|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Improved Roberts operator for detecting surface defects of heavy rails with superior precision and efficiency显示文摘An experimental platform accompanying with the improved Roberts algorithm has been developed to achieve accurate and real-time edge detection of surface defects on heavy rails.Detection results of scratching defects show that the improved Roberts operator can attain accurate positioning to defect contour and get complete edge information.Meanwhile,a decreasing amount of interference noises as well as more precise characteristic parameters of the extracted defects can also be confirmed for the improved algorithm.Furthermore,the BP neural network adopted for defects classification with the improved Roberts operator can obtain the target training precision with 98 iterative steps and time of 2s while that of traditional Roberts operator is 118 steps and 4s.Finally,an enhanced defects identification rate of 13.33%has also been confirmed after the Roberts operator is improved.The proposed detecting platform will be positive in producing high-quality heavy rails and guaranteeing the national transportation safety. | 石甜 Kong Jianyi Wang Xingdong Liu Zhao Xiong Jianliang | 2016 | High Technology Letters2016,22,2: | 7 |
| 2 | The biological effect of recombinant humanized collagen on damaged skin induced by UV-photoaging:An in vivo study显示文摘The application of medical devices to repair skin damage is clinically accepted and natural polymer enjoys an important role in this field,such as collagen or hyaluronic acid,etc.However,the biosafety and efficacy of these implants are still challenged.In this study,a skin damage animal model was prepared by UV-photoaging and recombinant humanized type Ⅲ collagen(rhCol Ⅲ)was applied as a bioactive material to implant in vivo to study its biological effect,comparing with saline and uncrosslinked hyaluronic acid(HA).Animal skin conditions were non-invasively and dynamically monitored during the 8 weeks experiment.Histological observation,specific gene expression and other molecular biological methods were applied by the end of the animal experiment.The results indicated that rhCol Ⅲ could alleviate the skin photoaging caused by UV radiation,including reduce the thickening of epidermis and dermis,increase the secretion of Collagen Ⅰ(Col Ⅰ)and Collagen Ⅲ(Col Ⅲ)and remodel of extracellular matrix(ECM).Although the cell-material interaction and mechanism need more investigation,the effect of rhCol Ⅲ on damaged skin was discussed from influence on cells,reconstruction of ECM,and stimulus of small biological molecules based on current results.In conclusion,our findings provided rigorous biosafety information of rhCol Ⅲ and approved its potential in skin repair and regeneration.Although enormous efforts still need to be made to achieve successful translation from bench to clinic,the recombinant humanized collagen showed superiorities from both safety and efficacy aspects. | Jing Wang He Qiu Yang Xu Yongli Gao Peijie Tan Rui Zhao Zhanhong Liu Yajun Tang Xiangdong Zhu Chongyun Bao Hang Wang Hai Lin Xingdong Zhang | 2022 | Bioactive Materials2022,7,5: | 7 |
| 3 | The optimized preparation of HA/L-TiO2/D-TiO2 composite coating on porous titanium and its effect on the behavior osteoblasts显示文摘Various surface bioactivation technology has been confirmed to improve the osteogenic ability of porous titanium(pTi)implants effectively.In this study,a three-layered composite coating,i.e.outer layer of hydroxyapatite(HA),middle layer of loose titanium dioxide(L-TiO2)and inner layer of dense TiO2(D-TiO2),was fabricated on pTi by a combined processing procedure of pickling,alkali heat(AH),anodic oxidation(AO),electrochemical deposition(ED)and hydrothermal treatment(HT).After soaking in simulated body fluid for 48 h,the surface of the AHAOEDHT-treated pTi was completely covered by a homogeneous apatite layer.Using MC3T3-E1 pro-osteoblasts as cell model,the cell culture revealed that both the pTi without surface treatment and the AHAOEDHT sample could support the attachment,growth and proliferation of the cells.Compared to the pTi sample,the AHAOEDHT one induced higher expressions of osteogenesis-related genes in the cells,including alkaline phosphatase,Type I collagen,osteopontin,osteoclast inhibitor,osteocalcin and zinc finger structure transcription factor.As thus,besides the good corrosion resistance,the HA/L-TiO2/D-TiO2-coated pTi had good osteogenic activity,showing good potential in practical application for bone defect repair. | Xi Fu Xingyu Zhou Pin Liu Hewei Chen Zhanwen Xiao Bo Yuan Xiao Yang Xiangdong Zhu Kai Zhang Xingdong Zhang | 2020 | Regenerative Biomaterials2020,7,5: | 5 |
