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| 1 | Consensus on the application of negative pressure wound therapy of diabetic foot wounds显示文摘Because China is becoming an aging society,the incidence of diabetes and diabetic foot have been increasing.Diabetic foot has become one of the main health-related killers due to its high disability and mortality rates.Negative pressure wound therapy(NPWT)is one of the most effective techniques for the treatment of diabetic foot wounds and great progress,both in terms of research and its clinical application,has been made in the last 20 years of its development.However,due to the complex pathogenesis and management of diabetic foot,irregular application of NPWT often leads to complications,such as infection,bleeding and necrosis,that seriously affect its treatment outcomes.In 2020,under the leadership of Burns,Trauma and Tissue Repair Committee of the Cross-Straits Medicine Exchange Association,the writing group for‘Consensus on the application of negative pressure wound therapy of diabetic foot wounds’was established with the participation of scholars from the specialized areas of burns,endocrinology,vascular surgery,orthopedics and wound repair.Drawing on evidence-based practice suggested by the latest clinical research,this consensus proposes the best clinical practice guidelines for the application and prognostic evaluation of NPWT for diabetic foot.The consensus aims to support the formation of standardized treatment schemes that clinicians can refer to when treating cases of diabetic foot. | Shizhao Ji Xiaobin Liu Jie Huang Junmin Bao Zhaohong Chen Chunmao Han Daifeng Hao Jingsong Hong Dahai Hu Yufeng Jiang Shang Ju Hongye Li Zongyu Li Guangping Liang Yan Liu Gaoxing Luo Guozhong Lv Xingwu Ran Zhongmin Shi Juyu Tang Aiping Wang Guangyi Wang Jiangning Wang Xin Wang Bing Wen Jun Wu Hailin Xu Maojin Xu Xiaofei Ye Liangxi Yuan Yi Zhang Shichu Xiao Zhaofan Xia | 2021 | Burns & Trauma2021,9,1: | 17 |
| 2 | Dosage effect of multiple genes accounts for multisystem disorder of myotonic dystrophy type 1显示文摘Multisystem manifestations in myotonic dystrophy type 1(DM1)may be due to dosage reduction in multiple genes induced by aberrant expansion of CTG repeats in DMPK,including DMPK,its neighboring genes(SIX5 or DMWD)and downstream MBNLh However,direct evidence is lacking.Here,we develop a new strategy to generate mice carrying multigene heterozygous mutations to mimic dosage reduction in one step by injection of haploid embryonic stem cells with mutant Dmpk,Six5 and Mbnll into oocytes.The triple heterozygous mutant mice exhibit adult-onset DM1 phenotypes.With the additional mutation in Dmwd,the quadruple heterozygous mutant mice recapitulate many major manifestations in congenital DM1.Moreover,muscle stem cells in both models display reduced sternness,providing a unique model for screening small molecules for treatment of DM1.Our results suggest that the complex symptoms of DM1 result from the reduced dosage of multiple genes. | Qi Yin Hongye Wang Na Li Yifu Ding Zhenfei Xie Lifang Jin Yan Li Qiong Wang Xinyi Liu Liuqing Xu Qing Li Yongjian Ma Yanbo Cheng Kai Wang Cuiqing Zhong Qian Yu Wei Tang Wanjin Chen Wenjun Yang Fan Zhang Chen Ding Lan Bao Bin Zhou Ping Hu Jinsong Li | 2020 | Cell Research2020,30,2: | 7 |
| 3 | A water-evaporation-induced self-charging hybrid power unit for application in the Internet of Things显示文摘A self-charging hybrid power unit has been developed by integrating a water-evaporation-induced nano- generator with a flexible nano-patterned supercapacitor. The nanogenerator can harvest environmental thermal energy and mechanical energy through the water evaporation process, and the supercapacitor can be charged simultaneously. The former offers stable electrical power as output, whereas the Ppy- based supercapacitor shows a capacitance of 12.497 m F/cm^2 with 96.42% retention after 4,000 cycles. After filling the power unit with water as the fuel, it can be fully charged in about 20 min. The power unit can be flexibly integrated with electronic devices such as sensor nodes and wireless transmitters employ- ing the Internet of Things. This new approach can offer new possibilities in continuous future operation of randomly distributed electronic devices incorporated in the Internet of Things. | Haoxuan He Tianming Zhao Hongye Guan Tianyan Zhong Hui Zeng Lili Xing Yan Zhang Xinyu Xue | 2019 | Science Bulletin2019,64,19: | 5 |
