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| 1 | Influence of mesoscale eddies on primary production in the South China Sea during spring inter-monsoon period显示文摘Mesoscale eddies have been suggested to have an impact on biological carbon fixation in the South China Sea(SCS). However, their overall contribution to primary production during the spring inter-monsoon period is still unknown. Based on large-scale biological and environmental in situ observations and synchronous remote sensing data, the distribution patterns of phytoplankton biomass and the primary production, and the role of mesoscale eddies in regulating primary production in different eddy-controlled waters were investigated. The results suggested that the surface chlorophyll a concentrations and water column integrated primary production(IPP) are significantly higher in cyclonic eddies and lower in the anticyclonic eddies as compared to that in non-eddy waters. Although eddies could affect various environmental factors, such as nutrients, temperature and light availability, nutrient supply is suggested to be the most important one through which mesoscale eddies regulated the distribution patterns of phytoplankton biomass and primary production. The estimated IPP in cyclonic and anticyclonic eddies are about 29.5% higher and 16.6% lower than the total average in the whole study area, respectively, indicating that the promotion effect of mesoscale cold eddies on the primary production was much stronger than the inhibition effect of the warm eddies per unit area. Overall, mesoscale eddies are crucial physical processes that affect the biological carbon fixation and the distribution pattern of primary production in the SCS open sea, especially during the spring inter-monsoon period. | HU Zifeng TAN Yehui SONG Xingyu ZHOU Linbin LIAN Xiping HUANG Liangmin HE Yinghui | 2014 | Acta Oceanologica Sinica2014,33,3: | 16 |
| 2 | Wheat genomic study for genetic improvement of traits in China显示文摘Bread wheat(Triticum aestivum L.)is a major crop that feeds 40%of the world’s population.Over the past several decades,advances in genomics have led to tremendous achievements in understanding the origin and domestication of wheat,and the genetic basis of agronomically important traits,which promote the breeding of elite varieties.In this review,we focus on progress that has been made in genomic research and genetic improvement of traits such as grain yield,end-use traits,flowering regulation,nutrient use efficiency,and biotic and abiotic stress responses,and various breeding strategies that contributed mainly by Chinese scientists.Functional genomic research in wheat is entering a new era with the availability of multiple reference wheat genome assemblies and the development of cutting-edge technologies such as precise genome editing tools,highthroughput phenotyping platforms,sequencing-based cloning strategies,high-efficiency genetic transformation systems,and speed-breeding facilities.These insights will further extend our understanding of the molecular mechanisms and regulatory networks underlying agronomic traits and facilitate the breeding process,ultimately contributing to more sustainable agriculture in China and throughout the world. | Jun Xiao Bao Liu Yingyin Yao Zifeng Guo Haiyan Jia Lingrang Kong Aimin Zhang Wujun Ma Zhongfu Ni Shengbao Xu Fei Lu Yuannian Jiao Wuyun Yang Xuelei Lin Silong Sun Zefu Lu Lifeng Gao Guangyao Zhao Shuanghe Cao Qian Chen Kunpu Zhang Mengcheng Wang Meng Wang Zhaorong Hu Weilong Guo Guoqiang Li Xin Ma Junming Li Fangpu Han Xiangdong Fu Zhengqiang Ma Daowen Wang Xueyong Zhang Hong-Qing Ling Guangmin Xia Yiping Tong Zhiyong Liu Zhonghu He Jizeng Jia Kang Chong | 2022 | Science China(Life Sciences)2022,65,9: | 9 |
