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| 1 | Why are oseltamivir and zanamivir effective against the newly emerged influenza A virus (A/HIN1)?显示文摘 | Kunqian Yu Cheng Luo Guangrong Qin Zhijian Xu Ning Li Hong Liu Xu Shen Jianpeng Ma Qinghua Wang Caiguang Yang Weiliang Zhu Hualiang Jiang | 2009 | Cell Research2009,19,10: | 6 |
| 2 | Comparison of Pb(Ⅱ) and Cd(Ⅱ) micro-interfacial adsorption on fine sediment in the Pearl River Basin, China显示文摘The complex micro-interfacial interaction theories of heavy metal ions such as Pb(Ⅱ)and Cd(Ⅱ)adsorption on fine sediment in aqueous solution were not systematically investigated.The aim of this work was to reflect the micro-interfacial adsorption characteristics.Sediment samples were collected from an estuary.The Isothermal and kinetics adsorption experiment were done to acquire the data.Isothermal,kinetics,film diffusion and intraparticle diffusion models were adopted to fit the adsorption experimental data.The results indicated that the Langmuir,Freundlich and Temkin models were suitable for analyzing the isothermal experimental data.The maximum adsorption capacities of Pb(Ⅱ)and Cd(Ⅱ)on the sediment were 1.1377 and 0.9821 mg·g-1,respectively.The qm and KL of the Langmuir model,Kf and nF of the Freundlich model,and b and A of the Temkin model all exhibited a power function relationship with the initial adsorbate concentration.The pseudo-second-order model provided a better fit for the experimental kinetics data compared with the fit of the pseudo-first-order and Elovich models.The pseudo-second-order parameters k2 and qe of Pb(Ⅱ)and qe of Cd(Ⅱ)both had a power function relationship with adsorption time,additionally,the k2 of Cd(Ⅱ)had an exponential function relationship with adsorption time.The liquid-film diffusion parameters kfd of Pb(Ⅱ)and Cd(Ⅱ)were 0.0569 and 0.1806 min1,respectively.The intraparticle diffusion parameter kid values of Pb(Ⅱ)and Cd(Ⅱ)were 0.0055 mg$g1$min1/2 and 0.0049 mg$g1$min1/2,respectively.The physical significance of the model parameters showed that Pb(Ⅱ)adsorption on sediment was stronger than Cd(Ⅱ).The results of this study provided a theoretical reference for the micro-interfacial mechanism of heavy metal ion adsorption on sediment. | Qunsheng Fang Zhihe Chen Jianpeng Zheng Zhihua Zhu | 2021 | International Journal of Sediment Research2021,36,3: | 5 |
| 3 | Transcriptome Analysis Reveals Clues into leaf-like flower mutant in Chinese orchid Cymbidium ensifolium显示文摘The floral morphology of Cymbidium ensifolium,a well-known orchid in China,has increasingly attracted horticultural and commercial attention.However,the molecular mechanisms that regulate flower development defects in C.ensifolium mutants are poorly understood.In this work,we examined a domesticated variety of C.ensifolium named‘CuiYuMuDan',or leaf-like flower mutant,which lacks typical characteristics of orchid floral organs but continues to produce sepal-to leaf-like structures along the inflorescence.We used comparative transcriptome analysis to identify 6234 genes that are differentially expressed between mutant and wild-type flowers.The majority of these differentially expre ssed genes are involved in membrane-building,anabolism regulation,and plant hormone signal transduction,implying that in the leaf-like mutant these processes play roles in the development of flower defects.In addition,we identified 152 differentially expre ssed transcription factors,including the bHLH,MYB,MIKC,and WRKY gene families.Moreover,we found 20 differentially expressed genes that are commonly involved in flower development,including MADS-box genes,CLAVATA3(CLV3),WUSCHEL(WUS),and PERIANTHIA(PAN).Among them,floral homeotic genes were further investigated by phylogenetic analysis and expression validation,which displayed distinctive spatial expression patterns and significant changes between the wild type and the mutant.This is the first report on the C.ensifolium leaf-like flower mutant transcriptome.Our results shed light on the molecular regulation of orchid flower development,and may improve our understanding of floral patterning regulation and advance molecular breeding of Chinese orchids. | Yonglu Wei Jianpeng Jin Xiani Yao Chuqiao Lu Genfa Zhu Fengxi Yang | 2020 | Plant Diversity2020,42,2: | 4 |
