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| 1 | An improved OFDM chirp waveform used for MIMO SAR system显示文摘Special attention has been devoted to multi-input multi-output(MIMO)synthetic aperture radar(SAR)systems in recent years.The applications of MIMO SAR systems which involve 3D imaging,highresolution wide-swath remote sensing,and multi-baseline interferometry are seriously limited to the orthogonal waveforms.Although orthogonal frequency division multiplexing(OFDM)chirp waveforms can be used for MIMO SAR systems to avoid intra-pulse interferences,there is a small frequency shift between the transmitted OFDM pulses.This vulnerable shift,which can not only affect the waveform orthogonality,but also introduce residual phase error,renders the OFDM waveforms impractical.In this paper,an improved OFDM chirp waveform which works without the mentioned shift is presented,along with the novel modulation and efficient demodulation procedures.Comparison between the improved and the conventional OFDM chirp waveforms is detailed.The influence of random noise,quantization error,and Doppler shift on the orthogonality of OFDM waveform is also investigated in this paper.Theoretical analysis and simulation results illustrate the feasibility of this waveform scheme. | WANG Jie LIANG XingDong DING ChiBiao CHEN LongYong ZHOU LiangJiang DONG YongWei | 2014 | Science China(Information Sciences)2014,57,6: | 6 |
| 2 | 3D printing of calcium phosphate bioceramic with tailored biodegradation rate for skull bone tissue reconstruction显示文摘The bone regenerative scaffold with the tailored degradation rate matching with the growth rate of the new bone is essential for adolescent bone repair.To satisfy these requirement,we proposed bone tissue scaffolds with controlled degradation rate using osteoinductive materials(Ca-P bioceramics),which is expected to present a controllable biodegradation rate for patients who need bone regeneration.Physicochemical properties,porosity,compressive strength and degradation properties of the scaffolds were studied.3D printed Ca-P scaffold(3DS),gas foaming Ca-P scaffold(FS)and autogenous bone(AB)were used in vivo for personalized beagle skull defect repair.Histological results indicated that the 3DS was highly vascularized and well combined with surrounding tissues.FS showed obvious newly formed bone tissues.AB showed the best repair effect,but it was found that AB scaffolds were partially absorbed and degraded.This study indicated that the 3D printed Ca-P bioceramics with tailored biodegradation rate is a promising candidate for personalized skull bone tissue reconstruction. | Boqing Zhang Huan Sun Lina Wu Liang Ma Fei Xing Qingquan Kong Yujiang Fan Changchun Zhou Xingdong Zhang | 2019 | Bio-Design and Manufacturing2019,2,3: | 5 |
| 3 | 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 |
| 4 | 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 |
| 5 | Effect of different aged cartilage ECM on chondrogenesis of BMSCs in vitro and in vivo显示文摘Extracellular matrix(ECM)-based biomaterials are promising candidates in cartilage tissue engineering by simulating the native microenvironment to regulate the chondrogenic differentiation of bone marrow mesenchymal stem cells(BMSCs)without exogenous growth factors.The biological properties of ECM scaffolds are primarily depended on the original source,which would directly influence the chondrogenic effects of the ECM materials.Despite the expanding investigations on ECM scaffolds in recent years,the selection of optimized ECM materials in cartilage regeneration was less reported.In this study,we harvested and compared the articular cartilage ECM from newborn,juvenile and adult rabbits.The results demonstrated the significant differences in the mechanical strength,sulphated glycosaminoglycan and collagen contents of the different aged ECM,before and after decellularization.Consequently,different compositional and mechanical properties were shown in the three ECM-based collagen hydrogels,which exerted age-dependent chondrogenic inducibility.In general,both in vitro and in vivo results suggested that the newborn ECM promoted the most chondrogenesis of BMSCs but led to severe matrix calcification.In contrast,BMSCs synthesized the lowest amount of cartilaginous matrix with minimal calcification with adult ECM.The juvenile ECM achieved the best overall results in promoting chondrogenesis of BMSCs and preventing matrix calcification.Together,this study provides important information to our current knowledge in the design of future ECM-based biomaterials towards a successful repair of articular cartilage. | Xiuyu Wang Yan Lu Wan Wang Qiguang Wang Jie Liang Yujiang Fan Xingdong Zhang | 2020 | Regenerative Biomaterials2020,7,6: | 4 |