| 4 | Lipid-dependent conformational dynamics underlie the functional versatility of T-cell receptor显示文摘T 房间 receptor-CD3 建筑群(TCR ) 是能基于 CD3 细胞质的领域的各种各样的生物化学的变化开始抗原特定的有免疫力的回答的一台万用的发信号机器,但是内在的结构的基础留下逃犯。这里,我们开发了生物物理的途径学习 CD3 细胞质的领域的 conformational 动力学(CD3 CD ) 。在单个分子的水平,我们发现那 CD3 CD 能与三个功能的主题的不同坦诚有多重 conformational 状态,即, ITAM, BRS 和 PRS。因为,这些符合构造被产生 CD3 CD 有异构的类脂化合物绑定性质因此有异构的动力学。实时房间的成像实验证明不同抗原刺激能稳定 CD3 在不同符合构造的 CD 。类脂化合物依赖者 conformational 动力学因此为 TCR 的万用的发信号性质提供结构的基础。 | Xingdong Guo Chengsong Yan Hua Li Wenmao Huan Xiaoshan Shi Min Huang Yingfang Wang Weiling Pan Mingjun Cai Lunyi Li Wei Wu Yibing Bai Chi Zhang Zhijun Liu Xinyan Wang Xiaohui F Zhang Chun Tang Hongda Wang Wanli Liu Bo Ouyang Catherine C Wong Yi Cao Chenqi Xu | 2017 | Cell Research2017,27,4: | 5 |
| 5 | Identification of an endogenous glutamatergic transmitter system controlling excitability and conductivity of atrial cardiomyocytes显示文摘As an excitatory transmitter system,the glutamatergic transmitter system controls excitability and conductivity of neurons.Since both cardiomyocytes and neurons are excitable cells,we hypothesized that cardiomyocytes may also be regulated by a similar system. | Duanyang Xie Ke Xiong Xuling Su Guanghua Wang Qiang Ji Qicheng Zou Lingling Wang Yi Liu Dandan Liang Jinfeng Xue Luxin Wang Xueting Gao Xingdong Gu Hongyu Liu r Xiaoyu He Li Li Jian Yang Youming Lu Luying Peng Yi-Han Chen | 2021 | Cell Research2021,31,9: | 5 |
| 6 | BMSCs-assisted injectable Col I hydrogel-regenerated cartilage defect by reconstructing superficial and calcified cartilage显示文摘The self-healing capacity of cartilage was limited due to absence of vascular,nervous and lymphatic systems.Although many clinical treatments have been used in cartilage defect repair and shown a promising repair result in short term,however,regeneration of complete zonal structure with physiological function,reconstruction cartilage homeostasis and maintaining long-term repair was still an unbridgeable chasm.Cartilage has complex zonal structure and multiple physiological functions,especially,superficial and calcified cartilage played an important role in keeping homeostasis.To address this hurdle of regenerating superficial and calcified cartilage,injectable tissue-induced type I collagen(Col I)hydrogel-encapsulated BMSCs was chosen to repair cartilage damage.After 1 month implantation,the results demonstrated that Col I gel was able to induce BMSCs differentiation into chondrocytes,and formed hyaline-like cartilage and the superficial layer with lubrication function.After 3 months post-surgery,chondrocytes at the bottom of the cartilage layer would undergo hypertrophy and promote the regeneration of calcified cartilage.Six months later,a continuous anatomical tidemark and complete calcified interface were restored.The regeneration of neo-hyaline cartilage was similar with adjacent normal tissue on the thickness of the cartilage,matrix secretion,collagen type and arrangement.Complete multilayer zonal structure with physiological function remodeling indicated that BMSCs-assisted injectable Col I hydrogel could reconstruct cartilage homeostasis and maintain long-term therapeutic effect. | Hanxu Cai PeileiWang Yang Xu Ya Yao Jia Liu Tao Li Yong Sun Jie Liang Yujiang Fan Xingdong Zhang | 2020 | Regenerative Biomaterials2020,7,1: | 4 |