| 4 | Fabrication and Growing Kinetics of Highly Dispersed Gadolinium Zirconate Nanoparticles显示文摘Highly dispersed gadolinium zirconate(GZ)nanoparticles with fluorite structure were successfully synthesized by co-precipitation method,and their phase composition and microstructure,formation mechanism,and grain growth kinetics were investigated.The results suggest that the nanoparticles were obtained through hydroxide dehydration and solid phase reaction.High dispersion was accomplished by ethanol solvent to reduce the hydrogen bond and sodium dodecyl benzene sulfonate(SDBS)surfactant to increase the electrostatic repulsion between the nanoparticles.The grain growth activation energy of GZ powders calcined at lower temperature(<1200°C)is 86.5 kJ/mol(Ql),and the grain growth activation energy of GZ powders calcined at higher temperature(>1200°C)is 148.4 kJ/mol(Qh).The current study shows that the optimal process to synthesize dispersed GZ nanoparticles includes ethanol solvent,3 wt.%SDBS surfactant,and 1100°C as calcining temperature. | Renbo Zhu Jianpeng Zou Jie Mao Xiaofeng Zhang Chunming Deng Min Liu Wenlong Chen | 2019 | Research and Application of Materials Science2019,1,1: | 3 |
| 5 | Association Between COVID-19 Vaccination Coverage and Case Fatality Ratio:a Comparative Study—Hong Kong SAR,China and Singapore,December 2021–March 2022显示文摘Summary What is already known about this topic?Hong Kong Special Administrative Region(SAR),China and Singapore are both facing considerable Omicron variant epidemic.However,the overwhelmed medical system and high case fatality ratio(CFR)just occurred in Hong Kong SAR,China but not in Singapore.What is added by this report?The low vaccination coverage in Hong Kong SAR,China,especially among the older adults,is shown to be a primary reason of its recent high CFR.What are the implications for public health practice?Facing the potential epidemic risk,non-vaccinated,non-fully-vaccinated,and non-booster-vaccinated people in China,especially the elderly,should get any type of accessible vaccine,which could save lives when the infection unfortunately befalls. | Guanhao He Sui Zhu Di Fu Jianpeng Xiao Jianguo Zhao Ziqiang Lin Tao Liu Xiaofeng Liang Wenjun Ma | 2022 | China CDC weekly2022,4,30: | 2 |
| 6 | Desulfurization from thio- phene by SO42 -/ZrO2 catalytic oxidation at room temperature and atmospheric pressure 显示文摘 | Wang Bo Zhu Jianpeng Ma Hongzhu | 2009 | Hazard Mater2009,164,1: | 1 |
| 7 | Development of the novel ACLY inhibitor 326E as a promising treatment for hypercholesterolemia显示文摘Hepatic cholesterol accumulation is an important contributor to hypercholesterolemia,which results in atherosclerosis and cardiovascular disease(CVD).ATP-citrate lyase(ACLY)is a key lipogenic enzyme that converts cytosolic citrate derived from tricarboxylic acid cycle(TCA cycle)to acetyl-CoA in the cytoplasm.Therefore,ACLY represents a link between mitochondria oxidative phosphorylation and cytosolic de novo lipogenesis.In this study,we developed the small molecule 326E with an enedioic acid structural moiety as a novel ACLY inhibitor,and its CoA-conjugated form 326E-CoA inhibited ACLY activity with an IC_(50)=5.31±1.2μmol/L in vitro.326E treatment reduced de novo lipogenesis,and increased cholesterol efflux in vitro and in vivo.326E was rapidly absorbed after oral administration,exhibited a higher blood exposure than that of the approved ACLY inhibitor bempedoic acid(BA)used for hypercholesterolemia.Chronic 326E treatment in hamsters and rhesus monkeys resulted in remarkable improvement of hyperlipidemia.Once daily oral administration of 326E for 24 weeks prevented the occurrence of atherosclerosis in ApoE^(-/-)mice to a greater extent than that of BA treatment.Taken together,our data suggest that inhibition of ACLY by 326E represents a promising strategy for the treatment of hypercholesterolemia. | Zhifu Xie Mei Zhang Qian Song Long Cheng Xinwen Zhang Gaolei Song Xinyu Sun Min Gu Chendong Zhou Yangming Zhang Kexin Zhu Jianpeng Yin Xiaoyan Chen Jingya Li Fajun Nan | 2023 | Acta Pharmaceutica Sinica B2023,13,2: | 1 |