| 6 | Dynamic mechanical loading facilitated chondrogenic differentiation of rabbit BMSCs in collagen scaffolds显示文摘Mechanical signals have been played close attention to regulate chondrogenic differentiation of bone marrow mesenchymal stem cells(BMSCs).In this study,dynamic mechanical loading simulation with natural frequencies and intensities were applied to the 3D cultured BMSCs–collagen scaffold constructs.We investigated the effects of dynamic mechanical loading on cell adhesion,uniform distribution,proliferation,secretion of extracellular matrix(ECM)and chondrogenic differentiation of BMSCs–collagen scaffold constructs.The results indicated that dynamic mechanical loading facilitated the BMSCs adhesion,uniform distribution,proliferation and secretion of ECM with a slight contraction,which significantly improved the mechanical strength of the BMSCs–collagen scaffold constructs for better mimicking the structure and function of a native cartilage.Gene expression results indicated that dynamic mechanical loading contributed to the chondrogenic differentiation of BMSCs with higher levels of AGG,COL2A1 and SOX9 genes,and prevented of hypertrophic process with lower levels of COL10A1,and reduced the possibility of fibrocartilage formation due to down-regulated COL1A2.In conclusion,this study emphasized the important role of dynamic mechanical loading on promoting BMSCs chondrogenic differentiation and maintaining the cartilage phenotype for in vitro reconstruction of tissue-engineered cartilage,which provided an attractive prospect and a feasibility strategy for cartilage repair. | Wanxu Cao Weimin Lin Hanxu Cai Yafang Chen Yi Man Jie Liang Qiguang Wang Yong Sun Yujiang Fan Xingdong Zhang | 2019 | Regenerative Biomaterials2019,6,2: | 3 |
| 7 | Implementation of a New MPEG - 2 Transport Stream Processor for Digital Television Broadcasting 显示文摘 | Liang Longfei Yu Songyu Wang Xingdong | 2002 | IEEE Transations on Broadcasting2002,48,4: | 1 |
| 8 | A HIGH RESOLUTION WIDE SWATH SAR METHOD BASED ON INTRA-PULSE NULL STEERING AND MIMO显示文摘High Resolution Wide Swath (HRWS) Synthetic Aperture Radar (SAR) often suffers from low Signal-to-Noise Ratio (SNR) due to small transmitting antenna, especially in phased array antenna systems. Digital Beam Forming (DBF) based on Single Input and Multiple Output (SIMO) achieves receiving array gain at the cost of increasing data rate. This letter proposes a new HRWS SAR method, which employs intra-pulse null steering to get receiving gain in elevation and decrease the data rate, and Multiple Input and Multiple Output (MIMO) using Space-Time Block Coding (STBC) in azimuth to get transmitting gain and receiving array gain simultaneously. The feasibility is verified by deduction and simulations. | Chen Longyong Liang Xingdong Ding Chibiao | 2008 | Journal of Electronics(China)2008,25,6: | 1 |
| 9 | Non-conjugated Polynorbornene Hosts with High Triplet Energy Levels for Solution-processed Narrowband Blue OLEDs显示文摘Three polymer hosts(namely PNB-tBuCz,PNB-Ac,PNB-TAc)containing non-conjugated polynorbornene(PNB)backbone and hole-transporting arylamine segments(carbazole,acridan and dendritic teracridan)in side chains are developed for solution-processed narrowband blue organic light-emitting diodes(OLEDs).It is found that the non-conjugated polynorbornenes can keep high triplet energy(ET)levels in range of 3.12-3.20 eV by interrupting the conjugation of repeating units,making them capable as host materials for blue emitters.Meanwhile,by increasing the electron-donating capability of side chain arylamine from carbazole to acridan and dendritic teracridan,the highest occupied molecular orbital(HOMO)levels for the polymer hosts are elevated from-5.50 eV to-5.11 eV,beneficial for reducing the hole injection barrier from anode to emissive layer.As a result,solution-processed OLEDs employing polynorbornenes with dendritic teracridan side chain(PNB-TAc)as host and boron,selenium,nitrogen-containing multiple resonance thermally activated delayed fluorescence emitter as dopant reveal efficient narrowband blue electroluminescence with emission peak at 474 nm,full-width at half maximum of 30 nm,together with maximum external quantum efficiency of 20.2%,representing the state-of-the-art device efficiency for solution-processed OLEDs with narrowband blue emission. | LI Qiang CHEN Liang WANG Xingdong WANG Shumeng SHAO Shiyang WANG Lixiang | 2023 | Chemical Research in Chinese Universities2023,39,5: | 1 |
