|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Comparative analysis of intermuscular bones in fish of different ploidies显示文摘We documented the number, morphology, and distribution of intermuscular bones in five fishes of different ploidy: Carassius auratus (Abbr.WCC, 2n=100), Carassius auratus variety PengZe (Abbr.PZCC, 3n=150), improved triploid crucian carp (Abbr.ITCC, 3n=150), improved red crucian carp (Carassius auratus red var., Abbr.IRCC, ♀, 2n=100), and improved allotetraploids (Abbr.G×AT, ♂, 4n=200). The number of intermuscular bones in WCC, PZCC, and G×AT ranged from 78 to 83 ( =81), 80 to 86 ( =84), and 77 to 84 (=82), respectively. The numbers in ITCC and IRCC were significantly lower, ranging from 77 to 82 (=79) and 58 to 77 (=71), respectively. The average number of intermuscular bones in each sarcomere, ranked in order from highest to lowest, was 0.721 (WCC), 0.673 (PZCC), 0.653 (G×AT), 0.633 (ITCC), and 0.608 (IRCC). There was no difference between ITCC and G×AT or between G×AT and PZCC. However, the average number of intermuscular bones in the sarcomeres of ITCC, WCC, and PZCC differed significantly, as did that of IRCC and the four other kinds of fish. The intermuscular bone of these five fishes was divided into seven shape categories, non-forked (I), one-end-unequal-bi-fork (卜), one-end-equal-bi-fork (Y), one-end-multi-fork, two-end-bi-fork, two-end-multi-fork, and treebranch types. Generally, the morphological complexity was higher in the anterior intermuscular bones than in the posterior body. The number of intermuscular bones was similar but not equal between the left and right sides of the body. ITCC had significantly fewer intermuscular bones than either WCC or PZCC, making it of greater commercial value. Additionally, IRCC and ITCC had fewer intermuscular bones than WCC. Our observations are significant in both fish bone developmental biology and genetic breeding. | LI Ling ZHONG ZeZhou ZENG Ming LIU ShaoJun ZHOU Yi XIAO Jun WANG Jun LIU Yun | 2013 | Science China(Life Sciences)2013,56,4: | 3 |
| 2 | Phase-and epidemic region-adjusted estimation of the number of coronavirus disease 2019 cases in China显示文摘The outbreak of the coronavirus disease 2019 in China was first reported in Wuhan in December 2019 and gradually spread to other areas in China.After implementation of prevention and control measures,the estimation of the epidemic trend is needed.A phase-and region-adjusted SEIR model was applied for modeling and predicting the number of cases in Wuhan,Hubei Province and regions outside Hubei Province in China.The estimated number of infections could reach its peak in late February 2020 in Wuhan and Hubei Province,which is 55303–84520 and 83944–129312,respectively,while the epidemic peaks in regions outside Hubei Province in China could appear on February 13,2020 with the estimated 13035–19108 cases.According to the estimation,the outbreak would abate in March and April all over China.Current estimation provided evidence for planned work resumption under stringent prevention and control in China to further support the fight against the epidemic.Nevertheless,there is still possibility of the second outbreak brought by the work resumption and population migration,especially from Hubei Province and high intensity cities outside Hubei Province.Strict prevention and control measures still need to be considered in the regions with high intensity of epidemic and densely-populated cities. | Ruijie Chang Huwen Wang Shuxian Zhang Zezhou Wang Yinqiao Dong Lhakpa Tsamlag Xiaoyue Yu Chen Xu Yuelin Yu Rusi Long Ning-Ning Liu Qiao Chu Ying Wang Gang Xu Tian Shen Suping Wang Xiaobei Deng Jinyan Huang Xinxin Zhang Hui Wang Yong Cai | 2020 | Frontiers of Medicine2020,14,2: | 2 |
| 3 | Dynamic deformation behavior of a FeCrNi medium entropy alloy显示文摘Deformation behavior of a FeCrNi medium entropy alloy(MEA)prepared by powder metallurgy(P/M)method was investigated over a wide range of strain rates.The FeCrNi MEA exhibits high strain-hardening ability,which can be attributed to the multiple deformation mechanisms,including dislocation slip,deformation induced stacking fault and mechanical twinning.The shear localization behavior of the FeCrNi MEA was also analyzed by dynamically loading hat-shaped specimens,and the distinct adiabatic shear band cannot be observed until the shear strain reaches~14.5.The microstructures within and outside the shear band exhibit different characteristics:the grains near the shear band are severely elongated and significantly refined by dislocation slip and twinning;inside the shear band,the initial coarse grains completely disappear,and transform into recrystallized ultrafine equiaxed grains by the classical rotational dynamic recrystallization mechanism.Moreover,microvoids preferentially nucleate in the central areas of the shear band where the temperature is very high and the shear stress is highly concentrated.These microvoids will coalesce into microcracks with the increase of strain,which eventually leads to the fracture of the shear band. | Ao Fu Bin Liu Zezhou Li Bingfeng Wang Yuankui Cao Yong Liu | 2022 | Journal of Materials Science & Technology2022,,5: | 2 |