| 8 | CPT1C promotes the potential of gastric cancer ovarian metastasis through up-regulating fatty acid oxidation显示文摘Ovarian metastasis(OM)of gastric cancer(GC),a common form of distant metastasis in female patients,frequently leads to the treatment failure and poor prognosis[1].However,the molecular basis underlying the OM of GC remains largely unknown.With the recent advancement in transcriptome sequencing or RNA sequencing(RNA-seq)techniques,specific molecular features of metastatic malignancies have been uncovered[2].In particular,RNA-seq of paired primary and metastatic lesions has identified metastasisspecific molecules which potentially serve as therapeutic targets and prognostic biomarkers[3].In GC,the key promoters of peritoneal and hepatic metastasis have been identified by comparative transcriptome profiling of primary and metastatic lesions[4,5].Unfortunately,such techniques have not been applied in the distant OM of GC to date. | Jianpeng Gao Junquan Song Yu Zhang Zhenglun Zhu | 2022 | Acta Biochimica et Biophysica Sinica2022,54,5: | 1 |
| 9 | Programmable robotized‘transfer-and-jet’printing for large,3D curved electronics on complex surfaces显示文摘Large,3D curved electronics are a trend of the microelectronic industry due to their unique ability to conformally coexist with complex surfaces while retaining the electronic functions of 2D planar integrated circuit technologies.However,these curved electronics present great challenges to the fabrication processes.Here,we propose a reconfigurable,mask-free,conformal fabrication strategy with a robot-like system,called robotized‘transfer-and-jet’printing,to assemble diverse electronic devices on complex surfaces.This novel method is a ground-breaking advance with the unique capability to integrate rigid chips,flexible electronics,and conformal circuits on complex surfaces.Critically,each process,including transfer printing,inkjet printing,and plasma treating,are mask-free,digitalized,and programmable.The robotization techniques,including measurement,surface reconstruction and localization,and path programming,break through the fundamental constraints of 2D planar microfabrication in the context of geometric shape and size.The transfer printing begins with the laser lift-off of rigid chips or flexible electronics from donor substrates,which are then transferred onto a curved surface via a dexterous robotic palm.Then the robotic electrohydrodynamic printing directly writes submicrometer structures on the curved surface.Their permutation and combination allow versatile conformal microfabrication.Finally,robotized hybrid printing is utilized to successfully fabricate a conformal heater and antenna on a spherical surface and a flexible smart sensing skin on a winged model,where the curved circuit,flexible capacitive and piezoelectric sensor arrays,and rigid digital–analog conversion chips are assembled.Robotized hybrid printing is an innovative printing technology,enabling additive,noncontact and digital microfabrication for 3D curved electronics. | YongAn Huang Hao Wu Chen Zhu Wennan Xiong Furong Chen Lin Xiao Jianpeng Liu Kaixin Wang Huayang Li Dong Ye Yongqing Duan Jiankui Chen Hua Yang Wenlong Li Kun Bai Zhouping Yin Han Ding | 2021 | International Journal of Extreme Manufacturing2021,3,4: | 1 |
| 10 | Desulphurization from thiophene by SO4^2- /ZrO2catalytic oxidation atroomtemperatureand atmospheric pressure 显示文摘 | Bowing Zhu Jianpeng Ma Hongzhu | 2009 | JournalofHazardousMaterials2009,164,1: | 1 |
| 11 | Desulfurization from thiophene by SO2-4 /ZrO2 catalytic oxidation at room temperature and atmospheric pressure显示文摘 | Wang Bo Zhu Jianpeng Ma Hongzhu | 2009 | Journal of Hazardous Materials2009,164,1: | 1 |
| 12 | Guanine nucleotide-binding protein subunit beta-4 promotes gastric cancer progression via activating Erk1/2显示文摘Gastric cancer(GC)is one of the most comm on and lethal malig nancies worldwide,and its poor prognosis is mainly due to the rapid tumor progression including tumor invasion,distant metastasis,etc.Understanding the molecular mechanisms regulating GC progression lays the basis for the development of targeted therapeutic agents.Increasing evidence suggests that guanine nucleotide-binding protein subunit beta-4(GNB4),a key subunit of heterotrimeric G protein,plays a crucial role in the initiation and progression of multiple malignancies.However,whether and how GNB4 promotes GC progression are still unknown.In this study,we found that GNB4 was highly expressed in GC tissues compared to that in