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15篇 您的检索式:作者名="DENG Hongli"
    题名 作者 年代 出处 被引量
1Onco-miR-24 regulates cell growth and apoptosis by targeting BCL2L11 in gastric cancer显示文摘胃的癌症是世界范围的最普通的恶意之一;然而,在 tumorigenesis 的分子的机制仍然需要探索。BCL2L11 属于 BCL-2 家庭,并且充当内在的 apoptotic 串联的一个中央管理者并且调停房间 apoptosis。尽管 miRNAs 被报导了涉及癌症开发的每个阶段,在 GC 的 miR-24 的角色还没被报导。在现在的学习,当 BCL2L11 的表示在 GC 的肿瘤纸巾被禁止时, miR-24 被发现起来调整。研究从在 vitro 并且在显示出的 vivo,那 miR-24 调整 BCL2L11 表示由与 mRNA 的 3UTR 直接有约束力,因此支持房间生长,移植当禁止房间 apoptosis 时。因此, miR-24 是能是为未来的潜在的药目标的新奇 onco-miRNA 临床的使用。Haiyang Zhang Jingjing Duan Yanjun Qu Ting Deng Rui Liu Le Zhang Ming Bai Jialu Li Tao Ning Shaohua Ge Xia Wang ZhenzhenWang~ Qian Fan Hongli Li Guoguang Ying Dingzhi Huang Yi Ba 2016Protein & Cell2016,7,2:11
2Sichuan dialect speech recognition with deep LSTM network显示文摘In speech recognition research,because of the variety of languages,corresponding speech recognition systems need to be constructed for different languages.Especially in a dialect speech recognition system,there are many special words and oral language features.In addition,dialect speech data is very scarce.Therefore,constructing a dialect speech recognition system is difficult.This paper constructs a speech recognition system for Sichuan dialect by combining a hidden Markov model(HMM)and a deep long short-term memory(LSTM)network.Using the HMM-LSTM architecture,we created a Sichuan dialect dataset and implemented a speech recognition system for this dataset.Compared with the deep neural network(DNN),the LSTM network can overcome the problem that the DNN only captures the context of a fixed number of information items.Moreover,to identify polyphone and special pronunciation vocabularies in Sichuan dialect accurately,we collect all the characters in the dataset and their common phoneme sequences to form a lexicon.Finally,this system yields a 11.34%character error rate on the Sichuan dialect evaluation dataset.As far as we know,it is the best performance for this corpus at present.Wangyang YING Lei ZHANG Hongli DENG 2020Frontiers of Computer Science2020,14,2:3
3miRNA27a Is a Biomarker for Predicting Chemosensitivity and Prognosis in Metastatic or Recurrent Gastric Cancer显示文摘Dingzhi Huang Haiyan Wang Rui Liu Hongli Li Shaohua Ge Ming Bai Ting Deng Guangyu Yao Yi Ba 2014J. Cell. Biochem2014,,3:2
4A novel self-powered wireless temperature sensor based on thermoelectric generators显示文摘Yongming Shi Yao Wang Yuan Deng Hongli Gao Zhen Lin Wei Zhu Huihong Ye 2014Energy Conversion and Management2014,,:2
5Cocoon Silk-Derived, Hierarchically Porous Carbon as Anode for Highly Robust Potassium-Ion Hybrid Capacitors显示文摘Potassium-ion hybrid capacitors(KIHCs) have attracted increasing research interest because of the virtues of potassium-ion batteries and supercapacitors.The development of KIHCs is subject to the investigation of applicable K+storage materials which are able to accommodate the relatively large size and high activity of potassium.Here,we report a cocoon silk chemistry strategy to synthesize a hierarchically porous nitrogen-doped carbon(SHPNC).The as-prepared SHPNC with high surface area and rich N-doping not only offers highly efficient channels for the fast transport of electrons and K ions during cycling,but also provides sufficient void space to relieve volume expansion of electrode and improves its stability.Therefore,KIHCs with SHPNC anode and activated carbon cathode afford high energy of 135 Wh kg-1(calculated based on the total mass of anode and cathode),long lifespan,and ultrafast charge/slow discharge performance.This study defines that the KIHCs show great application prospect in the field of high-performance energy storage devices.Haiyan Luo Maoxin Chen Jinhui Cao Meng Zhang Shan Tan Lei Wang Jiang Zhong Hongli Deng Jian Zhu Bingan Lu 2020Nano-Micro Letters2020,12,9:2