| 4 | An Adaptive Transmission Scheme for Deep Space Communication显示文摘Deep space communication is quite different from conventional ground communication due to its time-varying,complexity and large signal delay,which consequently affects communication quality and system efficiency.Adjusting the transmission parameters when the channel environment changes during the communication can guarantee the performance index of the system,and therefore improve communication efficiency. An adaptive transmission scheme of transceiver based on Consultative Committee for Space Data Systems(CCSDS)protocols is proposed in this paper. According to the variation of the deep space channel,the symbol rate of transmission data is adjusted dynamically by estimating the signal-to-noise ratio(SNR) of the receiver in real time and adjusting the channel environment. This scheme can improve the channel utilization and system throughput under the premise of limiting the system bit error rate. Furthermore,this scheme is successfully implemented in Xilinx Virtex-5 FPGA board. | SUN Zezhou WANG Le WANG Chenghua ZHU Qiuming ZHANG Xiaofei LIU Weiqiang LI Xiangyu | 2019 | Transactions of Nanjing University of Aeronautics and Astronautics2019,36,1: | 1 |
| 5 | High-entropy alloy stabilized and activated Pt clusters for highly efficient electrocatalysis显示文摘Although Pt and other noble metals are the state-of-the-art catalysts for various energy conversion applications,their low reserve,high cost,and instability limit their large-scale utilization.Herein,we report a hybrid catalysts design featuring noble metal clusters(e.g.,Pt)uniformly dispersed and stabilized on high-entropy alloy nanoparticles(HEA,e.g.,FeCoNiCu),denoted as HEA@Pt,which is prepared via ultra-fast shock synthesis(∼300 ms)for HEA alloying combined with Pt galvanic replacement for surface anchoring.In our design,the HEA core critically ensures high dispersity,stability,and tunability of the surface Pt clusters through high entropy stabilization and core-shell interactions.As an example in the hydrogen evolution reaction,HEA@Pt achieved a significant mass activity of 235 A/gPt,which is 9.4,3.6,and 1.9-times higher compared to that of homogeneous FeCoNiCuPt(HEA-Pt),Pt,and commercial Pt/C,respectively.We also demonstrated noble Ir stabilized on FeCoNiCrMn nanoparticles(HEA-5@Ir),achieving excellent anodic oxygen evolution performance and highly efficient overall water splitting when combined with the cathodic HEA@Pt.Therefore,our work developed a general catalysts design strategies by using high entropy nanoparticles for effective dispersion,stabilization,and modulation of surface active sites,achieving a harmonious combination of high activity,stability,and low cost. | Wenhui Shi Hanwen Liu Zezhou Li Chenghang Li Jihan Zhou Yifei Yuan Feng Jiang (Kelvin)Kun Fu Yonggang Yao | 2022 | SusMat2022,2,2: | 1 |
| 6 | Mitigating Lattice Distortion of High‑Voltage LiCoO_(2)via Core‑Shell Structure Induced by Cationic Heterogeneous Co‑Doping for Lithium‑Ion Batteries显示文摘Inactive elemental doping is commonly used to improve the structural stability of high-voltage layered transition-metal oxide cathodes.However,the one-step co-doping strategy usually results in small grain size since the low diffusivity ions such as Ti^(4+)will be concentrated on grain boundaries,which hinders the grain growth.In order to synthesize large single-crystal layered oxide cathodes,considering the different diffusivities of different dopant ions,we propose a simple two-step multi-element co-doping strategy to fabricate core–shell structured LiCoO_(2)(CS-LCO).In the current work,the high-diffusivity Al^(3+)/Mg^(2+)ions occupy the core of single-crystal grain while the low diffusivity Ti^(4+)ions enrich the shell layer.The Ti^(4+)-enriched shell layer(~12 nm)with Co/Ti substitution and stronger Ti–O bond gives rise to less oxygen ligand holes.In-situ XRD demonstrates the constrained contraction of c-axis lattice parameter and mitigated structural distortion.Under a high upper cut-off voltage of 4.6 V,the single-crystal CS-LCO maintains a reversible capacity of 159.8 mAh g^(−1)with a good retention of~89%after 300 cycles,and reaches a high specific capacity of 163.8 mAh g^(−1)at 5C.The proposed strategy can be extended to other pairs of low-(Zr^(4+),Ta^(5+),and W6+,etc.)and high-diffusivity cations(Zn^(2+),Ni^(2+),and Fe^(3+),etc.)for rational design of advanced layered oxide core–shell structured cathodes for lithium-ion batteries. | Zezhou Lin Ke Fan Tiancheng Liu Zhihang Xu Gao Chen Honglei Zhang Hao Li Xuyun Guo Xi Zhang Ye Zhu Peiyu Hou Haitao Huang | 2024 | Nano-Micro Letters2024,16,3: | 0 |
