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EPEC

  • 网络致病性大肠埃希菌;致病性大肠杆菌;肠致病性大肠杆菌;就业准证资格证书;肠致病型大肠埃希菌
EPECEPEC
  1. Study on the Method to Isolate EPEC in the Environmental Samples

    外环境标本中检索致病性大肠菌方法的研究

  2. Conclusion : We should pay more attention to infant diarrhea which is caused by EPEC .

    结论:致病性大肠杆菌引起的婴幼儿腹泻应得到足够重视。

  3. Study on a food poisoning of human and cat caused by enteropathogenic E coli , EPEC

    由致病性大肠埃希氏菌引起人猫食物中毒的报告

  4. Typical and atypical EPEC also differ in genetic characteristics , serotypes , and virulence properties .

    aEPEC和tEPEC在遗传特征,血清型与毒力的特性也各不相同。

  5. Conclusion A simple , rapid , sensitive and specific PCR method can be established to detect EPEC in meat and meat product .

    结论建立了可检测肉及肉制品中EPEC的快速、敏感、特异PCR方法。

  6. Detected rate of Shigella EPEC and Vibrio were 10.9 % , 6.25,6.03 % , respectively .

    其次为志贺氏菌、EPEC和弧菌,检出率分别为10.9%、6.25%和6.03%;

  7. Detection of EPEC Adherence to Endotheliocyte from Murine Gut by ONPG Method

    酶活性测定法检测致病性大肠杆菌对小鼠肠上皮细胞的粘附

  8. At last with the EPEC controller made in Finland , an experiment platform of close-loop velocity control of hydraulic motor is built .

    最后运用芬兰EPEC的控制器搭建了液压马达速度控制平台,实现了CAN总线通讯,并对设计的模糊控制器进行了实验。

  9. Competitive inhibition of adherence of EPEC and ETEC to intestinal epithelial cells by human bifidobacterial strains

    双歧杆菌对EPEC和ETEC粘附的竞争抑制作用

  10. Transmembrane Cascade in Host Cells During EPEC Adhension

    肠致病性大肠杆菌感染靶细胞过程中的跨膜信息传递

  11. Biochemical characterization indicated this isolate was Escherichia coli , not agglutinating with typical EPEC antisera available .

    结果该菌株生化表现符合大肠埃希氏菌特征;现有的典型的EPEC血清型不能凝集;

  12. 48 examples were EPEC ( 19.1 % );

    致病大肠杆菌48例(19.1%);

  13. In practice we apply product of EPEC , realize real-time data display , parameter set , failure diagnosis and local and long-distance communication on intelligent road roller .

    在样机上试验表明,该软件实现了智能压路机的实时数据显示、参数设定,故障诊断和远程通讯的功能。

  14. This equilibrium model can be categorized as an EPEC ( equilibrium problems with equilibrium constraints ) problem and be solved by a nonlinear complementarity method .

    该均衡问题是一个具有均衡约束的均衡问题(EPEC),可采用非线性互补方法求解。

  15. Study on the Prevalence of Yersinia Enterocolitica HPI among ETEC , EPEC and EAggEC

    小肠结肠炎耶尔森菌强毒力岛(HPI)在ETEC、EPEC和EAggEC中的分布性研究

  16. Aiming at SPT-X-2025 display of EPEC on VC + + platform , key technology of intelligent rollers ' interactive interface has been researched and realized .

    针对EPEC公司的SPT-X-2025显示器,在VC++的平台上,研究和实现了智能压路机人机交互界面的几个关键技术。

  17. Competitive inhibition of adherence of ETEC and EPEC to intestinal epithelial cells by purified adhesin of bifidobacterium adolescentis 1027

    双歧杆菌纯化黏附素对ETEC和EPEC黏附肠上皮细胞的竞争抑制作用

  18. Effects of breast milk and some infant foods on the adhesion of entero-pathogenic Escherichia coli ( EPEC ) to Hela cells and intestinal mucosa

    母乳及婴儿食品对致病性大肠杆菌粘附的影响

  19. [ Objective ] To study the method for isolation , identification and serological test of pathogenic Escherichia coli ( EPEC ) of 0111 : K58 which caused food poisoning .