6N/S co-doped carbon nanosheet bundles as high-capacity anode for potassium-ion battery显示文摘Potassium-ion batteries(PIBs)are of academic and economic significance,but still limited by the lack of highly active electrode materials for de-/intercalation of large-radius K ions.Herein,an interconnected nitrogen/sulfur co-doped carbon nanosheep bundle(N/S-CSB)was proposed as the potassium ions storage material.The rich co-doping of nitrogen/sulfur of N/S-CNB with three-dimensional hierarchical bundled array structure yields distensible interlayer spaces to buffer the volume expansion during K+insertion/extraction,offers more electrochemical active sites to obtain a high specific capacity,and provides efficient channels for fast ion/electron transports.Therefore,the N/S-CSB anode achieved high reversible specific capacity of 365 mAh/g obtained at 50 mA/g after 200 cycles with a coulombic efficiency(CE)close to 100%,high rate performance and long cycle stability.Moreover,the in-situ Raman spectra indicated outstanding reaction kinetics of as-prepared N/S-CSB anode.Jinhui Cao Jiang Zhong Hanjiao Xu Shengyang Li Hongli Deng Tao Wang Ling Fan Xinghui Wang Lei Wang Jian Zhu Bingan Lu Xidong Duan 2022Nano Research2022,15,3:1
7Automated insect identification through concatenated his- tograms of local appearance features: feature vector generation and region detection for deformable objects 显示文摘LARIOS Natalia DENG Hongli ZHANG Wei 2008Machine Vision and Applications2008,19,2:1
8zangyi zoulang minzu duoyuan wenhua shiye xia de qiangzu zongjiao wenhua yifeng tanxi(Exploration on Qiang Religious Culture Tracks in the Perspective of Ethno Multiculturalism in Tibetan-Yi Corridor)显示文摘Deng Honglie 0,,06:1
9Structure induced wide range wettability:Controlled surface of micro-nano/nano structured copper films for enhanced interface显示文摘The wettability of materials used in the production of devices employed in various technological domains have attracted significant attentions.Therefore,it is important to design the surfaces of these materials such that they can provide the required surface free energy and simplify the interfacial structure.Herein,various Cu films with a highly controllable surface wettability and a wide range of contact angles ranging from 6°to 152°were fabricated,and the corresponding mechanism was discussed.A wide range of wettability was realized by controlling the surface structure of the Cu film.The nanogap structure of the vertical nanowire-array film led to a high surface free energy.Similarly,the oblique nanowirearray film increased the surface free energy;however,the surface free energy was dependent on the size of the nanowires rather than on the nanogaps owing to the crystallinity of the film.Additionally,cluster-nanowire-array films were designed to realize a wettability transition from hydrophilicity to hydrophobicity with a constant surface free energy.The Cu foam possessed a superhydrophilic surface owing to its high porosity,whereas the cluster-nanoparticle structure possessed a superhydrophobic surface.In addition,we noted that the structure-induced wettability played an important role in tuning the semiconductor and metal interfacial stress and simplifying the interfacial structure.Furthermore,the outstanding electrical conductivity of the Cu films indicates its promising potential as an electrode.The structure-induced wettability proposed in this study can be applied for a wide range of materials,particularly for films used for advanced applications.Lili Cao Bingwei Luo Hongli Gao Min Miao Tao Wang Yuan Deng 2021Journal of Materials Science & Technology2021,,25:1
