao Mingyue Lu Lin Li Huan Zhou Andrew Ding | 2020 | International Journal of Digital Earth2020,13,10: | 2 |
| 2 | Measuring social relational quality in colorectal cancer: the Social Relational Quality Scale (SRQS) 显示文摘 | Wai Kai Hou Wendy Wing Tak Lam | 2009 | Psycho-Oncology2009,18,10: | 1 |
| 3 | Evaluation of Two Lattice Boltzmann Models for Multiphase Flows显示文摘 | Shuling Hou Xiaowen Shan Qisu Zou Gary D. Doolen Wendy E. Soll | 1997 | Journal of Computational Physics1997,,2: | 1 |
| 4 | Detection of the mo- bile object with camouflage color under dynamic background based on optical flow 显示文摘 | YIN Jianqin HAN Yanbin HOU Wendi | 2011 | Procedia Engineering2011,,15: | 1 |
| 5 | Detection of the mobile object with camouflage color based on optical flow显示文摘 | Yin Jianqin Han Yanbin Hou Wendi | 2011 | Procedia Engineering2011,15,: | 1 |
| 6 | Detection of the mobile object with camouflage color under dynamic background based on optical flow显示文摘 | Yin Jianqin Han Yanbin Hou Wendi | 2011 | Procedia Engineering2011,15,: | 1 |
| 7 | erection ot tile mobile object with camouflage color under dynamic background based on optical flow 显示文摘 | Yin Jianqin Han Yanbin Hou Wendi | 2011 | Procedia Engineering2011,15,: | 1 |
| 8 | Solid polymer electrolytes:Ion conduction mechanisms and enhancement strategies显示文摘Solid polymer electrolytes(SPEs)possess comprehensive advantages such as high flexibility,low interfacial resistance with the electrodes,excellent film-forming ability,and low price,however,their applications in solid-state batteries are mainly hindered by the insufficient ionic conductivity especially below the melting temperatures,etc.To improve the ion conduction capability and other properties,a variety of modification strategies have been exploited.In this review article,we scrutinize the structure characteristics and the ion transfer behaviors of the SPEs(and their composites)and then disclose the ion conduction mechanisms.The ion transport involves the ion hopping and the polymer segmental motion,and the improvement in the ionic conductivity is mainly attributed to the increase of the concentration and mobility of the charge carriers and the construction of fast-ion pathways.Furthermore,the recent advances on the modification strategies of the SPEs to enhance the ion conduction from copolymer structure design to lithium salt exploitation,additive engineering,and electrolyte micromorphology adjustion are summarized.This article intends to give a comprehensive,systemic,and profound understanding of the ion conduction and enhancement mechanisms of the SPEs for their viable applications in solid-state batteries with high safety and energy density. | Dongmei Zhang Xianglong Meng Wenyan Hou Weihao Hu Jinshan Mo Tianrong Yang Wendi Zhang Qianxiao Fan Lehao Liu Bing Jiang Lihua Chu Meicheng Li | 2023 | Nano Research Energy2023,2,2: | 0 |
| 9 | Development and evaluation of short form of constitution in Chinese medicine questionnaire:a national epidemiological survey data of 21948 cases显示文摘OBJECTIVE:To develop the best short form of constitution in Chinese medicine questionnaire(CCMQ)and evaluate its psychometric properties in Chinese population.METHODS:A total of 21948 subjects were used to refine the short form.Correlation coefficient,exploratory factor analysis(EFA)and Cronbach's alpha coefficient were used to analyze and select items to form the short form.Separate sample of 205 subjects were collected to further evaluate the short from.EFA,confirmatory factor analysis(CFA),item-scale correlation,discriminant validity,internal consistency reliability and split-half reliability were carried out to evaluate the short form.RESULTS:The short form CCMQ included 26 items.Seven common factors of characteristic root>1 were extracted to explain 58.488%of the total variation.Result of CFA was consistent with the 9-factors structure.The mean differences of Blood-stasis body constitution and Qi-stagnation body constitution had statistical significance in body mass index differentiation.Cronbach's alpha coefficient of short form CCMQ was 0.863.The split-half reliability of total scale was 0.813,and each scale was 0.568-0.770.The item-scale correlations ranged from 0.620-0.849.CONCLUSION:The short form CCMQ consisted of 26 items with good psychometric properties.The short form should be recommended for the measurement of health of Chinese population in any clinical trial. | BAI Minghua WONG Wendy HOU Shujuan ZHENG Yanfei LI Qianru LI ZhuQing ZHANG Yan LI Lingru WANG Ji WANG Qi | 2022 | Journal of Traditional Chinese Medicine2022,42,1: | 0 |