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| 1 | Design Bistatic Interferometric DEM Generation Algorithm and Its Theoretical Accuracy Analysis for LuTan-1 Satellites显示文摘LuTan-1(LT-1)is a constellation with two full-polarization L-band radar satellites designed by China,and the first satellite was scheduled to be launched in December 2021 and the second one in January 2022.The LT-1 will be operated for deformation monitoring in repeat-pass mode,and for DEM generation in bistatic mode,improving self-sufficiency of SAR data for the field of geology,earthquake,disaster reduction,geomatics,forestry and so on.In this paper,we focused on designing an algorithm for interferometric DEM generation using LT-1 bistatic satellites.The basic principle,main error sources and errors control of the DEM generation algorithm of LT-1 were systematically analyzed.The experiment results demonstrated that:①The implemented algorithm had rigorous resolution with a theoretic accuracy better than 0.03 m for DEM generation.②The errors in satellite velocity and Doppler centroid had no obvious effect on DEM accuracy and they could be neglected.While the errors in position,baseline,slant range and interferometric phase had a significant effect on DEM accuracy.And the DEM error caused by baseline error was dominated,followed by the slant range error,interferometric phase error and satellite position error.③To obtain an expected DEM accuracy of 2 m,the baseline error must be strictly controlled and its accuracy shall be 1.0 mm or better for Cross-Track and Normal-Direction component,respectively.And the slant range error and interferometric phase error shall be reasonably controlled.The research results were of great significance for accurately grasping the accuracy of LT-1 data products and their errors control,and could provide a scientific auxiliary basis for LT-1 in promoting global SAR technology progress and the generation of high-precision basic geographic data. | Bing XU Liqun LIU Zhiwei LI Yan ZHU Jingxin HOU Wenxiang MAO | 2022 | Journal of Geodesy and Geoinformation Science2022,5,1: | 6 |
| 2 | Fouling corrosion in aluminum heat exchangers显示文摘Fouling deposits on aluminum heat exchanger reduce the heat transfer efficiency and cause corrosion to the apparatus.This study focuses on the corrosive behavior of aluminum coupons covered with a layer of artificial fouling in a humid atmosphere by their weight loss,Tafel plots,electrochemical impedance spectroscopy(EIS),and scanning electron microscope(SEM)observations.The results reveal that chloride is one of the major elements found in the fouling which damages the passive film and initiates corrosion.The galvanic corrosion between the metal and the adjacent carbon particles accelerates the corrosive process.Furthermore,the black carbon favors the moisture uptake,and gives the dissolved oxygen greater chance to migrate through the fouling layer and form a continuous diffusive path.The corrosion rate decreasing over time is conformed to electrochemistry measurements and can be verified by Faraday’s law.The EIS results indicate that the mechanism of corrosion can be interpreted by the pitting corrosion evolution mechanism,and that pitting was observed on the coupons by SEM after corrosive exposure. | Su Jingxin Ma Minyu Wang Tianjing Guo Xiaomei Hou Liguo Wang Zhiping | 2015 | Chinese Journal of Aeronautics2015,28,3: | 5 |
| 3 | Optimisation of the double skin facade in hot and humid climates through altering the design parameter combinations显示文摘Architects welcome double skin facade(DSF)due to its aesthetic quality.The first DSF structure was intended to prevent cold weather and strong winds.Nowadays,the application of DSF under different climates has been investigated in many previous studies.Fiowever,little work had been done on the behaviour of DSF in hot and humid climates.Therefore,this paper aimed to extend the application into this specific climate and Guangzhou was selected as the sample city.Both the climate and the design influence the performance of DSF.In this paper,rather than explore how each design parameter influences the performance,the design was evaluated from an overall aspect.The Designbuilder software was used to build the single skin facade(SSF)and double skin facade base model.Annual HVAC energy consumption for both the two models was calculated and compared.An optimisation process was conducted to figure out what kinds of parameter combination could make the design more energy-saving and thermally comfortable.The results indicated that it was possible to design an energy-saving DSF system applied in hot and humid climates compared with the SSF model.The efficiency of the DSF could be further enhanced with a better parameter combination.The optimised options had some features in common,which could provide some inspirations for the application of DSF in hot and humid climates. | Meng Wang Jingxin Hou Zhongting Hu Wei He Hancheng Yu | 2021 | Building Simulation2021,14,3: | 3 |