| 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 | Implementation of a New MPEG-2 Transport Stream Processor for Digital Television Broadcasting显示文摘 | Liang Longfei Yu Songyu Wang Xingdong | 2002 | IEEE Trans on Broadcasting2002,48,4: | 1 |
| 12 | Seasonal dynamics of N:P ratio stoichiometry and Ca fraction for four dominant plants in the Alxa Desert显示文摘Desert plants take on unique physiologically adaptive mechanisms in response to an adverse environment. In this study, we determined the concentrations of leaf nitrogen(N), phosphorus(P), and calcium(Ca) fraction for dominant species of Artemisia ordosica, A. frigida, Calligonum mongolicum, and Oxytropis aciphylla in the Alxa Desert and discussed seasonal changes of their leaf N:P ratio and Ca fraction. The results showed that, from May to September, the N:P ratios of A. ordosica and C. mongolicum gradually and significantly increased, while those of A. frigida, and O. aciphylla had an increase trend that was not significant; the physiologically active Ca of A. ordosica and A. frigida increased significantly,while that of C. mongolicum and O. aciphylla decreased significantly. The physiologically inert calcium of C. mongolicum increased extremely significantly, while that of others was not significant. There was a significantly positive correlation between the N:P ratio and physiologically active Ca for A. ordosica, and the N:P ratio was significantly and negatively correlated with physiologically active Ca for O. aciphylla. These findings revealed that the physiological regulation mechanism was different for the plants either in earlier stage or later stage of plant-community succession. | JianTan Guo XingDong He HongJuan Jing YuTing Liang | 2018 | Research in Cold and Arid Regions2018,10,4: | 1 |
| 13 | Effects of N:P ratio of Artemisia ordosica on growth influenced by soil calcium carbonate显示文摘Soil calcium carbonate(CaCO_3) has a strong solid phosphorus effect, and high content of CaCO_3 can significantly reduce the effectiveness of soil phosphorus. To reveal the limiting effect of soil CaCO_3 on the growth of plants on sand land and its mechanism of plant physiology, we performed pot experiments with a two-factor randomized block design and a three-factor orthogonal design for different soil CaCO_3 content treatments using Artemisia ordosica seedlings. In the experiments, we surveyed plant height, aboveground biomass, root length and root weight and analyzed N, P concentrations and RNA content of the seedlings, and discussed the relationships between relative growth rate(RGR) of the seedlings and N:P ratio as well as RNA. Results show that, the RGRs of plant height and above-ground biomass of the seedlings decreased significantly with the increase of soil CaCO_3 content, and those for root length and root weight decreased. The RGRs of plant height and above-ground biomass of the seedlings were significantly negatively correlated with leaf N:P ratios, but significantly positively correlated with leaf RNA content and leaf P concentrations. It can be seen that soil CaCO_3 is a stress factor for the growth of A. ordosica seedlings, and the growth response of the seedlings under the influence of soil CaCO_3 is in line with the Growth Rate Hypothesis. | YuTing Liang XingDong He JianTan Guo HongJuan Jing | 2018 | Research in Cold and Arid Regions2018,10,4: | 1 |
| 14 | Comparison of four advanced oxidation processes for the removal of naphthenic acids from model oil sands process water显示文摘 | Liang Xiaoming Zhu Xingdong Butler E C | 2011 | J Hazard Mater2011,190,123: | 1 |
| 15 | 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 |
| 16 | Advanced application of collagen-based biomaterials in tissue repair and restoration显示文摘In tissue engineering,bioactive materials play an important role,providing structural support,cell regulation and establishing a suitable microenvironment to promote tissue regeneration.As the main component of extracellular matrix,collagen is an important natural bioactive material and it has been widely used in scientific research and clinical applications.Collagen is available from a wide range of animal origin,it can be produced by synthesis or through recombinant protein production systems.The use of pure collagen has inherent disadvantages in terms of physico-chemical properties.For this reason,a processed collagen in different ways can better match the specific requirements as biomaterial for tissue repair.Here,collagen may be used in bone/cartilage regeneration,skin regeneration,cardiovascular repair and other fields,by following different processing methods,including cross-linked collagen,complex,structured collagen,mineralized collagen,carrier and other forms,promoting the development of tissue engineering.This review summarizes a wide range of applications of collagen-based biomaterials and their recent progress in several tissue regeneration fields.Furthermore,the application prospect of bioactive materials based on collagen was outlooked,aiming at inspiring more new progress and advancements in tissue engineering research. | Jiayi Zhu Zhulian Li Yaping Zou Gonggong Lu Alfredo Ronca Ugo D’Amora Jie Liang Yujiang Fan Xingdong Zhang Yong Sun | 2022 | Journal of Leather Science and Engineering2022,4,1: | 0 |