| 4 | Tuning Atomically Dispersed Fe Sites in Metal–Organic Frameworks Boosts Peroxidase‑Like Activity for Sensitive Biosensing显示文摘Although nanozymes have been widely developed,accurate design of highly active sites at the atomic level to mimic the electronic and geometrical structure of enzymes and the exploration of underlying mechanisms still face significant challenges.Herein,two functional groups with opposite electron modulation abilities(nitro and amino)were introduced into the metal–organic frameworks(MIL-101(Fe))to tune the atomically dispersed metal sites and thus regulate the enzymelike activity.Notably,the functionalization of nitro can enhance the peroxidase(POD)-like activity of MIL-101(Fe),while the amino is poles apart.Theoretical calculations demonstrate that the introduction of nitro can not only regulate the geometry of adsorbed intermediates but also improve the electronic structure of metal active sites.Benefiting from both geometric and electronic effects,the nitro-functionalized MIL-101(Fe)with a low reaction energy barrier for the HO*formation exhibits a superior POD-like activity.As a concept of the application,a nitro-functionalized MIL-101(Fe)-based biosensor was elaborately applied for the sensitive detection of acetylcholinesterase activity in the range of 0.2–50 mU mL−1 with a limit of detection of 0.14 mU mL−1.Moreover,the detection of organophosphorus pesticides was also achieved.This work not only opens up new prospects for the rational design of highly active nanozymes at the atomic scale but also enhances the performance of nanozyme-based biosensors. | Weiqing Xu Yikun Kang Lei Jiao Yu Wu Hongye Yan Jinli Li Wenling Gu Weiyu Song Chengzhou Zhu | 2020 | Nano-Micro Letters2020,12,12: | 4 |
| 5 | Investigation of frost heave prevention using permeable subgrade structure显示文摘This paper set up a series of comprehensive targets based on the concept of 'anti-freeze filler', which include reasonable water retention rate, frost heave characteristics, and compaction characteristics of filling material. Then, a type of permeable graded gravel is proposed, suitable for high-speed railway subgrade. A series of in-door water retention, permeability, and frost heave tests were performed under different graded conditions. Water retention, permeability, and frost heave characteristic of different graded filling materials can be determined, in order to define the gradation range of permeable graded gravel. Relying on the frost-heave monitoring record of high speed railway in Northeast China, a series of experimental studies were performed, which included on-site filler production, compaction test, and the anti-frost effect test, in order to improve the production and compaction techniques of permeable graded gravel. From the research of this paper, the use of permeable graded gravel subgrade as the anti-frost structure for the high-speed railway subgrade in cold areas is feasible. | DeGou Cai JianPing Yao HongYe Yan QianLi Zhang AiJun Cheng Jie Liu | 2015 | Research in Cold and Arid Regions2015,7,5: | 3 |
| 6 | Defect-rich and ultrathin nitrogen-doped carbon nanosheets with enhanced peroxidase-like activity for the detection of urease activity and fluoride ion显示文摘Although carbon nanozymes have attracted great interest due to their good biocompatibility, low cost,and high stability, designing high-active carbon nanozymes still faces great challenges. Herein, ultrathin nitrogen-doped carbon nanosheets with rich defects(d-NC) were prepared through a high-temperature annealing process, using potassium chloride and ammonium chloride as templates. Owing to the large specific surface area, rich defects and the high exposure of active sites, the proposed d-NC nanozymes exhibited excellent peroxidase-like activity. The d-NC nanozymes possess maximal reaction velocity and their specific activity is 9.4-fold higher than that of nitrogen-doped carbon nanozymes, indicating that the induced defects can boost the catalytic performance. Benefited from the good peroxidase-like activities of d-NC nanozymes, the colorimetric sensing platforms were constructed for the detection of urease activity and fluoride ion, exhibiting satisfactory stability and selectivity. This study not only offers a way to synthesize carbon nanozymes with improved enzyme-like activities but also broadens their applications in colorimetric biosensing. | Yu Zhang Lei Jiao Weiqing Xu Yifeng Chen Yu Wu Hongye Yan Wenling Gu Chengzhou Zhu | 2022 | Chinese Chemical Letters2022,33,3: | 1 |