| 7 | Denoising method of X-ray phase contrast DR image for TRISO-coated fuel particles显示文摘TRISO(tristructural-isotropic) fuel is a type of micro fuel particles used in high-temperature gas-cooled reactors(HTGRs).Among the quality evaluation methods for such particles,in-line phase contrast imaging technique(PCI) is more feasible for nondestructive measurement.Due to imaging hardware limitations,high noise level is a distinct feature of PCI images,and as a result,the dimensional measurement accuracy of TRISO-coated fuel particles decreases.Therefore,we propose an improved denoising hybrid model named as NL P-M model which introduces non-local theory and retains the merits of the Perona-Malik(P-M) model.The improved model is applied to numerical simulation and practical PCI images.Quantitative analysis proves that this new anisotropic diffusion model can preserve edge or texture information effectively,while ruling out noise and distinctly decreasing staircasing artifacts.Especially during the process of coating layer thickness measurement,the NL P-M model makes it easy to obtain continuous contours without noisy points or fake contour segments,thus enhancing the measurement accuracy.To address calculation complexity,a graphic processing unit(GPU) is adopted to realize the acceleration of the NL P-M denoising. | Min Yang Jianhai Zhang Fanyong Meng Sung-Jin Song Xingdong Li Wenli Liu Dongbo Wei | 2013 | Particuology2013,11,6: | 2 |
| 8 | Wet-spinning fabrication of shear-patterned alginate hydrogel microfibers and the guidance of cell alignment显示文摘Native tissue is naturally comprised of highly-ordered cell-matrix assemblies in a multi-hierarchical way,and the nano/submicron alignment of fibrous matrix is found to be significant in supporting cellular functionalization.In this study,a self-designed wet-spinning device appended with a rotary receiving pool was used to continuously produce shear-patterned hydrogel microfibers with aligned submicron topography.The process that the flow-induced shear force reshapes the surface of hydrogel fiber into aligned submicron topography was systematically analysed.Afterwards,the effect of fiber topography on cellular longitudinal spread and elongation was investigated by culturing rat neuron-like PC12 cells and human osteosarcoma MG63 cells with the spun hydrogel microfibers,respectively.The results suggested that the stronger shear flow force would lead to more distinct aligned submicron topography on fiber surface,which could induce cell orientation along with fiber axis and therefore form the cell-matrix dual-alignment.Finally,a multi-hierarchical tissue-like structure constructed by dual-oriented cell-matrix assemblies was fabricated based on this wet-spinning method.This work is believed to be a potentially novel biofabrication scheme for bottom-up constructing of engineered linear tissue,such as nerve bundle,cortical bone,muscle and hepatic cord. | You Yang Jing Sun Xiaolu Liu Zhenzhen Guo Yunhu He Dan Wei Meiling Zhong Likun Guo Hongsong Fan Xingdong Zhang | 2017 | Regenerative Biomaterials2017,4,5: | 2 |
| 9 | The effect of collagen hydrogels on chondrocyte behaviors through restricting the contraction of cell/hydrogel constructs显示文摘Collagen is a promising material for tissue engineering,but the poor mechanical properties of collagen hydrogels,which tend to cause contraction under the action of cellular activity,make its application challengeable.In this study,the amino group of type I collagen(Col I)was modified with methacrylic anhydride(MA)and the photo-crosslinkable methacrylate anhydride modified type I collagen(CM)with three different degrees of substitution(DS)was prepared.The physical properties of CM and Col I hydrogels were tested,including micromorphology,mechanical properties and degradation properties.The results showed that the storage modulus and degradation rate of hydrogels could be adjusted by changing the DS of CM.In vitro,chondrocytes were seeded into these four groups of hydrogels and subjected to fluorescein diacetate/propidium iodide(FDA/PI)staining,cell counting kit-8(CCK-8)test,histological staining and cartilage-related gene expression analysis.In vivo,these hydrogels encapsulating chondrocytes were implanted subcutaneously into nude mice,then histological staining and sulfated glycosaminoglycan(sGAG)/DNA assays were performed.The results demonstrated that contraction of hydrogels affected behaviors of chondrocytes,and CM hydrogels with suitable DS could resist contraction of hydrogels and promote the secretion of cartilage-specific matrix in vitro and in vivo. | Longpeng Dong Qingli Liu Yongli Gao Hengxing Jia Wenling Dai Likun Guo Hongsong Fan Yujiang Fan Xingdong Zhang | 2021 | Regenerative Biomaterials2021,8,4: | 2 |