| 4 | LIFU-responsive nanomedicine enables acoustic droplet vaporization-induced apoptosis of macrophages for stabilizing vulnerable atherosclerotic plaques显示文摘Due to the high risk of tearing and rupture,vulnerable atherosclerotic plaques would induce serious cardiovascular and cerebrovascular diseases.Despite the available clinical methods can evaluate the vulnerability of plaques and specifically treat vulnerable plaques before a cardiovascular event,but the efficiency is still low and undesirable.Herein,we rationally design and engineer the low-intensity focused ultrasound(LIFU)-responsive FPD@CD nanomedicine for the highly efficient treatment of vulnerable plaques by facilely loading phase transition agent perfluorohexane(PFH)into biocompatible PLGA-PEG-PLGA nanoparticles(PPP NPs)and then attaching dextran sulphate(DS)onto the surface of PPP NPs for targeting delivery.DS,as a typical macrophages-targeted molecule,can achieve the precise vaporization of NPs and subsequently controllable apoptosis of RAW 264.7 macrophages as induced by acoustic droplet vaporization(ADV)effect.In addition,the introduction of DiR and Fe3O4 endows nanomedicine with near-infrared fluorescence(NIRF)and magnetic resonance(MR)imaging capabilities.The engineered FPD@CD nanomedicine that uses macrophages as therapeutic targets achieve the conspicuous therapeutic effect of shrinking vulnerable plaques based on in vivo and in vitro evaluation outcomes.A reduction of 49.4%of vascular stenosis degree in gross pathology specimens were achieved throughout the treatment period.This specific,efficient and biosafe treatment modality potentiates the biomedical application in patients with cardiovascular and cerebrovascular diseases based on the relief of the plaque rupture concerns. | Jingxin Hou Jun Zhou Meiqi Chang Guangcheng Bao Jie Xu Man Ye Yixin Zhong Shuling Liu Junrui Wang Wei Zhang Haitao Ran Zhigang Wang Yu Chen Dajing Guo | 2022 | Bioactive Materials2022,7,10: | 1 |
| 5 | Human umbilical cord mesenchymal stem cell transfusion in immune non-responders with AIDS:a multicenter randomized controlled trial显示文摘We examined the safety and efficacy of human umbilical cord mesenchymal stem cell(hUC-MSC)infusion for immune nonresponder(INR)patients with chronic HIV-1 infection,who represent an unmet medical need even in the era of efficient antiretroviral therapy(ART).Seventy-two INR patients with HIV were enrolled in this phase II randomized,double-blinded,multicenter,placebo-controlled,dose-determination trial(NCT01213186)from May 2013 to March 2016.They were assigned to receive high-dose(1.5 x 106/kg body weight)or low-dose(0.5 x 106/kg body weight)hUC-MSC,or placebo.Their clinical and immunological parameters were monitored during the 96-week follow-up study.We found that hUC-MSC treatment was safe and well-tolerated.Compared with baseline,there was a statistical increase in CD4+T counts in the high-dose(P<0.001)and low-dose(P<0.001)groups after 48-week treatment,but no change was observed in the control group.Kaplan-Meier analysis revealed a higher cumulative probability of achieving an immunological response in the low-dose group compared with the control group(95.8%vs.70.8%,P=0.00A).However,no significant changes in CD4/CD84-T counts and CD4/CD8 ratios were observed among the three groups.In summary,hUC-MSC treatment is safe.However,the therapeutic efficacy of hUC-MSC treatment to improve the immune reconstitution in INR patients still needs to be further investigated in a large cohort study. | Lifeng Wang Zheng Zhang Ruonan Xu Xicheng Wang Zhanjun Shu Xiejie Chen Siyu Wang Jiaye Liu Yuanyuan Li Li Wang Mi Zhang Wei Yang Ying Wang Huihuang Huang Bo Tu Zhiwei Liang Linghua Li Jingxin Li Yuying Hou Ming Shi Fu-Sheng Wang | 2021 | Signal Transduction and Targeted Therapy2021,6,7: | 0 |
