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雌性恒河猴月经周期异常与肠道微生物的相关性研究
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作者 谢明学 赵宸 +7 位作者 颜宇宸 彭正华 李娇春 谭银珍 王学付 张朝武 杨武 赵远 《中国现代医生》 2024年第17期1-6,12,共7页
目的以健康雌性育龄期恒河猴为研究对象,采用16S rRNA宏基因组方法探讨雌性恒河猴月经周期异常与肠道微生物组成的相关性。方法将27只健康雌性恒河猴分为月经规律和不规律两组,分别采集两组实验猴卵泡期(follicular phase,FP)、排卵期(o... 目的以健康雌性育龄期恒河猴为研究对象,采用16S rRNA宏基因组方法探讨雌性恒河猴月经周期异常与肠道微生物组成的相关性。方法将27只健康雌性恒河猴分为月经规律和不规律两组,分别采集两组实验猴卵泡期(follicular phase,FP)、排卵期(ovulatoryperiod,OP)和黄体期(lutealphase,LP)粪便样品,对16SrRNA基因的V3~V4高变区测序,分析比较两组实验猴月经周期肠道菌群结构及多样性。结果在门水平,规律组和不规律组猕猴在卵泡期、黄体期和排卵期3个不同时期均以厚壁菌门(Firmicutes)、变形菌门(Proteobacteria)和拟杆菌门(Bacteroidetes)为主要菌群,占比总和超过98%;在属水平以普雷沃菌属_9(Prevotella_9)、瘤胃球菌(Ruminococcaceae_UCG-002)、乳杆菌属(Lactobacillus)、普雷沃菌属_2(Prevotella_2)、考拉杆菌属(Phascolarctobacterium)、瘤胃球菌_UCG-005(Ruminococcaceae_UCG-005)、链球菌属(Streptococcus)、布劳特菌属(Blautia)、普雷沃菌属_NK3B31(Prevotellaceae_NK3B31_group)、理研菌属(Rikenellaceae_RC9_gut_group)为主;在黄体期规律组厚壁菌门(Firmicutes)占比高于不规律组,而拟杆菌门(Bacteroidetes)刚好相反。规律组3个阶段,螺旋体门(Spirochaetes)均高于不规律组(P<0.05)。结论月经周期规律与月经周期不规律的两组猕猴肠道微生物组成存在一定差异,为研究肠道细菌与排卵障碍提供一定的参考依据。 展开更多
关键词 恒河猴 月经周期 肠道微生物 宏基因组
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Theory and Practice of Oxide Inclusion Composition and Morphology Control in Spring Steel Production 被引量:5
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作者 XUEZheng-liang LIZheng-bang +3 位作者 ZHANGJia-wen yangwu GANChao-fu WANGYu 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2003年第2期38-44,共7页
In order to control the composition,morphology and size distribution of oxide inclusions in spring steel,the relationship between the content or activity of aluminum and calcium in molten steel and compositions of oxi... In order to control the composition,morphology and size distribution of oxide inclusions in spring steel,the relationship between the content or activity of aluminum and calcium in molten steel and compositions of oxide inclusion precipitated at different temperatures was determined based on thermodynamic equilibrium for spring steel 60Si2 MnA,and has been verified by practice.The size distribution of non-metallic inclusions electrolytically extracted from specimens of hot rolled spring steel was determined by image analyzer.The results show that there are a great deal of large inclusions in spring steel produced by the conventional process,and the quantity and the size of large inclusions in spring steel produced by new process are largely reduced.As a result,the fatigue properties of the spring steel produced by new process are highly improved,and the ratio ofσ-1/σbis raised from 0.451 to 0.468. 展开更多
关键词 spring steel oxide inclusion inclusion composition control inclusion morpholo-gy control fatigue limit strength
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Determination of Heroin Based on Analyte Pulse Perturbation to an Oscillating Chemical Reaction 被引量:4
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作者 RENJie GAOJin-zhang +5 位作者 Suo-nan ZHAOGuo-hu yangwu LüDong-yu SUNKan-jun LIChong-yang 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第5期534-538,共5页
A new analytical method is proposed for the determination of heroin based on a sequential perturbation caused by trace amounts of heroin in the Cu(Ⅱ)-catalyzed oscillating reaction between hydrogen peroxide and sodiu... A new analytical method is proposed for the determination of heroin based on a sequential perturbation caused by trace amounts of heroin in the Cu(Ⅱ)-catalyzed oscillating reaction between hydrogen peroxide and sodium thiocyanate in an alkaline medium with the aid of a continuous-flow stirred tank reactor(CSTR). The method relies on the linear relationship between the change in oscillation period of the system and the concentration of heroin, with a detecting limit of 4.0×10^(-7) mol/L. The calibration curve fits a linear equation very well when the concentration of heroin is in the range of 2.0×10^(-6)_1.2×10^(-5) mol/L(r=0.9971). This method features good precision(RSD=0.98%). The influences of temperature, injection point, flow rate and reaction variables on the oscillation period were investigated in detail and a possible mechanism of the performance of heroin in the Cu(Ⅱ)-catalyzed oscillating reaction system is also discussed. The proposed method opens a new avenue for the determination of heroin. 展开更多
关键词 Cu(Ⅱ)-catalyzed oscillating reaction HEROIN Analyte pulse perturbation technique(APP) Mechanism Continuous-flow stirred tank reactor(CSTR).
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