| 10 | The effect of LyPRP/collagen composite hydrogel on osteogenic differentiation of rBMSCs显示文摘Although platelet-rich plasma(PRP)plays a significant role in the orthopedic clinical application,it still faces two major problems,namely,uncontrollable factors release,frequent preparation and extraction processes as well as the inconvenient form of usage.To overcome these shortcomings,freeze-dried PRP(LyPRP)was encapsulated into bioactive Col I hydrogel to induce osteogenic dif-ferentiation of rabbit bone marrow mesenchymal stem cells(rBMSCs).And PRP/Col I composite hydrogel was prepared as a control.Compared with Col I hydrogel,the introduction of platelets significantly improved the mechanical properties of hydrogels.Meanwhile,platelets were evenly distributed in the composite hydrogels network.The sustainable release of related factors in the composite hydrogels could last for more than 14days to maintain its long-term biological activity.Further cell experiments confirmed that PRP and LyPRP could effectively alleviate the contraction of collagen hydrogel in vitro,and promote the adhesion,proliferation and osteogenesis differentia-tion of rBMSCs.The results of osteogenic gene expression indicated that the 10%LyPRP/Col I composite hydrogel could facilitate the early expression of BMP-2 and late osteogenic associated protein formation with higher expression of alkaline phosphatase and Osteocalcin(OCN).These results might provide new insights for the clinical application of 10%LyPRP/Col I composite hydro-gel as practical bone repair injection. | Manyu Chen Quanying Liu Yang Xu Yuxiang Wang Xiaowen Han Zhe Wang Jie Liang Yong Sun Yujiang Fan Xingdong Zhang | 2021 | Regenerative Biomaterials2021,8,1: | 1 |
| 11 | Canine ACL reconstruction with an injectable hydroxyapatite/collagen paste for accelerated healing of tendon-bone interface显示文摘Healing of an anterior cruciate ligament(ACL)autologous graft in a bone tunnel occurs through the formation of fibrovascular scar tissue,which is structurally and compositionally inferior to normal fibrocartilaginous insertion and thus may increase the reconstruction failure and the rate of failure recurrence.In this study,an injectable hydroxyapatite/type I collagen(HAp/Col I)paste was developed to construct a suitable local microenvironment to accelerate the healing of bone-tendon interface.Physicochemical characterization demonstrated that the HAp/Col I paste was injectable,uniform and stable.The in vitro cell culture illustrated that the paste could promote MC3T3-E1 cells proliferation and osteogenic expression.The results of a canine ACL reconstruction study showed that the reconstructive ACL had similar texture and color as the native ACL.The average width of the tunnel,total bone volume,bone volume/tissue volume and trabecular number acquired from micro-CT analysis suggested that the healing of tendon-bone interface in experimental group was better than that in control group.The biomechanical test showed the maximal loads in experimental group achieved approximately half of native ACL’s maximal load at 24 weeks.According to histological examination,Sharpey fibers could be observed as early as 12 weeks postoperatively while a typical four-layer transitional structure of insertion site was regenerated at 48 weeks in the experimental group.The injectable HAp/Col I paste provided a biomimetic scaffold and microenvironment for early cell attachment and proliferation,further osteogenic expression and extracellular matrix deposition,and in vivo structural and functional regeneration of the tendon-bone interface. | Qingsong Jiang Liren Wang Zhanhong Liu Jinlei Su Yajun Tang Peijie Tan Xiangdong Zhu Kai Zhang Xing Ma Jia Jiang Jinzhong Zhao Hai Lin Xingdong Zhang | 2023 | Bioactive Materials2023,,2: | 1 |
| 12 | Thermal decomposition of hydroxyapatite structure induced by titanium and its dioxide显示文摘 | Jie Weng Xiaoguang Liu Xingdong Zhang Xiaoyang Ji | 1994 | Journal of Materials Science Letters1994,,3: | 1 |