| 3 | Tracking characteristics of tracer particles for PIV measurements in supersonic flows显示文摘The tracking characteristics of tracer particles for particle image velocimetry(PIV) measurements in supersonic flows were investigated.The experimental tests were conducted at Mach number 4 in Multi-Mach Wind Tunnel(MMWT) of Shanghai Jiao Tong University.The motion of tracer particles carried by the supersonic flow across Shockwaves was theoretically modelled,and then their aerodynamic characteristics with compressibility and rarefaction effects were evaluated.According to the proposed selection criterion of tracer particles,the PIV measured results clearly identified that the Shockwave amplitude is in good agreement with theory and Schlieren visualizations.For the tracer particles in nanoscales,their effective aerodynamic sizes in the diagnostic zone can be faithfully estimated to characterize the tracking capability and dispersity performance based on their relaxation motion across oblique Shockwaves.On the other hand,the seeding system enabled the tracer particles well-controlled and repeatable dispersity against the storage and humidity. | Chen Fang Liu Hong Yang Zifeng Hu Hui | 2017 | Chinese Journal of Aeronautics2017,30,2: | 5 |
| 4 | Hierarchically porous carbon/red phosphorus composite for high-capacity sodium-ion battery anode显示文摘Red phosphorus has received remarkable attention as a promising anode material for sodium ion batteries(NIBs) due to its high theoretical capacity. However, its practical application has been impeded by its intrinsic low electronic conductivity and large volume variations during sodiation/desodiation process. Here, we design a composite to confine nanosized red phosphorus into the hierarchically porous carbon(HPC) walls by a vaporization-condensation strategy. The mass loading of P in the HPC/P composite is optimized to deliver a reversible specific capacity of 2,202 m Ah/gpbased on the mass of red P(836 m Ah/gcompositebased on the total composite mass), a high capacity retention over 77% after100 cycles, and excellent rate performance of 929 m Ah/gpat 2 C. The hierarchical porous carbon serves as the conductive networks, downsize the red phosphorus to nanoscale, and provide free space to accommodate the large volume expansions. The suppressed mechanical failure of the red phosphorus also enhances the stability of solid-electrolyte interface(SEI) layer, which is confirmed by the microscopy and impedance spectroscopy after the cycling tests. Our studies provide a feasible approach for potentially viable high-capacity NIB anode. | Meng Li Na Feng Mengmeng Liu Zifeng Cong Jiangman Sun Chunhua Du Quanbin Liu Xiong Pu Weiguo Hu | 2018 | Science Bulletin2018,63,15: | 5 |
| 5 | Fabrication of copper nanorods by low-temperature metal organic chemical vapor deposition显示文摘Copper nanorods have been synthe-sized in mesoporous SBA-15 by a low-temperature metal organic chemical vapor deposition (MOCVD) employing copper (II) acetylacetonate, Cu(acac)2, and hydrogen as a precursor and reactant gas, re- spectively. The hydrogen plays an important role in chemical reduction of oganometallic precursor which enhances mass transfer in the interior of the SBA-15 porous substrate. Such copper nanostructures are of great potentials in the semiconductor due to their unusual optical, magnetic and electronic properties. In addition, it has been found that chemically modi- fying the substrate surface by carbon deposition is crucial to such synthesis of copper nanostructures in the interior of the SBA-15, which is able to change the surface properties of SBA-15 from hydrophilic to hydrophobic to promote the adsorption of organic cupric precursor. It has also been found that the copper nanoparticles deposited on the external sur- face are almost eliminated and the copper nanorods are more distinct while the product was treated with ammonia. This approach could be achieved under a mild condition: a low temperature (400℃) and vac-uum (2 kPa) which is extremely milder than the con- ventional method. It actually sounds as a foundation which is the first time to synthesize a copper nanorod at a mild condition of a low reaction temperature and pressure. | ZHANG Ying Frank Leung-Yuk Lam HU Xijun YAN Zifeng | 2006 | Chinese Science Bulletin2006,51,21: | 3 |
| 6 | Epitaxial growth of hyperbranched Cu/Cu2O/CuO coreshell nanowire heterostructures for lithium-ion batteries显示文摘nano 建筑学的小心的设计和期望的活跃材料的聪明的杂交能导致更先进的性质。这里,我们设计了新奇层次分叉 Cu/Cu 2 由联合一个灵巧的热水的方法和随后的控制氧化过程的 O/CuO heteronanostructure。在分支和脊梁之间的好结构和取向附生的关系被高分辨率的传播电子显微镜学调查。而且,分支生长的进化也在 Cu nanowire 表面的渐渐的氧化期间被观察了。试验性的结果建议经由二拍子的圆舞暴露进程要表现到改变湿度以便完成的表面氧化需要优化了核心壳的形成结构化的分叉的建筑学。最后,象在锂离子电池的阳极材料的如此的一个层次框架的功能的 proof-of-concept 被表明。分叉的核心壳 heterostructure 由几个工具改进电池性能:取向附生地成年的分支提供的(i) 为到卷变化的提高的电解质可接近性和高抵抗的一个高表面区域由 Li+ 置闰 / 抽取导致了;(ii ) 有它的明确的异质接面的核心壳结构增加在 lithiation 期间便于有效费用运输的接触区域;(iii ) 铜核心象提供结构的加强一样充当一个当前的收集者。 | Yuxin Zhao Ying Zhang Hu Zhao Xuejin Li Yanpeng Li Ling wen Zifeng Yan Ziyang Huo | 2015 | Nano Research2015,8,8: | 2 |
