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| 1 | Etiology, pathogenesis, antivirals and vaccines of hand,foot, and mouth disease显示文摘Hand, foot, and mouth disease(HFMD), caused by enteroviruses, is a syndrome characterized by fever with vesicular eruptions mainly on the skin of the hands, feet, and oral cavity. HFMD primarily afects infants and young children. Although infection is usually self-limited, severe neurological complications in the central nervous system can present in some cases, which can lead to death. Widespread infection of HFMD across the Asia-Paciic region over the past two decades has made HFMD a major public health challenge, ranking irst among the category C notiiable communicable diseases in China every year since2008. his review summarizes our understanding of HFMD, focusing on the etiology and pathogenesis of the disease, as well as on progress toward antivirals and vaccines. he review also discusses the implications of these studies as they relate to the control and prevention of the disease. | Xiaobo Lei Sheng Cui Zhendong Zhao Jianwei Wang | 2015 | National Science Review2015,2,3: | 15 |
| 2 | Dynamic response and pore pressure model of the saturated soft clay around the tunnel under vibration loading of Shanghai subway显示文摘 | TANG Yiqun CUI Zhendong ZHANG Xi | 2008 | Engineering Geology2008,98,3: | 1 |
| 3 | Post-combustion slipstream CO_(2)-capture test facility at Jiangyou Power Plant,Sichuan,China:facility design and validation using 30% wt monoethanolamine(MEA)testing显示文摘Given the dominant share of coal in China’s energy-generation mix and the fact that>50% of the power plants in the country are currently<15 years old,efforts to significantly reduce China’s CO_(2) footprint will require the deployment of CO_(2) capture across at least part of its fleet of coal-fired power plants.CO_(2)-capture technology is reaching commercial maturity,but it is still necessary to adapt the technology to regional conditions,such as power-plant design and flexible operation in the China context.Slipstream facilities provide valuable field data to support the commercialization of CO_(2) capture.We have built a slipstream facility at Jiangyou power plant in Sichuan that will allow us to explore China-relevant issues,especially flexible operation,over the next few years.We plan to share our results with the broader CO_(2)-capture and CO_(2)-storage(CCS)community to accelerate the deployment of CCS in China.This paper describes the design of the slipstream facility and presents results from our steady-state qualification tests using a well-studied benchmark solvent:30% wt monoethanolamine(MEA).The results from our MEA tests compare favorably to results reported from other slipstream-test facilities around the world,allowing us to commission our system and establish a reference baseline for future studies. | Baodeng Wang Qian Cui Guoping Zhang Yinhua Long Yongwei Sun Xinglei Zhao Zhendong He Anthony Y.Ku | 2020 | Clean Energy2020,4,2: | 1 |
| 4 | Cuprous oxide/copper oxide interpenetrated into ordered mesoporous cellulose-based carbon aerogels for efficient photocatalytic degradation of methylene blue显示文摘The casual discharge of dyes from industrial settings has seriously polluted global water systems.Owing to the abundance of biomass resources,preparing photocatalysts for photocatalytic degradation of dyes is significant;however,it still remains challenging.In this work,a cuprous oxide/copper oxide composite was interpenetrated onto carbon nanosheets of cellulose-based flexible carbon aerogels(Cu_(2)O/CuO@CAx)via a simple freeze-drying-calcination method.The introduction of the carbon aerogel effectively prevents the aggregation of the cuprous oxide/copper oxide composite.In addition,Cu_(2)O/CuO@CA0.2 has a larger specific surface area,stronger charge transfer capacity,and lower recombination rate of photogenerated carriers than copper oxide.Moreover,Cu_(2)O/CuO@CA0.2 exhibited high photocatalytic activity in decomposing methylene blue,with a degradation rate reaching up to 99.09% in 60 min.The active oxidation species in the photocatalytic degradation process were systematically investigated by electron spin resonance characterization and poisoning experiments,among which singlet oxygen played a major role.In conclusion,this work provides an effective method for preparing photocatalysts using biomass resources in combination with different metal oxides.It also promotes the development of photocatalytic degradation of dyes. | Rui Cui Dongnv Jin Gaojie Jiao Zhendong Liu Jiliang Ma Runcang Sun | 2023 | Frontiers of Chemical Science and Engineering2023,17,7: | 1 |
| 5 | Land subsidence and pore structure of soils caused by the high-rise building group through centrifuge model test 显示文摘 | CUI Zhendong TANG Yiqun | 2010 | Engineering Geology2010,113,14: | 1 |
| 6 | Application of grey theory-based model to prediction of land subsidence due to engineering environment in Shanghai显示文摘 | TANG Yiqun CUI Zhendong WANG Jianxiu | 2008 | Environmental Geology2008,55,3: | 1 |