non-tumor tissues and was significantly associated with tumor invasion depth,pathological stage and poor survival rate of GC patients.Both gain-of-function and loss-of-function studies revealed that GNB4 significantly enhanced GC cell growth and motility both in vitro and in vivo.Further studies revealed that GNB4 overexpression induced G1-S transition and promoted the process of epithelial-mesenchymal transformation.These tumor promoting effects were mediated by GNB4 which activates the Erk1/2 pathway through upregulating Erk1/2 phosphorylation,as U0126,an Erk1/2 phosphorylation inhibitor,could sigrdficantly inhibit GNB4-mediated cell proliferation,migration and invasion.In summary,GNB4 contributes to the proliferation and metastasis of GC cells by activating the Erk1/2 signaling pathway,and it may serve as a potential therapeutic target of GC. | Jianpeng Gao Hongda Pan Zhenglun Zhu Teng Yu Binhao Huang Ye Zhou | 2020 | Acta Biochimica et Biophysica Sinica2020,52,9: | 0 |
| 13 | Genome-wide association analysis identified molecular markers and candidate genes for flower traits in Chinese orchid (Cymbidium sinense)显示文摘The orchid,the champagne of f lowers,brings luxury,elegance,and novelty to nature.Cymbidium sinense is a symbol of gigantic floral variability on account ofwavering shapes and sizes of f loral organs,althoughmarker-trait association(MTA)has not been studied for its f loral traits.We evaluated markers associated with 14 f loral traits of C.sinense through a genome-wide association study(GWAS)of 195 accessions.A total of 65318522 single-nucleotide polymorphisms(SNPs)and 3906176 insertion/deletion(InDel)events were identified through genotyping-by-sequencing.Among these,4694 potential SNPs and 477 InDelswere identified as MTAs at−log10 P>5.The genes related to these SNPs and InDels were largely associated with f loral regulators,hormonal pathways,cell division,and metabolism,playing essential roles in tailoring f loral morphology.Moreover,20 candidate SNPs/InDels linked to 11 genes were verified,8 of which were situated on exons,onewas located in the 5-UTR and twowere positioned in introns.Here,themultitepal trait-related gene RABBIT EARS(RBE)was found to be the most crucial gene.We analyzed the role of CsRBE in the regulation of flower-related genes via efficient transient overexpression in C.sinense protoplasts,and found that the floral homeotic genes CsAP3 and CsPI,as well as organ boundary regulators,including CsCUC and CsTCP genes,were regulated by CsRBE.Thus,we obtained key gene loci for important ornamental traits of orchids using genome-wide association analysis of populations with natural variation.The findings of this study can do a great deal to expedite orchid breeding programs for shape variability. | Fengxi Yang Yudi Guo Jie Li Chuqiao Lu Yonglu Wei Jie Gao Qi Xie Jianpeng Jin Genfa Zhu | 2023 | Horticulture Research2023,10,11: | 0 |
| 14 | Deployment Strategy for Multiple Controllers Based on the Aviation On-Board Software-Defined Data Link Network显示文摘In light of the escalating demand and intricacy of services in contemporary terrestrial,maritime,and aerial combat operations,there is a compelling need for enhanced service quality and efficiency in airborne cluster communication networks.Software-Defined Networking(SDN)proffers a viable solution for the multifaceted task of cooperative communication transmission and management across different operational domains within complex combat contexts,due to its intrinsic ability to flexibly allocate and centrally administer network resources.This study pivots around the optimization of SDN controller deployment within airborne data link clusters.A collaborative multi-controller architecture predicated on airborne data link clusters is thus proposed.Within this architectural framework,the controller deployment issue is reframed as a two-fold problem:subdomain partition-ing and central interaction node selection.We advocate a subdomain segmentation approach grounded in node value ranking(NDVR)and a central interaction node selection methodology predicated on an enhanced Artificial Fish Swarm Algorithm(AFSA).The advanced NDVR-AFSA(Node value ranking-Improved artificial fish swarm algorithm)algorithm makes use of a chaos algorithm for population initialization,boosting population