| 7 | Dynamic landscape mapping of humoral immunity to SARS-CoY-2 identifies non-structural protein antibodies associated with the survival of critical COVID-19 patients显示文摘A comprehensive analysis of the humoral immune response to the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)is essential in understanding COVID-19 pathogenesis and developing antibody-based diagnostics and therapy.In this work,we performed a longitudinal analysis of antibody responses to SARS-CoV-2 proteins in 104 serum samples from 49 critical COVID-19 patients using a peptide-based SARS-CoV-2 proteome microarray.Our data show that the binding epitopes of IgM and IgG antibodies differ across SARS-CoV-2 proteins and even within the same protein. | Linlin Cheng Xiaomei Zhang Yu Chen Dan Wang Dong Zhang Songxin Yan Hongye Wang Meng Xiao Te Liang Haolong Li Meng Xu Xin Hou jiayu Dai Xian Wu Mingyuan Li Minya Lu Dong Wu Ran Tian Jing Zhao Yan Zhang Wei Cao Jinglan Wang Xiaowei Yan Xiang Zhou Zhengyin Liu Yingchun Xu Fuchu He Yongzhe Li Xiaobo Yu Shuyang Zhang | 2021 | Signal Transduction and Targeted Therapy2021,6,9: | 1 |
| 8 | Lack of association between the G protein β3 subunit gene and essential hypertension in Chinese: a case-control and a family-based study显示文摘 | Xiaohong Huang Zhenyu Ju Yan Song Hongye Zhang Kai Sun Hongyan Lu Zhiwei Yang Pedro A. Jose Gang Zhou Meng Wang Weifeng Wang Shixian Feng Rutai Hui | 2003 | Journal of Molecular Medicine2003,,11: | 1 |
| 9 | Dynamic Response Analysis of Soil Slope under Strong Earthquake显示文摘 | HUANG Shuai YAN Hongye CA1 Degou | 2014 | Advance Material Research2014,919,4: | 1 |
| 10 | Clinical and antibody characteristics reveal diverse signatures of severe and non-severe SARS-CoV-2 patients显示文摘Background COVID-19 pandemic continues,clarifying signatures in clinical characters and antibody responses between severe and non-severe COVID-19 cases would benefit the prognosis and treatment.Methods In this study,119 serum samples from 37 severe or non-severe COVID-19 patients from the First People's Hospital of Yueyang were collected between January 25 and February 182020.The clinical features,antibody responses targeting SARS-CoV-2 spike protein(S)and its different domains,SARS-CoV-2-specific Ig isotypes,IgG subclasses,ACE2 competitive antibodies,binding titers with FcγIIa and FcγIIb receptors,and 14 cytokines were comprehensively investigated.The differences between severe and non-severe groups were analyzed using Mann–Whitney U test or Fisher’s exact test.Results Severe group including 9 patients represented lower lymphocyte count,higher neutrophil count,higher level of LDH,total bile acid(TBA)(P<1×10–4),r-glutaminase(P=0.011),adenosine deaminase(P<1×10–4),procalcitonin(P=0.004),C-reactive protein(P<1×10–4)and D-dimer(P=0.049)compared to non-severe group(28 patients).Significantly,higher-level Igs targeting S,different S domains(RBD,RBM,NTD,and CTD),FcγRIIa and FcγRIIb binding capability were observed in a severe group than that of a non-severe group,of which IgG1 and IgG3 were the main IgG subclasses.RBD-IgG were strongly correlated with S-IgG both in severe and non-severe group.Additionally,CTD-IgG was strongly correlated with S-IgG in a non-severe group.Positive RBD-ACE2 binding inhibition was strongly associated with high titers of antibody(S-IgG1,S-IgG3,NTD-IgG,RBD-IgA,NTD-IgA,and CTD-IgA)especially RBD-IgG and CTD-IgG in the severe group,while in the non-severe group,S-IgG3,RBD-IgG,NTD-IgG,and NTD-IgM were correlated with ACE2 blocking rate.S-IgG1,NTD-IgM and S-IgM were negatively associated with illness day in a severe group,while S-IgG3,RBD-IgA,CTD-IgA in the severe group(r=0.363,P=0.011)and S-IgG1,NTD-IgA,CTD-IgA in the non-severe group were positively associated with illness day.Moreover,GRO-α,IL-6,IL-8,IP-10,MCP-1,MCP-3,MIG,and BAFF were also significantly elevated in the severe group.Conclusion Antibody detection provides important clinical information in the COVID-19 process.The different signatures in Ig isotypes,IgG subclasses,antibody specificity between the COVID-19 severe and non-severe group will contribute to future therapeutic and preventive measures development. | Hongye Wang Dongshan Yan Ya Li Yanfei Gong Yulin Mai Bingxiang Li Xiaoyong Zhu Xinrui Wan Liyun Xie HuaKe Jiang Min Zhang Ming Sun Yufeng Yao Yongzhang Zhu | 2022 | Infectious Diseases of Poverty2022,11,1: | 0 |