| 7 | Extraction and Separation Polysaccharides from Radix isatidis and their Effects towards Hemagglutinin Protein of Influenza virus显示文摘 | Zifeng Yang Ping Hu Shan Zhong Ye Chen Li Li XuZhao Li Chuyuan Li Jing Li and Yutao Wang | 2015 | Asian Journal of Chemistry2015,27,5: | 1 |
| 8 | Ultra-antifreeze,ultra-stretchable,transparent,and conductive hydrogel for multi-functional flexible electronics as strain sensor and triboelectric nanogenerator显示文摘Conductive hydrogels have become one of the most promising candidates for flexible electronics due to their excellent mechanical flexibility,durability of deformation,and good electrical conductivity.However,in real applications,severe environments occur frequently,such as extremely cold weather.General hydrogels always lack anti-freeze and anti-dehydration abilities.Consequently,the functions of electronic devices based on traditional hydrogels will quickly fail in extreme environments.Therefore,the development of environmentally robust hydrogels that can withstand extremely low temperatures,overcome dehydration,and ensure the stable operation of electronic devices has become increasingly important.Here,we report a kind of graphene oxide(GO)incorporated polyvinyl alcohol-polyacrylamide(PVA-PAAm)double network hydrogel(GPPDhydrogel)which shows excellent anti-freeze ability.The GPPD-hydrogel exhibits not only good flexibility and ultra-high stretchability up to 2,000%,but ensures a high sensitivity when used as the strain sensor at−50°C.More importantly,when serving as the electrode of a sandwich-structural triboelectric nanogenerator(TENG),the GPPD-hydrogel endows the TENG high and stable output performances even under−80°C.Besides,the GPPD-hydrogel is demonstrated long-lasting moisture retention over 100 days.The GPPD-hydrogel provides a reliable and promising candidate for the new generation of wearable electronics. | Xinhuan Dai Yong Long Bing Jiang Wenbin Guo Wei Sha Jiangwen Wang Zifeng Cong Jiwei Chen Bingjun Wang Weiguo Hu | 2022 | Nano Research2022,15,6: | 1 |
| 9 | Distribution of reactive aluminum under the influence of mesoscale eddies in the western South China Sea显示文摘To understand the distribution of aluminum(Al) under the influence of mesocale eddies in the western South China Sea(SCS), sea level anomaly, geostrophic current, environmental parameters and reactive Al were investigated in the western SCS in August 2013. The highest reactive Al concentration((180±64) nmol/L) was observed in the surface waters, indicating a substantial atmospheric input. Vertically, the reactive Al decreased from the surface high concentration to the subsurface minima at the depth of chlorophyll a(Chl a) maxima and then increased again with depth at most of the stations. The average concentration of reactive Al in the upper 100 m water column was significantly lower in the cyclonic eddy((137±6) nmol/L) as compared with that in the noneddy waters((180±21) nmol/L). By contrast, the average concentrations of Chl a and silicate in the upper 100 m water column were higher in the cyclonic eddy and lower in the anticyclonic eddy. There was a significant negative correlation between the average concentrations of reactive Al and Chl a in the upper 100 m water column. The vertical distribution of reactive Al and the negative correlation between reactive Al and Chl a both suggest that the reactive Al in the upper water column was significantly influenced by biological removal processes. Our results indicate that mesoscale eddies could regulate the distribution of reactive Al by influencing the primary production and phytoplankton community structure in the western SCS. | LIU Jiaxing ZHOU Linbin TAN Yehui WANG Qionga HU Zifeng LI Jiajun JIANG Xin KE Zhixin | 2017 | Acta Oceanologica Sinica2017,36,6: | 1 |