diversity and circumventing premature algorithm convergence.By the integration of adaptive strategies and incorporation of the genetic algorithm’s crossover and mutation operations,the algorithm’s search range adaptability is enhanced,thereby increasing the possibility of obtaining globally optimal solutions,while concurrently augmenting cluster reliability.The simulation results verify the advantages of the NDVR-IAFSA algorithm,achieve a better load balancing effect,improve the reliability of aviation data link cluster,and significantly reduce the average propagation delay and disconnection rate,respectively,by 12.8%and 11.7%.This shows that the optimization scheme has important significance in practical application,and can meet the high requirements of modern sea,land,and air operations to aviation airborne communication networks. | Yuting Zhu Yanfang Fu Yang Ce Pan Deng Jianpeng Zhu Huankun Su | 2023 | Computers, Materials & Continua2023,77,12: | 0 |
| 15 | When and How to Adjust Non-Pharmacological Interventions Concurrent with Booster Vaccinations Against COVID-19—Guangdong,China,2022显示文摘Introduction:With the large-scale roll-out of the coronavirus disease 2019(COVID-19)booster vaccination effort(a vaccine dose given 6 months after completing primary vaccination)in China,we explore when and how China could lift non-pharmacological interventions(NPIs)against COVID-19 in 2022.Methods:Using a modified susceptible-infectiousrecovered(SIR)mathematical model,we projected the COVID-19 epidemic situation and required medical resources in Guangdong Province,China.Results:If the number of people entering from overseas recovers to 20%of the number in 2019,the epidemic in 2022 could be controlled at a low level by a containment(215 local cases)or suppression strategy(1,397 local cases).A mitigation strategy would lead to 21,722 local cases.A coexistence strategy would lead to a large epidemic with 6,850,083 local cases that would overwhelm Guangdong’s medical system.With 50%or 100%recovery of the 2019 level of travelers from overseas,the epidemic could also be controlled with containment or suppression,but enormous resources,including more hotel rooms for border quarantine,will be required.However,coexistence would lead to an uncontrollable epidemic with 12,922,032 local cases.Discussion:With booster vaccinations,the number of travelers from overseas could increase slightly in 2022,but a suppression strategy would need to be maintained to ensure a controllable epidemic. | Guanhao He Fangfang Zeng Jianpeng Xiao Jianguo Zhao Tao Liu Jianxiong Hu Sicong Zhang Ziqiang Lin Huaiping Zhu Dan Liu Min Kang Haojie Zhong Yan Li Limei Sun Yuwei Yang Zhixing Li Zuhua Rong Weilin Zeng Xing Li Zhihua Zhu Xiaofeng Liang Wenjun Ma | 2022 | China CDC weekly2022,4,10: | 0 |
| 16 | Formal Protection Architecture for Cloud Computing System显示文摘Cloud computing systems play a vital role in national securi-ty.This paper describes a conceptual framework called dual-system architecture for protecting computing environments.While attempting to be logical and rigorous,formalism meth-od is avoided and this paper chooses algebra CommunicationSequential Process. | Yasha Chen Jianpeng Zhao Junmao Zhu Fei Yan | 2014 | ZTE Communications2014,12,2: | 0 |
| 17 | MOF-derived Se doped MnS/Ti_(3)C_(2)T_(x) as cathode and Zn-Ti_(3)C_(2)T_(x) membrane as anode for rocking-chair zinc-ion battery显示文摘Mn-based zinc ion battery has the advantages of low cost and high performance,which makes it the promising energy storage system.However,the poor conductivity and the agglomeration in the synthesis process of manganese-based materials restrict the performance of batteries.Herein,the Se-doped MnS/Ti_(3)C_(2)T_(x)(Se-MnS/Ti_(3)C_(2)T_(x))composite material derived from Mn-based metal-organic framework is reported.Electrochemical tests show that Se-doped could generate S defects and enhance the electrochemical activity of MnS.At the same time,the introduction of Ti_(3)C_(2)T_(x) substrate is conducive to exposing more sulfur defects and improving the utilization rate of defects.In the mechanism study,it is found that Se-MnS/Ti_(3)C_(2)T_(x) is transformed into S/Se co-doped Mn3O_(4) at the first charge,which innovatively elucidated the behavior of S/Se during activation.In the electrochemical performance