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| 1 | A canonical piecewise linear representation 显示文摘 | Chua L O Deng Anchang | 1988 | IEEE Trans Circuits Syst1988,35,1: | 1 |
| 2 | Validated LC/MS/MS assay for curcumin and tetrahydrocurcumin in rat plasma and application to pharmacokinetic study of phospholipid complex of curcumin显示文摘 | Anchang Liu Hongxiang Lou Lixia Zhao Peihong Fan | 2005 | Journal of Pharmaceutical and Biomedical Analysis2005,,3: | 1 |
| 3 | Enhancement of oral bioavailability of puerarin by polybutylcyanoacrylate nanoparticles 显示文摘 | Lixia Z Anchang L Min S | 2011 | J Nanomaterials2011,6,: | 1 |
| 4 | Anti-inflammatory and analgesic properties of the stem bark extracts of Erythrophleum suaveolens (Caesalpiniaceae), Guillemin & Perrottet显示文摘 | A.B Dongmo A Kamanyi M.S Anchang B Chungag-Anye Nkeh D Njamen T.B Nguelefack T Nole H Wagner | 2001 | Journal of Ethnopharmacology2001,,2: | 1 |
| 5 | Anli- inflarematory and analgesic properties of Ihe stembark extracts ~f erythrophleum suaveolens(Caesalpaceae)显示文摘 | Dongmo A B Kamanyi A Anchang M S el al | 2001 | J Ethnophar-macol2001,77,23: | 1 |
| 6 | Validated LC/MS/MS assay for eurcumin and tetrahydrocurcumin in rat plasma and application to pharmacokinetic study of phospholipid complex of curcumin显示文摘 | Anchang Liu Hongxiang Lou Lixia Zhao | 2006 | Journal of Pharmaceutical and Biomedical Analysis2006,40,: | 1 |
| 7 | Anti - inflammatory and analgesic properties of the stem bark extracts of Erythrophleum suaveolens (Caesalpiniaceae), Guillemin & Perrottet显示文摘 | Dongmo AB Kamanyi A Anchang MS | 2001 | J Ethnopharmacol2001,77,23: | 1 |
| 8 | Studies on Plasmo- dium falciparum isotypic antibodies and numbers of IL 4 and IFN gamma secreting cells in paired maternal cord blood from South West Cameroon显示文摘 | Achidi EA Anchang JK Minang JT | 2005 | Int J Infect Dis2005,9,: | 1 |
| 9 | ValidatedLC/MS/MS assay for curcumin and tetrahydrocurcumin in rat plasma and application to pharmacokinetic study of phospho- lipid complex of curcumin显示文摘 | Liu AnChang Lou HongXiang Zhao LiXia | 2006 | J Pharm Biomed Anal2006,40,3: | 1 |
| 10 | Tumor microenvironment-dependent epigenetic imprinting in the vasculature predicts colon cancer outcome显示文摘Dear Editor,Tumor microenvironment(TME)-dependent stromal cell plasticity governs tumor development and therapy response.Tumor endothelial cells(TECs)are a major cellular component in this context[1].In colorectal carcinoma(CRC),the stromal cell-dependent impact of the TME is illustrated by an improved survival depending on an interferon(IFN)-γ-dominated Th1-like TME associated with high T-cell density[2]and suppressed angiogenesis[3,4].Cellular transcriptional memory is reported in cell lines after repeated exposure to IFN-γin vitro[5],suggesting that a Th1-like TME may also exert stable imprinting effects in vivo.Here,we investigated whether TME-dependent transcriptional imprinting in TECs from CRC patients can be exploited to retrieve clinically relevant signatures predicting outcomes. | Elisabeth Naschberger Maximilian Fuchs Nicholas Dickel Meik Kunz Bernt Popp Charles Gwellem Anchang Richard Demmler Yanmin Lyu Steffen Uebe Arif Bülent Ekici Carol Immanuel Geppert Arndt Hartmann Christian Flierl Katja Petter Tobias Gass Simon Völkl Michael Scharl Andreas Ramming Claudia Günther Susanne Merkel Vera Simone Schellerer Michael Stürzl | 2023 | Cancer Communications2023,43,11: | 0 |
| 11 | Strain tuned efficient heterostructure photoelectrodes显示文摘van der Waals (vdWs) heterostructures based on two-dimensional (2D) materials have become a promising candidate for photoelectrochemical (PEC) catalyst not only because of the freedom in materials design that enable the band-offset construction and facilitate the charge separation. They also provide a platform for the study of various of interface effect in PEC. Here, we report a new kind of mixed-dimensional vdWs heterostructure photoelectrode and investigate the strain enhanced PEC performance at vdWs interfaces. Our heterostructures are composed of 2D n-type MoS_(2) nanosheets and three-dimensional (3D) p-type Cu_(2)O nanorod arrays (NRAs), where Cu_(2)O NRAs introduce periodically strain in the p-n junction interface. We find a promotion of the HER catalytic activities in heterostructure based PEC photoelectrodes using in-situ measurement techniques including the scanning electrochemical cell microscopy and various local spectrum probe measurements. This is attributed to the efficient charge separation at the strained heterointerface. Our results demonstrate an interesting venue for understanding the local interface effects with high spatial resolution, and shed light on design and developing high-efficiency photoelectrodes. 