| 10 | Realizing the Long Lifespan of Molybdenum Trioxide in Aqueous Aluminum Ion Batteries Through Potential Regulation显示文摘MoO_(3) is one of the most promising anode materials for aqueous aluminum batteries due to its high theoretical capacity and suitable aluminum insertion/de-insertion potential.However,the inferior cycling stability limits its further application,and the failure mechanism is still unclear.In this article,we provide a straightforward potential regulation technique to manage phase evolution during the charge/discharge process,which ultimately results in a markedly enhanced MoO_(3) electrode cycling stability.The failure mechanism study reveals that the excessive oxidation of the electrode during charge/discharge generates the H_(0.34)MoO_(3) phase,which has high solubility and is the primary cause of MoO_(3) deactivation.Although the dissolved Mo species will be deposited onto the electrode sheet again,the deposition is not electrochemically active and cannot contribute to the capacitance.Controlling the cutoff potential prevented the production of H_(0.34)MoO_(3),resulting in excellent cycling performance(80.1% capacity retention after 4000 cycles).The as-assembled α-MoO_(3)//MnO_(2) full battery exhibits high discharge plateaus(1.4 and 0.9 V),large specific capacity(200 mAhg^(-1) at 2 Ag^(-1)),and ultra-high coulombic efficiency(99%).The research presented here may contribute to the development of highly stable electrode materials for aqueous batteries. | Haodong Fan Xuejin Li Jie Zhou Xiaoning Wang Xiuli Gao Haoyu Hu Li Zhou Tonghui Cai Yongpeng Cui Pengyun Liu Qingzhong Xue Zifeng Yan Wei Xing | 2023 | Renewables2023,1,4: | 0 |
| 11 | Mechanism of forming an ink-bottle-like pore structure based on SBA-15 by a novel MOCVD technique显示文摘Metallorganic chemical vapor deposition is used as a novel simple pore tailoring method to fine-tune the pore opening size of SBA-15 materials without significant loss in pore volume and surface area. By using acetylene as carbon source and copper (II) acetylacetonate as precursor, the poremouth of SBA-15 is effectively reduced from 5.78 nm to 3.67 nm while maintaining the pore body at 5.78 nm. The effect of four pore modification factors-the ratio of acetylene/nitrogen, the feeding time of carbon precursor, the ratio of SBA-C/Cu(acac)2 and the cycles of MOCVD on the final pore structure of the SBA-15/carbon/copper composite is studied. The morphology and microstructure of the resulting product SBA-C-Cu are characterized by XRD patterns, TEM images and EDS analysis. The XRD and TEM reveal that the SBA-C-Cu composite is highly hexagonally ordered and has similar particle morphology as the original SBA-15. | ZHANG Ying FRANK Leung-YUK Lam YAN ZiFeng HU XiJun | 2010 | Chinese Science Bulletin2010,55,4: | 0 |
| 12 | Immunomodulatory Activity of Granulocyte Colony-Stimulating Factor and its Therapeutic Effect on Liver Failure显示文摘Liver failure is characterized by the rapid deterioration of liver function,often accompanied by ascites,coagulation dysfunction,hepatic encephalopathy,and other critical complications.Owing to the complex multifaceted pathogenesis and consequential clinical manifestations of the disease,liver failure displays poor prognosis and warrants comprehensive clinical treatment and management.Liver transplantation remains the only well-established treatment for liver failure.However,several factors including transplantation cost and low organ donation rates limit the rate of liver transplantation.The development of a suitable therapy for liver failure is a significant challenge and remains a cause of concern for the medical world.Granulocyte colony-stimulating factor(G-CSF),a member of the cytokine family of hematopoietic growth factors,is involved in the migration of hematopoietic stem cells into the damaged liver,and effectuates their dedifferentiation into hepatocytes.Liver regeneration involves a complex crosstalk of multiple cell types,including hepatocytes,endothelial cells,and inflammatory cells.Neutrophils and monocytes/macrophages that present different types of innate immune cells were found to play a crucial role in the progression of inflammation and restoration of the liver tissue.G-CSF,known as the most common used cytokine,may also affect these immune cells by combining G-CSF receptors on their surface.The immunomodulatory activity of G-CSF should be studied and described in order to ascertain its therapeutic effect on liver failure. | Jinhua Hu Zijian Sun Jingjing Tong Jing Chen Zifeng Liu | 2022 | Infectious Diseases & Immunity2022,2,1: | 0 |