| 13 | One-step co-doping of ZnO and Zn^(2+)in osteoinductive calcium phosphate ceramics with synergistic antibacterial activity for regenerative repair of infected bone defect显示文摘How to endow bone grafts with long-term antibacterial activity and good bone regenerative ability to achieve the regenerative repair of infected bone defects has been the focus of the clinical treatment of osteomyelitis.The present study introduced a novel one-step route to realizing the co-doping of zinc oxide(ZnO)and zinc ion(Zn^(2+))in biphasic calcium phosphate(BCP)ceramics to utilize their synergistic antibacterial.Compared with the conventional BCP ceramics(BCP-Ca),the ZnO/Zn^(2+)co-doping ones(BCP-Zn)possessed strong antibacterial ability on E.coli and S.aureus as well as stimulated the osteogenic differentiation of bone marrow mesenchymal stem cells(BMSCs)effectively.The synergistic antibacterial mechanism of ZnO and Zn^(2+)was also investigated.BCP-Zn showed excellent osteoinductivity and angiogenesis at three months postoperatively in the canine intramuscular implantation model.Moreover,BCP-Zn exhibited excellent anti-infective ability and bone regenerative repair compared to BCP-Ca and control groups in the infected bone defect model of rat femur.Collectively,these findings suggest that the simultaneous introduction of ZnO/Zn^(2+)could have immense potential to expand the application of osteoinductive BCP ceramics in the regenerative repair of infected bone defects. | Tinghan He Hongxu Chen Puxin Liu Hao Shi Xiujuan Xu Cong Feng Yuyi Wang Xiangfeng Li Ning Lei Yumei Xiao Xiangdong Zhu Jianguo Xu Xingdong Zhang | 2023 | Journal of Materials Science & Technology2023,,32: | 1 |
| 14 | In-situ synthesis of faujasite zeolite membrane from geopolymer and its pervaporation properties显示文摘 | Liu Xingdong Wang Yipin Cui Xuemin | 2013 | Power Technology2013,243,: | 1 |
| 15 | Reliability and performance of multi-state systems with propagated failures having selec- tive effect显示文摘 | Levitin G LIU Xingdong | 2010 | Reliability Engineering and System Safety2010,95,6: | 1 |
| 16 | Celastrol inhibits vasculogenesis by suppressing the VEGF-induced functional activity of bone marrow-derived endothelial progenitor cells显示文摘 | Shuai Huang Yubo Tang Xingdong Cai Xinsheng Peng Xingmo Liu Longjuan Zhang Yucheng Xiang Dechun Wang Xi Wang Tao Pan | 2012 | Biochemical and Biophysical Research Communications2012,,: | 1 |
| 17 | Using Composite Phenotypes to Reveal Hidden Physiological Heterogeneity in High-Altitude Acclimatization in a Chinese Han Longitudinal Cohort显示文摘Altitude acclimatization is a human physiological process of adjusting to the decreased oxygen availability.Since several physiological processes are involved and their correlations are complicated,the analyses of single traits are insufficient in revealing the complex mechanism of high-altitude acclimatization.In this study,we examined these physiological responses as the composite phenotypes that are represented by a linear combination of physiological traits.We developed a strategy that combines both spectral clustering and partial least squares path modeling(PLSPM)to define composite phenotypes based on a cohort study of 883 Chinese Han males.In addition,we captured 14 composite phenotypes from 28 physiological traits of high-altitude acclimatization.Using these composite phenotypes,we applied k-means clustering to reveal hidden population physiological heterogeneity in high-altitude acclimatization.Furthermore,we employed multivariate linear regression to systematically model(Models 1 and 2)oxygen saturation(SpO_(2))changes in high-altitude acclimatization and evaluated model fitness performance.Composite phenotypes based on Model 2 fit better than single trait-based Model 1 in all measurement indices.This new strategy of using composite phenotypes may be potentially employed as a general strategy for complex traits research such as genetic loci discovery and analyses of phenomics. | Yi Li Yanyun Ma Kun Wang Menghan Zhang Yi Wang Xiaoyu Liu Meng Hao Xianhong Yin Meng Liang Hui Zhang Xiaofeng Wang Xingdong Chen Yao Zhang Wenyuan Duan Longli Kang Bin Qiao Jiucun Wang Li Jin | 2021 | Phenomics2021,1,1: | 1 |