| 7 | Application of grey theory-based model to prediction of land subsidence due to engineering environment in Shanghai显示文摘 | Tang Yiqun Cui Zhendong Wang Jianxiu | 2008 | Environmental Geology2008,55,3: | 1 |
| 8 | Post-combustion slipstream CO_(2)-capture test facility at Jiangyou Power Plant, Sichuan, China: performance of a membrane separation module under dynamic power-plant operations显示文摘Membrane-based separation technologies have the potential to lower the cost of post-combustion CO_(2) capture from power-plant flue gases through reduced energy and capital costs relative to conventional solvent approaches.Studies have shown promise under controlled conditions,but there is a need for data on performance and reliability under field conditions.Coal-fired power plants in China operate in a dynamic manner,with increases and decreases in output causing changes in flue-gas composition.In this paper,we describe the first field test of a membrane-based post-combustion CO_(2)-capture system connected to a dynamically operating power plant in China.We report the performance of a Membrane Technology Research,Inc.(MTR)Polaris^(TM) membrane-based capture system over a range of plant operating loads ranging from 54%to 84%and conducted an operational stability test over a 168-h period during which the power plant was operating at an average load of 55%,but ramped as high as 79%and as low as 55%.Our results confirm the ability of a membrane capture system to operate effectively over a wide range of host-plant operating conditions,but also identity several issues related to plant integration,system control and resilience in the face of host-plant upsets that require attention as membrane separation systems move towards commercial use. | Qian Cui Baodeng Wang Xinglei Zhao Guoping Zhang Zhendong He Yinhua Long Yongwei Sun Anthony Y.Ku | 2021 | Clean Energy2021,5,4: | 1 |
| 9 | Grey Relational Analysis on Industrial Structure of Animal Husbandry in Inner Mongolia显示文摘This paper introduces the connotation of grey relation and computation method of grey relational degree. Based on grey relational model and relevant data during 2003- 2012,this paper performs an empirical analysis of the internal structure of agricultural economy and the internal structure of animal husbandry in Inner Mongolia. The results show that animal husbandry and farming are two important sectors of agricultural economy in Inner Mongolia,and within animal husbandry,the influence of dairy cow,mutton,beef and goat wool production is most obvious. Based on this,this paper puts forth the following recommendations: stabilizing the dominant position of farming and animal husbandry in the agricultural economy; continuing to adjust and optimize the internal structure of agricultural economy; reasonably and guide the development of various industries within animal husbandry. | Min SHI Zhendong CUI | 2015 | Asian Agricultural Research2015,7,4: | 0 |
| 10 | Biomaterials for microfluidic technology显示文摘Micro/nanomaterial-based drug and cell delivery systems play an important role in biomedical fields for their injectability and targeting.Microfluidics is a rapidly developing technology and has become a robust tool for preparing biomaterial micro/nanocarriers with precise structural control and high reproducibility.By flexibly designing microfluidic channels and manipulating fluid behavior,various forms of biomaterial carriers can be fabricated using microfluidics,including microspheres,nanoparticles and microfibers.In this review,recent advances in biomaterials for designing functional microfluidic vehicles are summarized.We introduce the application of natural materials such as polysaccharides and proteins as well as synthetic polymers in the production of microfluidic carriers.How the material properties determine the manufacture of carriers and the type of cargoes to be encapsulated is highlighted.Furthermore,the current limitations of microfluidic biomaterial carriers and perspectives on its future developments are presented. | Zehao Chen Zhendong Lv Zhen Zhang Yuhui Zhang Wenguo Cui | 2022 | Materials Futures2022,1,1: | 0 |