| 13 | Empowering beginners in bioinformatics with ChatGPT显示文摘The impressive conversational and programming abilities of ChatGPT make it an attractive tool for facilitating the education of bioinformatics data analysis for beginners.In this study,we proposed an iterative model to fine-tune instructions for guiding a chatbot in generating code for bioinformatics data analysis tasks.We demonstrated the feasibility of the model by applying it to various bioinformatics topics.Additionally,we discussed practical considerations and limitations regarding the use of the model in chatbot-aided bioinformatics education. | Evelyn Shue Li Liu Bingxin Li Zifeng Feng Xin Li Gangqing Hu | 2023 | Quantitative Biology2023,11,2: | 0 |
| 14 | Blooms of Prorocentrum donghaiense reduced the species diversity of dinoflagellate community显示文摘Most of reported harmful algal blooms(HABs)of microalgae(75%)have been caused by dinoflagellates.Studies on the negative effects of HABs have generally focused on animals,valuable organisms in particular,and environmental factors such as dissolved oxygen and nutrients,but relatively fewer on community level,particularly that using metagenomic approach.In this study,we reported an investigation on the effects of a HAB caused by the dinoflagellate Prorocentrum donghaiense on the species diversity and community structure of the dinoflagellate sub-community via a pyrosequencing approach for the samples taken before,during,and after the bloom season of P.donghaiense in the East China Sea.We sequenced partial 28S rRNA gene of dinoflagellates for the field samples and evaluated the species richness and diversity indices of the dinoflagellate community,as a sub-community of the total phytoplankton.We obtained 800185 valid sequences(categorized into 560 operational taxonomic units,OTUs)of dinoflagellates from 50 samples and found that the biodiversity of dinoflagellate community was significantly reduced during the blooming period in comparison to that in pre-and after-blooming periods,as reflected in the four diversity indices:the species richness expressed as the number of OTUs,Chao1 index,Shannon index(evenness),and Gini-Simpson index.These four indices were all found to be negatively correlated to the cell density of the bloom species P.donghaiense.Correlation analyses also revealed that the P.donghaiense cell abundance was correlated negatively with NO3--N,and NO2--N,but positively with total nitrogen(TN)and total phosphorus(TP).Principal coordinates analysis(PCoA)showed that the community structure of dinoflagellates was markedly different among the different sampling periods,while the redundancy analysis(RDA)revealed P.donghaiense abundance,salinity,NO3--N,and SiO32-were the most four significant factors shaping the dinoflagellate community structure.Our results together demonstrated that HABs caused by the dinoflagellate P.donghaiense could strongly impact the aquatic ecosystem on the sub-community level which the blooming species belongs to. | Huan Wang Zhangxi Hu Zhaoyang Chai Yunyan Deng Zifeng Zhan Ying Zhong Tang | 2020 | Acta Oceanologica Sinica2020,39,4: | 0 |
| 15 | Amorphous Se species anchored into enclosed carbon skeleton bridged by chemical bonding toward advanced K-Se batteries显示文摘Potassium-selenium(K-Se)batteries have attracted significant attention as one of the most promising alternatives of lithium-ion storage systems owing to high energy density and low cost.In the design of Se-based cathode materials,however,the low utilization rate of active Se and the rapid dissolution of polyselenides seriously weaken the capacity and cycle stability.Therefore,how to make full use of Se species without loss during the charge and discharge process is the key to design high-performance Se-based cathode.In this paper,a 3 D'water cube'-like Se/C hybrid(denoted as Se-O-PCS)is constructed with the assistance of Na_(2)CO_(3) templates.Thanks to the abundant carbonate groups(CO_(3)^(2-))originated from the Na_(2)CO_(3) templates,the molten Se species are firmly anchored into the pore of carbon skeleton by strong C-O-Se bonding.Thus,this unique Se-O-PCS model not only improves the utilization of active Se species,but also can reduce the contact with the electrolyte to inhibit the shuttle effect of polyselenides.Moreover,flexible carbon skeleton gives Se-O-PCS hybrid a good electrical conductivity and excellent structural robustness.Consequently,the resultant Se-O-PCS hybrid is endowed with an obviously enhanced K-ions storage property. | Li Zhou Yongpeng Cui Dongqing Kong Wenting Feng Xiuli Gao Youguo Yan Hao Ren Han Hu Qingzhong Xue Zifeng Yan Wei Xing | 2021 | Journal of Energy Chemistry2021,30,10: | 0 |