| 18 | Characterization of recombinant humanized collagen type III and its influence on cell behavior and phenotype显示文摘Collagen made a tremendous impact in the field of regenerative medicine as a bioactive material.For decades,collagen has been used not only as a scaffolding material but also as an active component in regulating cells’biological behavior and phenotype.However,animal-derived collagen as a major source suffered from problems of immunogenicity,risk of viral infection,and the unclear relationship between bioactive sequence and function.Recombinant humanized collagen(rhCol)provided alternatives for regenerative medicine with more controllable risks.However,the characterization of rhCol and the interaction between rhCol and cells still need further investigation,including cell behavior and phenotype.The current study preliminarily demonstrated that recombinant humanized collagen type III(rhCol III)conformed to the theoretical amino acid sequence and had an advanced structure resembling bovine collagen.Furthermore,rhCol III could facilitate basal biological behaviors of human skin fibroblasts,such as adhesion,proliferation and migration.rhCol III was beneficial for some extracellular matrix-expressing cell phenotypes.The study would shed light on the mechanism research of rhCol and cell interactions and further understanding of effectiveness in tissue regeneration. | Jing Wang Hong Hu Jian Wang He Qiu Yongli Gao Yang Xu Zhanhong Liu Yajun Tang Lu Song John Ramshaw Hai Lin Xingdong Zhang | 2022 | Journal of Leather Science and Engineering2022,4,1: | 0 |
| 19 | Functionalize d 3D-printe d porous titanium scaffold induces in situ vascularized bone regeneration by orchestrating bone microenvironment显示文摘Titanium(Ti)and its alloys have been extensively explored for treating load-bearing bone defects.How-ever,high-stress shielding,weak osteogenic activity,and insufficient vascularization remain key chal-lenges for the long-term clinical outcomes of Ti-based implants.Herein,inspired by structural and func-tional cues of bone regeneration,a silicon-doped nano-hydroxyapatite(nSiHA)/titanium dioxide(TiO_(2))composite coating with a hierarchical micro/nano-network structure is constructed on the surface of a 3D-printed porous Ti scaffold via a combined strategy of acid-alkali(AA)treatment and electrochemi-cal deposition technique,which not only endows the scaffold with excellent osteoinduction ability but can also effectively immobilize and release vascular endothelial growth factor(VEGF).The results of the in vitro cell experiments show that the functionalized Ti scaffold significantly promotes osteogenesis in bone marrow mesenchymal stem cells(BMSCs)and angiogenesis in human umbilical vein endothelial cells(HUVECs)by activating the extracellular signal-regulated protein kinase(ERK)and HIF-1αsignaling pathways.After being implanted into a rat femoral condyle defect model,the functionalized Ti scaffold can induce in situ vascularized bone regeneration by orchestrating the two coupled processes of angio-genesis and osteogenesis.These findings indicate that the functionalized Ti scaffold has great potential in bone tissue regeneration and is a promising candidate for load-bearing bone defect repair. | Bo Yuan Pin Liu Rui Zhao Xiao Yang Zhanwen Xiao Kai Zhang Xiangdong Zhu Xingdong Zhang | 2023 | Journal of Materials Science & Technology2023,,22: | 0 |
| 20 | Speciation Study of Trace Elements by Reversed Phase-High Performance Liquid Chromatography ( Ⅰ )——Simultaneous Determination of Cr( Ⅲ ) and Cr( Ⅵ )显示文摘Reported here is the Cr-speciation study by High Performance Liquid Chromatography (HPLC) using precolumn derivatization with ammonium pyrolidinyldithiocarbamate (APDC) and spectrophotometric detection. The rapid and sensitive method has been successfully applied to the analysis of environmental water. The chromatographic behavior of the two Cr-APDC chelates are illustrated with 'Solvophobic Theory'. | Yao Xingdong , Liu Jinchun , Cheng Jieke Zeng Yun’ e (Department of Chemistry, Wuhan University, Wuhan ) To whom correspondence should be addressedPresent address: Department of Chemistry , Shantou University, Shantou. | 1991 | Chemical Research in Chinese Universities1991,7,1: | 0 |