| 6 | CTCF organizes inter-A compartment interactions through RYBP-dependent phase separation显示文摘Chromatin is spatially organized into three-dimensional structures at different levels including A/B compartments, topologically associating domains and loops. The canonical CTCF-mediated loop extrusion model can explain the formation of loops. However, the organization mechanisms underlying long-range chromatin interactions such as interactions between A–A compartments are still poorly understood. Here we show that different from the canonical loop extrusion model, RYBP-mediated phase separation of CTCF organizes inter-A compartment interactions. Based on this model, we designed and verified an induced CTCF phase separation system in embryonic stem cells (ESCs), which facilitated inter-A compartment interactions, improved self-renewal of ESCs and inhibited their differentiation toward neural progenitor cells. These findings support a novel and non-canonical role of CTCF in organizing long-range chromatin interactions via phase separation. | Chao Wei Lumeng Jia Xiaona Huang Jin Tan Mulan Wang Jing Niu Yingping Hou Jun Sun Pengguihang Zeng Jia Wang Li Qing Lin Ma Xinyi Liu Xiuxiao Tang Fenjie Li Shaoshuai Jiang Jingxin Liu Tingting Li Lili Fan Yujie Sun Juntao Gao Cheng Li Junjun Ding | 2022 | Cell Research2022,32,8: | 0 |
| 7 | A new generation M^(pro)inhibitor with potent activity against SARS-CoV-2 Omicron variants显示文摘Emerging SARS-CoV-2 variants, particularly the Omicron variant and its sublineages, continually threaten the global public health.Small molecule antivirals are an effective treatment strategy to fight against the virus. However, the first-generation antivirals eithershow limited clinical efficacy and/or have some defects in pharmacokinetic (PK) properties. Moreover, with increased use of thesedrugs across the globe, they face great pressure of drug resistance. We herein present the discovery and characterization of a newgeneration antiviral drug candidate (SY110), which is a potent and selective inhibitor of SARS-CoV-2 main protease (Mpro). Thiscompound displayed potent in vitro antiviral activity against not only the predominant SARS-CoV-2 Omicron sublineage BA.5, butalso other highly pathogenic human coronaviruses including SARS-CoV-1 and MERS-CoV. In the Omicron-infected K18-hACE2mouse model, oral treatment with SY110 significantly lowered the viral burdens in lung and alleviated the virus-induced pathology.Importantly, SY110 possesses favorable PK properties with high oral drug exposure and oral bioavailability, and also an outstandingsafety profile. Furthermore, SY110 exhibited sensitivity to several drug-resistance Mpro mutations. Collectively, this investigationprovides a promising new drug candidate against Omicron and other variants of SARS-CoV-2. | Chong Huang Huiping Shuai Jingxin Qiao Yuxin Hou Rui Zeng Anjie Xia Lingwan Xie Zhen Fang Yueyue Li Chaemin Yoon Qiao Huang Bingjie Hu Jing You Baoxue Quan Xiu Zhao Nihong Guo Shiyu Zhang Ronggang Ma Jiahao Zhang Yifei Wang Ruicheng Yang Shanshan Zhang Jinshan Nan Haixing Xu Falu Wang Jian Lei Hin Chu Shengyong Yang | 2023 | Signal Transduction and Targeted Therapy2023,8,4: | 0 |
| 8 | Collaborative adoption of blockchain technology: A supply chain contract perspective显示文摘The outbreak of COVID-19 has significantly affected the development of enterprises.In the post-pandemic era,blockchain technology has become one of the important technologies to help enterprises quickly gain market competitiveness.The heavy investment required of supply chain stakeholders to employ blockchain technology has hindered its adoption and application.To tackle this issue,this study aims to facilitate the adoption of blockchain technology in a supply chain consisting of a core enterprise and a small/medium-sized enterprise through an effective supply chain contract.We analyze the performance of a cost-sharing(CS)contract and a revenue-sharing(RS)contract and propose a new hybrid CS-RS contract for better performance.We conduct comparative analyses of the three contracts and find that the hybrid CS-RS contract can more effectively incentivize both parties to reach the highest level of blockchain technology adoption and achieve supply chain coordination. | Weihua LIU Xinyu LIU Xiaoran SHI Jiahe HOU Victor SHI Jingxin DONG | 2023 | Frontiers of Engineering Management2023,10,1: | 0 |