| 11 | Investigation of insulation layer dynamic characteristics for high-speed railway显示文摘Dynamic performance of insulation is one of the key parameters during the insulation application for high-speed railway subgrade. This paper conducted laboratory and field tests for the materials and dynamic load, especially for thermal performance, elastic deformation, and accumulated deformation of insulation materials. Experiment results show that mechanical properties of insulation layer structure are stable, which satisfies the requirements of the high speed railway. | HongYe Yan GuoTang Zhao DeGou Cai QianLi Zhang JianPing Yao AiJun Cheng | 2015 | Research in Cold and Arid Regions2015,7,4: | 0 |
| 12 | Fine-Tuning Pyridinic Nitrogen in Nitrogen-Doped Porous Carbon Nanostructures for Boosted Peroxidase-Like Activity and Sensitive Biosensing显示文摘Carbon materials have been widely used as nanozymes in bioapplications,attributing to their intrinsic enzyme-like activities.Nitrogen(N)-doping has been explored as a promising way to improve the activity of carbon material-based nanozymes(CMNs).However,hindered by the intricate N dopants,the real active site of N-doped CMNs(N-CMNs)has been rarely investigated,which subsequently retards the further progress of high-performance N-CMNs.Here,a series of porous N-CMNs with well-controlled N dopants were synthesized,of which the intrinsic peroxidase(POD)like activity has a positive correlation with the pyridinic N content.Density functional theory calculations also reveal that pyridinic N boosts the intrinsic POD-like activity of N-CMNs.Pyridinic-N dopant can effectively promote the first H_(2)O desorption process in comparison with the graphitic and pyrrolic N,which is the key endothermic reaction during the catalytic process.Then,utilizing the optimized nanozymes with high pyridinic N content(NP-CMNs)and superior POD-like activity,a facile total antioxidant capacity(TAC)assay was developed,holding great promise in the quality assessment of medicine tablets and antioxidant food for healthcare and healthy diet. | Hongye Yan Linzhe Wang Yifeng Chen Lei Jiao Yu Wu Weiqing Xu Wenling Gu Weiyu Song Dan Du Chengzhou Zhu | 2020 | Research2020,,1: | 0 |
| 13 | A constitutive model for cyclic densification of coarse-grained soil filler for the high-speed railway subgrade considering particle breakage显示文摘Purpose–This study aims to propose a semiempirical and semitheoretical cyclic compaction constitutive model of coarse-grained soil filler for the high-speed railway(HSR)subgrade under cyclic load.Design/methodology/approach–According to the basic framework of critical state soil mechanics and in view of the characteristics of the coarse-grained soil filler for the HSR subgrade to bear the train vibration load repeatedly for a long time,the hyperbolic empirical relationship between particle breakage and plastic work was derived.Considering the influence of cyclic vibration time and stress ratio,the particle breakage correction function of coarse-grained soil filler for the HSR subgrade under cyclic load was proposed.According to the classical theory of plastic mechanics,the shearing dilatation equation of the coarse-grained soil filler for the HSR subgrade considering particle breakage was modified and obtained.A semiempirical and semitheoretical cyclic compaction constitutive model of coarse-grained soil filler for the HSR subgrade under cyclic load was further established.The backward Euler method was used to discretize the constitutive equation,build a numerical algorithm of“elastic prediction and plastic modification”and make a secondary development of the program to solve the cyclic compaction model.Findings–Through the comparison with the result of laboratory triaxial test under the cyclic loading of coarse-grained soil filler for the HSR subgrade,the accuracy and applicability of the cyclic compaction model were verified.Results show that the model can accurately predict the cumulative deformation characteristics of coarse-grained soil filler for the HSR subgrade under the train vibration loading repeatedly for a long time.It considers the effects of particle breakage and stress ratio,which can be used to calculate and analyze the stress and deformation evolution law of the subgrade structure for HSR. | Yangsheng Ye Degou Cai Lin Geng Hongye Yan Junkai Yao Feng Chen | 2022 | Railway Sciences2022,1,1: | 0 |