    [目的]探讨引起食物中毒的致病性大肠埃希菌(EPEC)O111:K58的分离鉴定及血清学试验。

  20. In this study , the survival situation of enteropathogenic Escherichia coli EPEC O114 : K90 in different milk-based products stored at different temperatures was explored .

    探讨肠致病性大肠杆菌EPECO114:K90在不同温度和乳基质环境中的存活情况。

  21. Typical EPEC , a leading cause of infantile diarrhea in developing countries , is rare in industrialized countries , where atypical EPEC seems to be a more important cause of diarrhea .

    tEPEC是发展中国家婴儿发生腹泻的一个首要原因,而发达国家则比较少,似乎aEPEC是更重要的腹泻因素。

  22. Enteropathogenic Escherichia coli ( EPEC ), a fecal-mouth transmission pathogen leads multiple infections in human beings , including severe diarrhea in infants , enteric and urinary tract infections in adults .

    肠致病性大肠杆菌(EPEC),是一种以粪-口途径传播的,能导致人类多系统感染的肠道致病菌。尤其是引起婴幼儿的腹泻,成人的肠道及泌尿系统感染。

  23. The detection rate of rotavirus , pathogenic Escherichia coil ( EPEC ), Shigella dysenteriae and Salmonella was 30.2 % , 8.4 % , 7.2 % and 1.3 % respectively .

    轮状病毒、EPEC、痢疾杆菌及沙门菌的检出率依次为30.2%,8.4%、7.2%与1.3%;

  24. This indicates that eaeA gene is not limited to EPEC and EHEC , that the eaeA harbouring E. coli are heterogeneous with respect to their virulence determinants .

    提示eaeA基因的分布不仅限于EPEC和EHEC,而且携带eaeA基因菌株含有多种毒力决定因子。

  25. [ Results ] Pathogenic Escherichia coli ( EPEC ) of 0111 : K58 was isolated and identified from 3 anal swab samples and 1 feces sample collected from patients stricken by food poisoning .

    [结果]从食物中毒患者的3份肛拭和1份粪便均检出并确证为致病性大肠杆菌EPEC(O111:K58);

  26. Software design of the control system consists of two parts , one is program design for controllers , which adopts dedicated controller software from EPEC , the other is display controller programming with C language , and the two programs share common data through an interface program .

    控制系统软件设计包括两大部分,一部分是控制器程序设计,采用EPEC控制器专用软件编制,第二部分是显示控制器的编程,采用C语言编制,两部分程序通过接口程序实现数据共享。

  27. Objective To investigate the effect of breast milk and some other kinds of infant foods on the adhesion of EPEC to Hela cells and intestinal mucosa so as to understand the possible protective mechanism of breast-feeding in the intestine of infants .

    目的比较母乳、人工婴儿食品及其喂养的婴儿粪便对致病性大肠杆菌(EPEC)粘附上皮细胞或肠粘膜的影响,以进一步阐明母乳喂养对婴儿肠道的保护作用。

  28. It was concluded that the EPEC possess the eaeA gene were a main pathogen of diarrhea in rabbit farms in Shandong province and the detection of LEE PAI should be a main method for EPEC molecular diagnosis and epidemiological investigation .

    LEE毒力岛的检测能够作为兔肠致病性大肠杆菌REPEC的诊断和流行病学调查的主要手段。

  29. In the hardware design , two projects of hardware based on the CAN-bus were brought and compared . Considering the requirement , the EPEC controller was adopted in the paper . The circuit of main controllers was designed and the other parts of an apparatus were chosen .

    在硬件设计方面,给出了两种基于CAN总线技术的控制系统硬件方案并进行了对比分析,结合需求确定采用基于EPEC控制器的方案,完成了主控制器电路设计和其它器件的选配。

  30. The incident of food poisoning was caused by pathogenic Escherichia coli ( EPEC ) of 0111 : K58 . [ Conclusion ] Samples of food poisoning caused by pathogenic Escherichia coli ( EPEC ) of 0111 : K58 can be tested and identified quickly .

    并确定导致食物中毒的病因是由致病性大肠肝菌EPEC(O111:K58)引起。[结论]致病性大肠埃希菌引起的食物中毒可达到快速检验和鉴定。