10In situ formation of lithiophilic Li_(22)Sn_(5) alloy and high Li-ion conductive Li_(2)S/Li_(2)Se via metal chalcogenide SnSSe for dendrite-free Li metal anodes显示文摘Lithium metal has gained extensive attention as the most ideal candidate for next-generation battery anode owing to the ultrahigh specific capacity and the lowest electrochemical potential.However,uncontrollable dendrite growth and huge volume variation extremely restrict the future deployment of lithium metal batteries.Herein,we report metal chalcogenide SnSSe with unique nanoplate stacking structure as a robust substrate for stable Li metal anode.During the initial Li plating process,lithiophilic Li_(22)Sn_(5) alloy and Li_(2)S/Li_(2)Se sites are obtained via in-situ electrochemical reaction of Li metal and SnSSe.Density functional theory(DFT)calculation demonstrates that the formed Li_(2)S/Li_(2)Se achieves low Li diffusion energy barrier,ensuring rapid Li~+migration.Li_(22)Sn_(5) alloy provides strong nucleation sites,promoting uniform Li nucleation.Furthermore,in-situ optical microscopy analysis suggests that the synthesized effect fundamentally inhibits lithium dendrite growth.Consequently,SnSSe modified Cu foil delivered an ultralow nucleation overpotential,superior cycling stability with 450 cycles(Coulombic efficiency,>98%),and excellent plating/stripping behavior over 2200 h at 0.5 mA cm^(-2).Moreover,the brilliant reversible cycles and rate capability were also realized in Li@SnSSe//LiFePO_(4)(LFP)full cell,shedding light on the feasibility of SnSSe for stable and dendrite-free lithium metal anode.Yaya Wang Yang Guo Jiang Zhong Meng Wang Lei Wang Shengyang Li Song Chen Hongli Deng Yong Liu Yidi Wu Jian Zhu Bingan Lu 2022Journal of Energy Chemistry2022,31,10:0
11Combating increased antifungal drug resistance in Cryptococcus,what should we do in the future?显示文摘Few therapeutic drugs and increased drug resistance have aggravated the current treatment difficulties of Cryptococcus in recent years.To better understand the antifungal drug resistance mechanism and treatment strategy of cryptococcosis.In this review,by combining the fundamental features of Cryptococcus reproduction leading to changes in its genome,we review recent research into the mechanism of four current anti-cryptococcal agents,coupled with new therapeutic strategies and the application of advanced technologies WGS and CRISPR-Cas9 in this field,hoping to provide a broad idea for the future clinical therapy of cryptococcosis.Hengyu Deng Jialin Song Yemei Huang Chen Yang Xuelei Zang Yangyu Zhou Hongli Li Bin Dai Xinying Xue 2023Acta Biochimica et Biophysica Sinica2023,55,4:0
12Identification of a candidate QTG for seed number per silique by integrating QTL mapping and RNA-seq in Brassica napus L.显示文摘Seed number per silique(SNPS)is one of seed yield components in rapeseed,but its genetic mechanism remains elusive.Here a double haploid(DH)population derived from a hybrid between female 6Q006with 35–40 SNPS and male 6W26 with 10–15 SNPS was investigated for SNPS in the year 2017,2018,2019 and 2021,and genotyped with Brassica 60K Illumina Infinium SNP array.An overlapping major QTL(qSNPS.C09)explaining 51.50%of phenotypic variance on average was narrowed to a 0.90 Mb region from 44.87 Mb to 45.77 Mb on chromosome C09 by BSA-seq.Subsequently,two DEGs in this interval were detected between extreme individuals in DH and F_2populations by transcriptome sequencing at7 and 14 days after pollination siliques.Of which,BnaC09g45400D encoded an adenine phosphoribosyltransferase 5(APT5)has a 48-bp InDel variation in the promoter of two parents.Candidate gene association analysis showed that this InDel variation was associated with SNPS in a nature population of rapeseed,where 54 accessions carrying the same haplotype as parent 6Q006 had higher SNPS than103 accessions carrying the same haplotype as parent 6W26.Collectively,the findings are helpful for rapeseed molecular breeding of SNPS,and provide new insight into the genetic and molecular mechanism of SNPS in rapeseed.Shuangshuang Xin Hongli Dong Yixin Cui Yilin Liu Guifu Tian Nanxi Deng Huafang Wan Zhi Liu Xiaorong Li Wei Qian 2023The Crop Journal2023,11,1:0