1L MoS_(2)/Cu_(2)O vdWs heterostructure photocathodes were prepared by nanoindentation technology. The effects of strain on promoting charge separation at the heterointerface were verified by the enhanced performances in PEC hydrogen evolution reaction of vdWs heterostructure through scanning electrochemical cell microscopy technique and various local spectrum probe measurements. | Haihong Zheng Mingyang Li Jinsong Chen Anchang Quan Kaihang Ye Hang Ren Sheng Hu Yang Cao | 2022 | Chinese Chemical Letters2022,33,3: | 0 |
| 12 | Nanofibril Organization in Silk Fiber as Inspiration for Ductile and Damage-Tolerant Fiber Design显示文摘Ductile and damage-tolerant fibers(DDTFs)are desired in aerospace engineering,mechanical engineering,and biomedical engineering because of their ability to prevent the catastrophic sudden structural/mechanical failure.However,in practice,design and fabrication of DDTFs remain a major challenge due to finite fiber size and limited processing techniques.In this regard,animal silks can provide inspirations.They are hierarchically structured protein fibers with an elegant trade-off of mechanical strength,extensibility and damage tolerance,making them one of the toughest materials known.In this article,we confirmed that nanofibril organization could improve the ductility and damage-tolerance of silk fibers through restricted fibril shearing,controlled slippage and cleavage.Inspired by these strategies,we further established a rational strategy to produce polyamide DDTFs by combining electrospinning and yarn-spinning techniques.The resultant polymeric DDTFs show a silk-like fracture resistance behavior,indicating potential applications in smart textile,biomedicine,and mechanical engineering. | Shihui Lin Chao Ye Wenwen Zhang Anchang Xu Shixian Chen Jing Ren Shengjie Ling | 2019 | Advanced Fiber Materials2019,1,3: | 0 |
| 13 | High-throughput estimation of plant height and above-ground biomass of cotton using digital image analysis and Canopeo显示文摘Plant height and above-ground biomass are important growth parameters that affect crop yield.Efficient and non-destructive technologies of crop phenotypic monitoring play crucial roles in intelligent farmland management.However,the feasibility of using these technologies to estimate cotton plant height and above-ground biomass has not been determined.This study proposed a low cost and high-throughput imaging method combined with Canopeo to extract the percentages of green color from high-definition digital images and establish a model to estimate the cotton plant height and above-ground biomass.The plant height and above-ground biomass field trials were conducted at two levels of irrigation(soil water content 70%±5% and 40%-45%,respectively)using 80 cotton genotypes.The linear fitting performed well across the different cotton genotypes(PH,R^(2)=0.9829;RMSE=2.4 cm;NRMSE=11%and AGB,R^(2)=0.9609;RMSE=0.6 g/plant;and NRMSE=5%),and two levels of irrigation(PH,R^(2)=0.9604;RMSE=2.15 cm;NRMSE=6%and AGB,R^(2)=0.9650;RMSE=4.51 g/plant;and NRMSE=17%).All reached a higher fitting degree.Additionally,the most comprehensive model to estimate the cotton plant height and above-ground biomass(Y=0.4832*X+11.04;Y=0.4621*X-0.3591)was determined using a simple linear regression modeling method.The percentages of green color positively correlated with plant height and above-ground biomass,and each model exhibited higher accuracy(R2≥0.8392,RMSE≤0.0158,NRMSE≤0.06%).Combining a high-definition digital camera with Canopeo enables the prediction of crop growth in the field.The simple linear regression modeling method and the most comprehensive model enable the rapid estimation of the cotton plant height and above-ground biomass.This method can also be used as a baseline to measure other important crop phenotypes. | Congcong Guo Liantao Liu Ke Zhang Hongchun Sun Yongjiang Zhang Anchang Li Zhiying Bai Hezhong Dong Cundong Li | 2022 | Technology in Agronomy2022,2,1: | 0 |