| 17 | Therapeutic sponge prevents postoperative breast cancer recurrence by sustainably dissociating into CD44-targeted nanoplatform显示文摘Locoregional recurrence and distant metastasis of breast cancer still pose a significant risk for patients’survival.To address the clinical challenge,functional absorbable sponges(HA-SH/PP-Dox/Lap/COL I(HCNPs))were constructed by biomimetic extracellular matrix of collagen I/hyaluronic acid complex conjugated with doxorubicin/lapatinib(Dox/Lap)-loaded nanoparticles.The HCNPs sponge exhibited excellent clotting ability and blood absorption rate.Worthily,Dox/Lap-loaded nanoparticles were synchronously endowed with a large number of oligo hyaluronic acid segments after degradation,which thus enhanced the ability of targeting into CD44-overexpressed tumor cells.The implantable HCNPs sponge in resected cavity of postoperative 4T1 models inhibited the spread of scattered tumor cells by absorbing the inevitable bleeding.More importantly,CD44 targeted nanoparticle with suitable Dox/Lap proportion continuously released from sponge to kill tumor cells of surrounding HCNPs and those remaining at surgical margin,thus prevented local recurrence as well as distant metastasis.Therefore,the functional HCNPs sponge might provide a safer and more effective strategy for postoperative treatment of cancer. | Junhui Sui Mingda Zhao Zhihao Guo Jiafeng Li Jie Chen Hongli Chen Jie Liang Yong Sun Xingdong Zhang Yujiang Fan | 2024 | Nano Research2024,17,3: | 0 |
| 18 | Biofabrication (3D Bioprinting) Laboratory at Sichuan University显示文摘Introduction and research overview Recently,increasing need for organ transplantation and lack of donated organs have led to the rapid development of new technologies for artificial organ biofabrication.In the era of burgeoning breakthroughs around 3D bioprinting technologies,the personalization of organs and medicine is an ongoing nice vision[1–5].As one of the leading laboratories in the interdisciplinary field of materials,manufacturing and bioengineering,the Biofabrication(3D Bioprinting)Research Laboratory at Sichuan University has been engaging in the research on customized regenerativemedicine since 2012. | Changchun Zhou Kefeng Wang Yong Sun Qiguang Wang Qing Jiang Jie Liang Xuan Pei Boqing Zhang Yujiang Fan Xingdong Zhang | 2021 | Bio-Design and Manufacturing2021,4,2: | 0 |
| 19 | The composite phenotype analysis identifies potential concerted responses of physiological systems to high altitude exposure显示文摘Environmental stresses,such as temperature,disease and altitude could induce systematic changes of biological systems which manifests as concerted responses across multiple systems within a certain period of time[1].High altitude acclimatization(HAA)refers to a series of adaptive physiological responses to hypoxic stress. | Yi Li Meng Hao Zixin Hu Yanyun Ma Kun Wang Xiaoyu Liu Xianhong Yin Menghan Zhang Yi Wang Meng Liang Yuan Guo Lei Bao Shixuan Zhang Shiguan Le Chenyuan Wu Dayan Sun Yang Wei Fei Wu Rui Zhang Lingxian Zhu Hui Zhang Shuai jang Xingdong Chen Xiaofeng Wang Yao Zhang Longli Kang Wenyuan Duan Bin Qiao Jiucun Wang Li Jin | 2023 | National Science Review2023,10,5: | 0 |
| 20 | Antarctic Ice-Sheet Freeze-Thaw Detection Based on Improved Physical Model显示文摘On the basis of the simple ice-sheet freezethaw physical model, a new algorithm of Antarctic icesheet freeze-thaw detection was proposed for the automatic threshold segmentation, which did not depend on the priori freeze-thaw distribution. That was the histogram statistics for the data of ice-sheet freeze-thaw physical model by the use of generalized Gaussian model to automatically get the optimal threshold of the dry snow and the wet snow, so as to get the Antarctic freeze-thaw areas. The algorithm improves the computational efficiency, usability and operability of the ice-sheet freeze-thaw detection because the algorithm does not rely on the actual melt information and can automatically select many samples. To some extent,the algorithm also improves the accuracy of the ice-sheet freeze-thaw detection. | XIONG Zhangqiang WANG Xingdong LI Xinwu LIANG Lei | 2014 | Chinese Journal of Electronics2014,23,1: | 0 |