| 7 | Study on Functional Mechanical Performance of Honeycomb Array Structures Inspired by Gideon Beetle显示文摘To obtain bio-inspired structures with superior biological function,four bio-inspired structures named regular arrangement honeycomb structure(RAHS),staggered arrangement honeycomb structure(SAHS),floral arrangement honeycomb structure(FLAHS)and functional arrangement honeycomb structure(FUAHS)are designed by observing the microstructure of the Gideon beetle,based on the optimal size bio-inspired cells by response surface method(RSM)and particle swarm optimization(PSO)algorithm.According to Euler theory and buckling failure theory,compression deformation properties of bio-inspired structures are explained.Experiments and simulations further verify the accuracy of theoretical analysis results.The results show that energy absorption of FLAHS is,respectively,increased by 26.95%,22.85%,and 121.45%,compared with RAHS,SAHS,and FUAHS.Elastic modulus of FLAHS is 110.37%,110.37%,and 230.56% of RAHS,SAHS,and FUAHS,respectively.FLAHS perfectly inherits crashworthiness and energy absorption properties of the Gideon beetle,and FLAHS has the most stable force.Similarly,RAHS,SAHS,and FUAHS,respectively,inherit mechanical properties of the Gideon beetle top horn,the Gideon beetle middle horn,and the abdomen of the beetle.This method,designing bio-inspired structures with biological functions,can be introduced into the engineering field requiring the special function. | Ruiyao Liu Guofeng Yao Zezhou Xu Xue Guo Kuiyang Gao Qing Cao Zhenglei Yu Zhihui Zhang Chunyang Han Jiabao Liu | 2022 | Journal of Bionic Engineering2022,19,4: | 0 |
| 8 | Imaging Fast Cellular Uptake of Polymer Dots via Receptor‑Mediated Endocytosis显示文摘During the past decade,semiconducting polymer dots(Pdots)have been prevailing in the family of fluorescent probes due to its high photon budget,excellent photo stability,and good biocompatibility.In this study,holo-Transferrin human(Tf)was utilized to covalently couple with Pdots for a highly efficient endocytosis process through transferrin receptors(TfRs)mediated internalization.As a result,the endocytosis efficiency of Tf-conjugated Pdots in HeLa cells dramatically increased as compared to that of unconjugated Pdots in the same condition.This acute increment demonstrates that holo-Transferrin molecules are of great capability for intracellular delivery of Pdots to TfRs overexpressed cells.The transportation route of Tf-conjugated Pdots is quite different from the uptake mechanism of unconjugated Pdots via nonspecific endocytic trafficking pathway.Considering the overexpression of TfRs in various cancer cells,Tf-conjugated Pdots hold potential to function as a nanocarrier for efficient drug delivery in cancer diagnostics and therapy. | Zezhou Sun Ye Yuan Qiong Li Zhihe Liu Changfeng Wu | 2018 | Journal of Analysis and Testing2018,2,1: | 0 |
| 9 | Cyber security of railway cyber-physical system(CPS)-A risk management methodology显示文摘Along with the increasing application of different cyber-physical systems(CPSs)to connect various components in the rail industry,rising connectivity through communication technologies has also introduced cyber threats against rail-CPSs,causing failures with huge consequences.Implementations of rail-CPSs demand proactive identification,clear-cut definition,and proper handling of their cyber security risks.In this paper,we formulate a risk management methodology for cyber security in rail-CPSs and conduct a retrospective case study on the Advanced Train Control System(ATCS)that has been deployed in many U.S.freight railways.The methodology provides two alternative approaches to fill knowledge gaps in contingency preparation,threat prevention,consequence analysis,and security risk mitigation.In the case study,we demonstrate two cyber threats of ATCS,using attack sequence modeling and consequence analysis,and provide recommendations for risk mitigation.By practicing the methodology with the case study,this work can be used as a general reference to conduct cyber risk management and cyber-robustness evaluations for other existing systems. | Zezhou Wang Xiang Liu | 2022 | Communications in Transportation Research2022,2,1: | 0 |