| 11 | Geological evaluation for the carbon dioxide geological utilization and storage(CGUS)site:A review显示文摘Carbon dioxide(CO_(2))geological utilization and storage(CGUS)is the key link of CO_(2)capture,utilization,and storage(CCUS).The accurate characterization of the geological body structure is a vital prerequisite of CGUS.This paper gives a review of the multi-scale three-dimensional geological structure characterization and site selection of CO_(2)storage.It shows that there is a lack of systematic and high-precision methods for transparency characterization of multi-scale three-dimensional engineering geological structure and hydrogeological structure of a CO_(2)storage site.There is no clear understanding of the fracture evolution and gas-liquid migration process of multi-scale geological body structure under the disturbance of CO_(2)injection.There is a lack of sufficient quantitative methods for the dynamic evaluation of CO_(2)geological storage potential.The geological suitability evaluation method for site selection of CO_(2)storage is rough and has poor applicability,which is difficult to satisfy the urgent needs of CGUS site selection in the whole process of CO_(2)sequestration industrialization in the future.Thus,it is required to conduct studies on the transparency characterization of geological body structure and intelligent site selection for CO_(2)storage,which is of great importance for CGUS engineering practice. | Shengwen QI Bowen ZHENG Zan WANG Haijun ZHAO Zhendong CUI Tianming HUANG Songfeng GUO Lei FU Pingchuan DONG | 2023 | Science China Earth Sciences2023,66,9: | 0 |
| 12 | Seldom-segment versus multi-segment intramedullary spinal cord gliomas: a comparative clinical study显示文摘Dear Editor,Glial tumors (80%), astrocytomas, and ependymomas are the most frequent histological types of intramedullary spinal cord tumors (Bansal et al., 2013). Intramedullary tumors spanning three or more vertebral body levels are considered multi-segment intramedullary spinal cord tumors and have a much lower incidence than less involved tumors (Wang et al., 2012). We prospectively studied 81 consecutive patients who underwent resection of intramedullary spinal cord gliomas at a single medical center (The Neurosurgery Department of Peking University Third Hospital) between January 2010 and December 2015 to compare the neurological function and prognosis of patients with seldom-segment and multiple-segment intramedullary spinal cord gliomas. | Jianjun Sun Zhenyu Wang Zhendong Li Haibo Wu Mei Zheng Qing Chang Yunfeng Han Zhihui Cui Hung I Liao Tao Wang Xiaodong Chen Xuan Yang Jun Yang | 2019 | Science China(Life Sciences)2019,62,6: | 0 |
| 13 | A blockchain-based transaction system for private data sharing and trading显示文摘To address the private data management problems and realize privacy-preserving data sharing,a blockchain-based transaction system named Ecare featuring information transparency,fairness and scalability is proposed.The proposed system formulates multiple private data access control strategies,and realizes data trading and sharing through on-chain transactions,which makes transaction records transparent and immutable.In our system,the private data are encrypted,and the role-based account model ensures that access to the data requires owner’s authorization.Moreover,a new consensus protocol named Proof of Transactions(PoT)proposed by ourselves has been used to improve consensus efficiency.The value of Ecare is not only that it aggregates telemedicine,data transactions,and other features,but also that it translates these actions into transaction events stored in the blockchain,making them transparent and immutable to all participants.The proposed system can be extended to more general big data privacy protection and data transaction scenarios. | Wei Cui Yu Pan Zhendong Ai | 2022 | Control Theory and Technology2022,20,3: | 0 |
| 14 | Effective metal mold method for the production of bionic adhesives based on electrochemical modifications显示文摘Bionic adhesives with tip-expanded microstructural arrays have attracted considerable interest owing to their high adhesive performance at low preloads.Their mainstream manufacturing method is molding.Due to most molds are made of silicon or silicon-based soft templates,and have poor wear resistant or vulnerability to high temperature,limiting their use in large-scale manufacturing.Nickel is widely used as an embossing mold in the micro/nano-imprint industrial process owing to its good mechanical properties.However,the processing of metal molds for the fabrication of tip-expanded microstructural arrays is extremely challenging.In this study,using electrodeposition techniques,the shape of the micropores is modified to obtain end-controlled pores.The effect of the non-uniformity of the electric field on the microporous morphology in the electrodeposition process is systematically investigated.Furthermore,the mechanism of non-uniformity evolution of the microporous morphology is revealed.The optimized microporous metal array is used as a mold to investigate the cavity evolution laws of the elastic cushions under pre-load during the manufacturing process.As a result,typical bionic adhesives with tip-expansion are obtained.Moreover,corresponding adhesion mechanics are analyzed.The results show that electrochemical modifications have broad application prospects in the fabrication of tip-expanded microstructures,providing a new method for the large-scale fabrication of bionic adhesives based on metal molds. | Cong YUAN Keju JI Yiqiang TANG Zizhuo WANG Enhua CUI Jian CHEN Zhendong DAI | 2021 | Chinese Journal of Aeronautics2021,34,4: | 0 |