| 14 | Spatial and frequency multimode in the dressing parametric amplified multiwave mixing process显示文摘The quantum multimode of correlated fields is essential for future quantum-correlated imaging.Here we investigate multimode properties theoretically and experimentally for the parametric amplified multiwave mixing process.The multimode behavior of the signals in our system stems from spatial phase mismatching caused by frequency resonant linewidth.In the spatial domain,we observe the emission rings with an uneven distribution of photon intensity in the parametric amplified four-wave mixing process,suggesting different spatial modes.The symmetrical distribution of spatial spots indicates the spatial correlation between the Stokes and anti-Stokes signals.While in the frequency domain,the multimode character is reflected as multiple peaks splitting in the signals'spectrum.A novelty in our experiment,the number of multimodes both in the spatial and frequency domains can be controlled by dressing lasers by modifying the nonlinear susceptibility.Finally,we extend the multimode properties to the multiwave mixing process.The results can be applied in quantum imaging. | XINGHUA LI JI WU SIQI XIONG MENGTING CHEN HONGYE YAN ZHIGUO WANG YANPENG ZHANG | 2019 | Photonics Research2019,7,12: | 0 |
| 15 | Current situation and development trend of design methods for subgrade structure of high speed railways显示文摘Purpose–This method will become a new development trend in subgrade structure design for high speed railways.Design/methodology/approach–This paper summarizes the structural types and design methods of subgrade bed for high speed railways in China,Japan,France,Germany,the United States and other countries based on the study and analysis of existing literature and combined with the research results and practices of high speed railway subgrade engineering at home and abroad.Findings–It is found that in foreign countries,the layered reinforced structure is generally adopted for the subgrade bed of high speed railways,and the unified double-layer or multi-layer structure is adopted for the surface layer of subgrade bed,while the simple structure is adopted in China;in foreign countries,different inspection parameters are adopted to evaluate the compaction state of fillers according to their respective understanding and practice,while in China,compaction coefficient,subsoil coefficient and dynamic deformation modulus are adopted for such evaluation;in foreign countries,the subgrade top deformation control method,the subgrade bottom deformation control method,the subsurface fill strength control method are mainly adopted in subgrade bed structure design of high speed railways,while in China,dynamic deformation control of subgrade surface and dynamic strain control of subgrade bed bottom layer is adopted in the design.However,the cumulative deformation of subgrade caused by train cyclic vibration load is not considered in the existing design methods.Originality/value–This paper introduces a new subgrade structure design method based on whole-process dynamics analysis that meets subgrade functional requirements and is established on the basis of the existing research at home and abroad on prediction methods for cumulative deformation of subgrade soil. | Yangsheng Ye Degou Cai Qianli Zhang Shaowei Wei Hongye Yan Lin Geng | 2023 | Railway Sciences2023,2,3: | 0 |
| 16 | Investigation of monitoring system for high-speed railway subgrade frost heave显示文摘This paper presents methods for monitoring frost heave, device requirements, testing principals, and data analysis requirements, such as manual leveling observation, automatic monitoring(frost heave, frost depth, and moisture), track dynamic detection, and track status detection. We focused on the requirements of subgrade frost heave monitoring for high speed railways, and the relationship of different monitoring methods during different phases of the railway. The comprehensive monitoring system of high speed railway subgrade frost heave provided the technical support for dynamic design during construction and safe operation of the rail system. | GuoTao Yang ZaiTian Ke DeGou Cai HongYe Yan JianPing Yao Feng Chen | 2015 | Research in Cold and Arid Regions2015,7,5: | 0 |