| 10 | Mechanical Characteristics Analysis of 3D-printing Novel Chiral Honeycomb Array Structures Based on Functional Principle and Constitutive Relationship显示文摘Four novel chiral honeycomb structures inspired by the biological arrangement shape are designed.The functional principle is raised to solve the large deformation of bio-inspired structures and the structural constitutive model is proposed to explain the quasi-static mechanical properties of chiral honeycomb array structures and honeycomb structures.Simulation and experiment results verify the accuracy of theoretical analysis results and the errors are all within 15%.In structural mechanical properties,Equidimensional Chiral Honeycomb Array Structure(ECHS)has excellent mechanical properties.Among ECHS,Small-sized Column Chiral Honeycomb Array Structure(SCHCS)has the best properties.The bearing capacity,specific energy absorption,and specific strength of SCHCS are more than twice as much as the others in this paper.The chiral honeycomb array structure has the best mechanical properties at a certain size.In the structural design,the optimal size model should be obtained first in combination with the optimization algorithm for the protection design. | Ruiyao Liu Guofeng Yao Zezhou Xu Xue Guo Jianyong Li Zhenglei Yu Ping Liang Zhihui Zhang Chunyang Han | 2023 | Journal of Bionic Engineering2023,20,5: | 0 |
| 11 | MICROSTRUCTURE AND SOLIDIFICATION CHARACTERISTICS OF AS-CAST Ni-BASE SUPERALLOY M91显示文摘In comparison with conventional superalloys,no carbide but significant amount ofγ+M3B2 and γ+γ′ eutectics were revealed to precipitate in the stable as-cast structure ofNi-base superalloy M91 which is abundant in B and minfied in C.During solidification ofthe superalloy,the residual liquid is much less and the tendency to porousness isinconsiderable.This superalloy seems to be available for turbine blade and other integral cast-ings under intermediate temperature and long-term services. | ZHANG Bingda TONG Yingjie ZHANG Jiayuan LIU Zezhou ZHU Yaoxiao Institute of Metal Research,Academia Sinica,Shenyang,China | 1991 | Acta Metallurgica Sinica(English Letters)1991,4,3: | 0 |
| 12 | Preliminary Study of the Characteristics of Several Glossy Cabbage(Brassica oleracea var. capitata L.) Mutants显示文摘To determine the characteristics and potential practical applications of glossy cabbage(Brassica oleracea var. capitata L.) mutants, five different glossy mutants were studied. The amount of epicuticular wax covering the mutant leaves was only approximately 30% that of the wild-type(WT) leaves. The wax crystals of WT plants were columnar and linear, while they were granular and rod-shaped in the mutants. Additionally, in WT cabbage, the primary wax components were alkanes, alcohols, fatty acids, ketones, and aldehydes. There was a significant decrease in the abundance of alkanes and ketones in the wax of the mutants. The glossy-green trait of the mutants may be the result of an inhibited alkane-forming pathway. Higher rates of chlorophyll leaching and water loss demonstrate that the mutant leaves were more permeable and sensitive to drought stress than the WT leaves. Growth curve results indicated that the growth rate of mutant-1 and mutant-3 was slower than that of the corresponding WT cabbage, resulting in shorter plants. However, the growth rate of mutant-2 was not influenced by the lack of coating wax. An investigation of the agronomic traits and heterosis of the glossy cabbage mutants indicated that all five mutants had glossy-green leaves, which was a favorable characteristic. The F1 plants derived from crosses involving mutant-2 exhibited obvious heterosis, suggesting the observed glossy-green trait is controlled by a dominant gene. Therefore, mutant-2 may be useful as a source of genetic material for future cabbage breeding experiments. | TANG Jun LIU Dongming LIU Zezhou YANG Limei FANG Zhiyuan LIU Yumei ZHUANG Mu ZHANG Yangyong Lü Honghao YI Dengxia SUN Peitian | 2015 | Horticultural Plant Journal2015,1,2: | 0 |
| 13 | Shock-Resistant and Energy-Absorbing Properties of Bionic NiTi Lattice Structure Manufactured by SLM显示文摘Each specific structure of organisms is the best choice under specific circumstances.The excellent characteristic structures of these organisms have great application potential in the design and multi-functional optimization of energy-absorbing structures such as vehicle collisions,satellite landings,and military equipment.In this paper,using the principle of structural bionics,using the advantages of the honeycomb structure and the light weight and high strength of beetle elytra,four bionic lattice structures are studied:CH,ZPRH,SCH and IBE.Using NiTi shape memory alloy,a unique material as the base material,samples are prepared using selective laser melting(SLM)technology.By comparing the test results of the quasi-static compression test with the results of the numerical simulation,it is found that compared with the other three bionic lattice structures,the SCH structure has the best energy absorption effect in the effective stroke in the test,and the specific energy absorption can reach 6.32 J/g.ZPRH,SCH,and IBE structures not only have good and stable deformation behavior,but also have excellent impact resistance and shape memory properties.The design of these structures provides a reference for the design of anti-shock cushioning structures with self-recovery functions in the future. | Zhenglei Yu Renlong Xin Zezhou Xu Luming Sha Lixin Chen Yining Zhu Ping Liang Zhihui Zhang Zhenze Liu Qing Cao | 2022 | Journal of Bionic Engineering2022,19,6: | 0 |