13Effective method for isolating liquid endosperm and improved procedure for subsequent DNA extraction in Brassica napus显示文摘Jun LI Shihang FAN Xingchao SUN Zhiyong HU Jing LIU Xiaoyi ZHU Ming ZHENG Fengming SUN Hongli YANG Liang ZHANG Linbin DENG Hongfang LIU Wei HUA 2016Oil Crop Science2016,1,2:0
14Synthesis and characteristic of a novel green fluorescent protein eYGFPuv显示文摘Recently, a novel green fluorescent protein eYGFPuv has been identified in the marine organism Chiridius poppei which displays high fluorescence intensity and can be visible by eyes in dark. Although strong green fluorescence was achieved in transgenic petunia, 3 expression cassettes (about 8 kb) complicate its application. In this study, to confirm whether 1 expression cassette could be used as a transgenic marker in prokaryotes and eukaryotes, eYGFPuv was cloned into prokaryotic expression vector pET28α-eYGFPuv- His and plant binary expression vector 35S::eYGFPuv. Compared to EGFP, eYGFPuv protein exhibited stronger dazzling green fluorescence in E. coli under excited light at 365 nm and maintains steadily over a long period of time without degradation. When transiently expressed in tobacco leaves, eYGFPuv protein displayed strong green fluorescence. Moreover, the fluorescence of eYGFPuv protein also could be directly observed in living plant, and thus can be used easily as a marker to screen transformed lines in transgenic research. Overall, compared to previous studies on eYGFPuv tandem repeats, our data confirmed that single eYGFPuv sequence still possesses high fluorescence intensity and quenching resistance. Furthermore, because of small size of expression cassette,it is suitable for efficient transformation in both prokaryotic and eukaryotic organisms.Shihang Fan Linbin Deng Hongli Yang Liang Zhang Xingchao Sun Jinglin Liu Jing Liu 2019Oil Crop Science2019,4,2:0
15Enhanced magnetic anisotropy and high hole mobility in magnetic semiconductor Ga_(1-x-y)Fe_(x)Ni_(y)Sb显示文摘(Ga,Fe)Sb is a promising magnetic semiconductor(MS)for spintronic applications because its Curie temperature(T_(C))is above 300 K when the Fe concentration is higher than 20%.However,the anisotropy constant Ku of(Ga,Fe)Sb is below 7.6×10^(3)erg/cm^(3)when Fe concentration is lower than 30%,which is one order of magnitude lower than that of(Ga,Mn)As.To address this issue,we grew Ga_(1-x-y)Fe_(x)Ni_(y)Sb films with almost the same x(≈24%)and different y to characterize their magnetic and electrical transport properties.We found that the magnetic anisotropy of Ga_(0.76-y)Fe_(0.24)Ni_(y)Sb can be enhanced by increasing y,in which Ku is negligible at y=1.7%but increases to 3.8×10^(5)erg/cm^(3)at y=6.1%(T_(C)=354 K).In addition,the hole mobility(μ)of Ga_(1-x-y)Fe_(x)Ni_(y)Sb reaches 31.3 cm^(2)/(V∙s)at x=23.7%,y=1.7%(T_(C)=319 K),which is much higher than the mobility of Ga_(1-x)Fe_(x)Sb at x=25.2%(μ=6.2 cm^(2)/(V∙s)).Our results provide useful information for enhancing the magnetic anisotropy and hole mobility of(Ga,Fe)Sb by using Ni co-doping.Zhi Deng Hailong Wang Qiqi Wei Lei Liu Hongli Sun Dong Pan Dahai Wei Jianhua Zhao 2024Journal of Semiconductors2024,45,1:0
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