test,the specific capacity can reach 74.7 mAh·g^(-1) at 5.0 A·g^(-1).In addition,the Zn-Ti_(3)C_(2)T_(x) membrane electrode is prepared by vacuum filtration as the zinc-poor anode,which is assembled into the rocking chair full battery to avoid dendrite growth and exhibit excellent rate performance.The addition of Zn2+weakens the electrostatic repulsion between the interlayers of MXene,and the formation of the folded morphology aids the penetration of the electrolyte.At 1.0 A·g^(-1),the capacity can reach 50.6 mAh·g^(-1).This work is helpful to promote the research and development of the reaction mechanism of manganese based rocking chair batteries. | Kaisheng Sun Zemao Xiao Yunfei Shen Heng Lv Jianpeng Zhu Jianxiang Pang Yang Zheng Wenwen Kong Long Chen | 2024 | Nano Research2024,17,4: | 0 |
| 18 | Synergetic treatment of oxygen microcapsules and lenvatinib for enhanced therapy of HCC by alleviating hypoxia condition and activating anti-tumor immunity显示文摘Hypoxia is a typical characteristic of hepatocellular carcinoma(HCC), which causes tremendous obstacles to tumor treatments. Current first-line treatment may further deteriorate tumor hypoxia. For example,Lenvatinib, a receptor tyrosine kinase inhibitor(RTKI), suppresses tumor growth via blocking vascular endothelial growth factor(VEGF) signaling, and can also inhibit angiogenesis, thus limiting oxygen supply to tumor sites. Therefore, alleviating tumor microenvironment(TME) hypoxia holds great potential for enhancing the therapeutic effect of RTKI. Here, nanoparticle-stabilized oxygen microcapsules, a stable and biocompatible oxygen-loaded delivery system, are successfully prepared through interfacial polymerization of polydopamine nanoparticles. The microcapsules with a large loading capacity of oxygen in the core show excellent bioavailability and dispersity, which could effectively improve the hypoxic TME when they serve as oxygen delivery vehicles. Synergetic treatments of Lenvatinib and oxygen microcapsules could induce the transition of “cold tumor” in an immune-suppressed state to “hot tumor” in an immune-activated state by improving tumor hypoxic TME and reducing angiogenesis in HCC. It is revealed that combined treatments of oxygen microcapsules and Lenvatinib could polarize tumor-associated macrophages(TAMs) to anti-tumor M1 cells and activate T cell-mediated anti-tumor immune responses.The results suggest that synergetic therapy using oxygen microcapsules and Lenvatinib could alleviate the hypoxic TME and enhance the therapeutic performance of RTKI, demonstrating a promising anti-tumor strategy for enhanced therapy of HCC. | Jianpeng Sheng Jiangchao Wu Xianghong Yin Zhu Sun Xun Wang Junlei Zhang Jianghui Tang Yongtao Ji Jinyuan Song Xiaobao Wei Lin Wang Yaxing Zhao Hui Zhang Taohong Li Qi Zhang Xueli Bai Li Chen Dong Chen Tingbo Liang | 2023 | Chinese Chemical Letters2023,34,4: | 0 |
| 19 | Optical Fibre Communication Feature Analysis and Small Sample Fault Diagnosis Based on VMD-FE and Fuzzy Clustering显示文摘To solve the problems of a few optical fibre line fault samples and the inefficiency of manual communication optical fibre fault diagnosis,this paper proposes a communication optical fibre fault diagnosis model based on variational modal decomposition(VMD),fuzzy entropy(FE)and fuzzy clustering(FC).Firstly,based on the OTDR curve data collected in the field,VMD is used to extract the different modal components(IMF)of the original signal and calculate the fuzzy entropy(FE)values of different components to characterize the subtle differences between them.The fuzzy entropy of each curve is used as the feature vector,which in turn constructs the communication optical fibre feature vector matrix,and the fuzzy clustering algorithm is used to achieve fault diagnosis of faulty optical fibre.The VMD-FE combination can extract subtle differences in features,and the fuzzy clustering algorithm does not require sample training.The experimental results show that the model in this paper has high accuracy and is relevant to the maintenance of communication optical fibre when compared with existing feature extraction models and traditional machine learning models. | Xiangqun Li Jiawen Liang Jinyu Zhu Shengping Shi Fangyu Ding Jianpeng Sun Bo Liu | 2024 | Energy Engineering2024,121,1: | 0 |