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19篇 您的检索式:作者名="Yahai"
    题名 作者 年代 出处 被引量
1Succession of bacterial populations during plant residue decomposition in rice field soil显示文摘Junpeng Rui JP Yahai Lu 0,,14:1
2Dynamics of dissolved organic carbon and methane emissions in a flooded rice soil显示文摘Yahai Lu Reiner Wassmann Heinz - Ulrich Neue 2000Soil Science Society of America Journal2000,64,:1
3Structure and activity of bacterial community inhabiring rice roots and the rhizosphere显示文摘Yahai Lu Dirk Rosencrantz Werner Liesack Ralf Conrad 2006Environmental Microbiology2006,8,8:1
4Linking microbial community dynamics to rhizosphere carbon flow in a wetland rice soil显示文摘Yahai Lu Jun Murase Akira Watanabe Atsuko Sugimoto Makoto Kimura 2004FEMS Microbiology Ecology2004,,2:1
5Community composition of ammonia-oxidizing bacteria and archaea in rice field soil as affected by nitrogen fertilization显示文摘Yanan Wang Xiubin Ke Liqin Wu Yahai Lu 2008Systematic and Applied Microbiology2008,,1:1
6Community composition of ammonia-oxidizing bacteria and archaea in rice field soil as affected by nitrogen fertilization显示文摘Yanan Wang Xiubin Ke Liqin Wu Yahai Lu 2008Systematic and Applied Microbiology2008,,:1
7Irradiated meniscal allotransplants of rabbits:study of the mechanical properties at six months postoperation显示文摘Yahai I Zukor D 1994Acta Orthop Belg1994,60,2:1
8The genetic and molecular pathogens is ofNFl and NIF2显示文摘Yahay KH 2006Senm in Ped iator NeuroU2006,13,1:1
9Effective typestate verification in the presence of aliasing显示文摘Fink S J Yahay E Dor N 2008ACM Transaction on Software Engineering and Methodology(TOSEM)2008,17,2:1
10Cervical ectopic pregnancy显示文摘Sheiner E Yanai I Yahai D 1999Harefuah1999,137,11:1
11Linking microbial community dynamics to rhizosphere carbon flow in a wetland rice soil 显示文摘Lu Yahai Murase J Watanabe A 2004FEMS Microbiology Ecology2004,48,2:1
12Carbon dynamics of rhizodeposits,root-and shoot-residues in a rice soil显示文摘Yahai L Akira W Kimura M 2003Soil Biology & Biochemistry2003,35,:1
13The genetic and molecular pathogenesis of NF1 and NF2显示文摘Yahay KH 0,,01:1
14Syntrophic Oxidation of Propionate in Rice Field Soil at 15 and 30°C under Methanogenic Conditions显示文摘Yanlu Gan Qiongfen Qiu Pengfei Liu Junpeng Rui Yahai Lu 2012Applied and Environmental Microbiology2012,,14:1
15The genetic and molecular pathogenesis of NF1 and NF2 显示文摘Yahay KH 2006Senmin Pediator Neurol2006,13,:1
16Linking microbial community dynamics to rhizosphere carbon flow in a wetland rice soil显示文摘Yahai Lu Jun Murase Akira Watanabe Atsuko Sugimoto Makoto Kimura 2004FEMS Microbiology Ecology2004,,2:1
17Biogeochemistry of methanogenesis with a specific emphasis on the mineral-facilitating effects显示文摘The Earth surface contains various oxic and anoxic environments. The later include natural wetlands,river and lake sediments, paddy field soils and landfills. In the last few decades, the biogeochemical cycle of carbon in anoxic environments, which leads to the production and emission of methane, a potent greenhouse gas in the atmosphere, has drawn great attentions from both scientific and public sectors. New organisms and mechanisms involved in methanogenesis and carbon cycling have been uncovered. Interspecies electron transfer is considered as a crucial step in methanogenesis in anoxic environments.Electron-carrying mediators, like H_2 and formate, are known to play the key role in electron transfer. Recently, it has been found that in addition to the conventional electron transfer via chemical mediators, direct interspecies electron transfer(DIET) can occur. In this Review, we describe the ecology and biogeochemistry of methanogenesis and highlight the effect of microbe-mineral interaction on microbial syntrophy. Recent advances in the study of DIET may pave the way towards a mechanistic understanding of methanogenesis and the influence of microbe-mineral interaction on this process.Yahai Lu Wei Zhang 2017Acta Geochimica2017,36,3:0
18Prevalence of Achilles tendinopathy in physical exercise:A systematic review and meta-analysis显示文摘This comprehensive systematic review and meta-analysis assessed the prevalence of Achilles tendinopathy(AT)in physical exercise(PE).Specifically,we estimate the overall risk of AT in physical exercise and compare sportspecific estimates of AT risk.PubMed,Web of Science,Cochrane Library,and SPORTDiscus were searched before the 1st of October 2021.Random-effects,subgroup analysis,sensitivity analysis and meta-regressions were conducted,involving 16 publications.This meta-analysis found that the overall prevalence of AT was 0.06(95%CI,0.04–0.07).The prevalence of Achilles tendon rupture was 0.03(95%CI,0.02–0.05).Subgroup analysis showed that the prevalence of AT increased with age,the highest among the group aged over 45(0.08;95%CI,0.04–0.11),and the lowest among the group under 18 years old(0.02;95%CI,0.01–0.03).The gymnastics and ball games had the highest prevalence of AT,at(0.17;95%CI,0.14–0.20)and(0.06;95%CI,0.02–0.11),respectively.The prevalence of AT in athletes(0.06;95%CI,0.04–0.08)was higher than that of amateur exercisers(0.04;95%CI,0.02–0.06)and there was no difference in the prevalence of AT between males and females.There are differences in the prevalence of AT in different ages,sport events and characteristics of participants.This systematic review and meta-analysis suggested that it was necessary to pay more attention to AT in people who were older or engaged in gymnastics.Yahai Wang Huanhuan Zhou Zhibin Nie Sidong Cui 2022Sports Medicine and Health Science2022,4,3:0
19Fabrication and Characterization of Willemite Scaffolds Using Corn Stalk as a Novel Bio Template for Bone Tissue Engineering Applications显示文摘In this paper,we used Corn Stalk(CS)as a renewable and economical bio template to fabricate willemite scaffolds with the potential application in skull bone repair.CS was used as a sacrificial template to synthesize the scaffolds.Willemite scaffolds with the chemical formula of Zn2SiO4 and pore size in the range of 3 to 10µm could be successfully synthesized by soaking CS in the willemite solution for 24 h and sintering at 950°C for 5 h.The porosity of the samples was controlled by the soaking time(between 12 and 48 h)in the willemite solution from 5 to 35%,respectively.The properties of these scaffolds showed a good approximation with cranial bone tissue.In addition,cytotoxicity assays(MTT)were performed on Human Bone Marrow Stromal cells(HBMSc)and A172 human glioblastoma cell lines by direct and indirect culture methods to estimate their toxicity for bone and nerve cells,respectively.Alkaline Phosphatase(ALP)activity and DAPI/Phalloidin cell staining were also performed to investigate the efficiency of the scaffolds for bone tissue engineering applications.The results showed that the scaffolds had good biocompatibility with both HBMSC and A172 cells,noticeable improvement on ALP activity,and great apatite formation ability in Simulated Body Fluid(SBF).All the evidence ascertained that willemite scaffolds made by corn stalks could be a useful candidate for bone tissue engineering applications.Zahra Yahay Seyed Mehdi Mirhadi Fariborz Tavangarian 2023Journal of Bionic Engineering2023,20,1:0
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