| 16 | VIS Atlas:A Database of Virus Integration Sites in Human Genome from NGS Data to Explore Integration Patterns显示文摘Integration of oncogenic DNA viruses into the human genome is a key step in most virusinduced carcinogenesis.Here,we constructed a virus integration site(VIS)Atlas database,an extensive collection of integration breakpoints for three most prevalent oncoviruses,human papillomavirus,hepatitis B virus,and Epstein-Barr virus based on the next-generation sequencing(NGS)data,literature,and experimental data.There are 63,179 breakpoints and 47,411 junctional sequences with full annotations deposited in the VIS Atlas database,comprising 47 virus genotypes and 17 disease types.The VIS Atlas database provides(1)a genome browser for NGS breakpoint quality check,visualization of VISs,and the local genomic context;(2)a novel platform to discover integration patterns;and(3)a statistics interface for a comprehensive investigation of genotypespecific integration features.Data collected in the VIS Atlas aid to provide insights into virus pathogenic mechanisms and the development of novel antitumor drugs. | Ye Chen Yuyan Wang Ping Zhou Hao Huang Rui Li Zhen Zeng Zifeng Cui Rui Tian Zhuang Jin Jiashuo Liu Zhaoyue Huang Lifang Li Zheying Huang Xun Tian Meiying Yu Zheng Hu | 2023 | Genomics, Proteomics & Bioinformatics2023,21,2: | 0 |
| 17 | Improvement in hydrogen storage performance of Mg by mechanical grinding with molten salt etching Ti_(3)C_(2)Cl_(x)显示文摘Mg-based materials are currently a hot research topic as hydrogen storage materials due to their considerable theoretical hydrogen storage capacity.However,the kinetic performance of hydrogen absorption and desorption of Mg is too slow and requires high temperature,which seriously hinders the application of this material.MXene is a new type of two-dimensional material with significant role in improving thermodynamics and kinetics.In this experiment,a two-dimensional layered MXene containing Cl functional group was prepared by molten salt etching using the Ti-containing MAX phase as the raw material.Then different ratios of Ti_(3)C_(2)Cl_(x) were uniformly dispersed onto the surface of Mg by high energy ball milling.The samples were characterized by hydrogen absorption and desorption kinetics,SEM,XRD,XPS,and DSC to investigate the effect of Ti_(3)C_(2)Cl_(x) on the hydrogen absorption and desorption performance of Mg.The onset hydrogen absorption temperature can be reduced to room temperature and the hydrogen release temperature is reduced by 200℃ by doping Ti_(3)C_(2)Cl_(x).And there is also 5.4wt%hydrogen storage in the isothermal hydrogen absorption test at 400℃.The results of DSC demonstrate that the Ea of Mg+15wt%Ti_(3)C_(2)Cl_(x) was reduced by 12.6%compared to pristine Mg.TheΔH is almost invariable.The results of XPS show that the presence of multivalent Ti promotes electron transfer and thus improves the conversion between Mg^(2+)/Mg and H^(−)/H.This study provides a guideline for further improving the hydrogen absorption and desorption performance of Mg-based hydrogen storage materials. | Shuaicheng Hu Lijun Lv Guo Yang Wei Liu Hong Miao Honghui Cheng Xingbo Han Zifeng Lin | 2023 | Progress in Natural Science:Materials International2023,33,2: | 0 |
| 18 | Serosurvey of SARS-CoV-2 among hospital visitors in China显示文摘Dear Editor,In China,the epidemic of COVID-19 has been temporarily brought under control due to strong measures,while there are few new cases except some imported ones(http://gffzz49e061632b4f43abso6wk5wvqqv6566xu.ffgz.tsg.suse.edu.cn/wuhan-haiwai-pre/dist/index.html#/).The PCR-based test result combined with clinical symptoms has widely been used for the detection and confirmation of COVID-19.1 However,the prevalence of asymptomatic or subclinical SARS-CoV-2 infection in China remained unknown. | Wenhua Liang Yongping Lin Jianping Bi Jianfu Li Ying Liang Sook-San Wong Mark Zanin Zifeng Yang Caichen Li Ran Zhong Guowu Jiang Guang Han Desheng Hu Jianxing He Nanshan Zhong | 2020 | Cell Research2020,30,9: | 0 |