人工克隆

  • 网络man-made clones
人工克隆人工克隆
  1. 布劳德援引了人工克隆的多莉羊,他指出,克隆技术已被证明缺乏安全性,因此,没有理由可以假设实验室的人造精子会比较安全。

    Citing Dolly the Sheep , Braude points out that cloning has been shown to be unsafe , and there 's no reason to suppose lab-created sperm will be any safer .

  2. 本文尝试用人工免疫克隆算法来改进PSO算法,提出了一种用免疫记忆多克隆选择算法(IMMCSA)改进PSO的优化方法。

    For improving the PSO algorithm , the artificial immune clonal algorithm is used , and put forward an optimization method of PSO with IMMCSA ( Immune Memory and Multi Clonal Selection Algorithm ) .

  3. 利用自然突变或人工突变克隆基因,进而研究基因的生物学功能已经成为功能基因组学的重要内容。

    Using natural mutants or artificial mutants to clone gene , and then to study biological function of the gene has already become important .

  4. 人工免疫克隆选择算法是受生物免疫系统启示而设计的新型算法,它已经成为智能计算大家庭的新成员。

    Artificial Immune Clone Selection Algorithm is a novel algorithm which was inspired by the biological immune system . And it has become a new member of the family of intelligent algorithms .

  5. 本文从研究人工免疫克隆选择算法出发,以船舶航向自适应控制为目的,研究了免疫克隆选择全局优化算法及其在船舶航向自适应控制中的应用。

    Aiming at the research of adaptive control for ship steering , this dissertation examines the Clone Selection Algorithms for global optimization and applications to the adaptive control for ship steering . 1 .

  6. 其次,对近年来比较流行的人工免疫克隆选择算法进行了研究,在此基础上,提出了采用人工免疫克隆选择算法对城市道路交通信号控制系统进行优化的方案。

    Then , researched on the artificial immune clone selection algorithms which were popular at present . And a scheme of applying artificial clone selection algorithms to optimize the urban road traffic signal control systems was proposed based on the research .

  7. 人肥胖(obese)基因的人工合成及克隆

    Artificial synthesis and cloning of human obese gene

  8. 抗菌肽Shiva-1基因的人工合成与克隆

    Chemical Synthesis and Cloning of a Gene for Antibacterial Peptides Shiva 1

  9. 转基因动物技术与YAC(酵母人工染色体)克隆及定位突变技术的结合可望阐述大片段基因(簇)中不同部位对发育阶段特异性表达的调控规律。

    Moreover , yeast artificial chromosome ( YAC ) cloning and site-specific mutation techniques can be combined with transgenic technique to investigate the developmental gene regulation of large genes ( clusters ) with mutations in different sites .

  10. 人工免疫动态克隆调节策略在分馏装置塔板效率确定中的应用

    Application of Dynamic Clonal Adjustment Strategy for Determination of Distillation Murphree Efficiencies

  11. 人工免疫中克隆选择算法的改进

    Improvement of Clonal Selection Algorithm in Artificial Immune System

  12. 我们的随着技术的发展不断膨胀的梦想,如人工智能、克隆、纳米技术等等,都更多地和生物学相关而并非是宇宙学。

    Our technology ? fuelled dreams , of artificial intelligence , cloning , nanotechnology and so on , have more to do with biology than cosmology .

  13. 长片段小麦细菌人工染色体DNA亚克隆文库的构建

    Construction of Subclone Library for Wheat Megabase BAC DNA

  14. 把树突状细胞算法和传统人工免疫系统的克隆选择算法有机地组织在一起,形成一个完整的基于二代人工免疫系统带训练的树突状细胞算法(T-DCA),进一步提高垃圾邮件过滤的准确率。

    Put dendritic cell algorithm and the clone selection algorithm based on the traditional artificial immune system together to form a complete second-generation artificial immune system-based dendritic cell algorithm with training ( T-DCA ), to further improve spam filter accuracy .

  15. 求解0-1背包问题的人工免疫抗体修正克隆算法

    Artificial immune antibody adjusting clonal algorithm for the 0-1 knapsack problem

  16. 展青霉素人工抗原及多克隆抗体的研制

    Preparation of Artificial Antigen and Polyclonal Antibody of Mycotoxin Patulin

  17. 大鲵的野外生长观察人工无性系的克隆生长构型相对于野生的密集型特征为有游击型。

    The clonal growth pattern is guerilla relatively to the wild plant .

  18. 牛生长激素基因的人工合成、重组克隆及高效表达

    Synthesis , Cloning and High-level Expression of the Bovine Growth Hormone Cenes

  19. 本课题包括两个部分:一是对人类杯状病毒衣壳基因序列进行人工合成、然后克隆构建原核表达载体,并表达。

    The first part is the synthesis , cloning and prokaryotic expression of the coat gene of human caliciviruses ( HuCV ) .

  20. 目的制备壬基酚人工抗原和多克隆抗体,为采用免疫学方法检测壬基酚做准备。

    Objective To prepare man-made antigen and polyclonal antibody of nonylphenol ( NP ) and to make preparation for the immunoenzyme assay to detect nonylphenol .

  21. 将所提出的遗传算法结合人工免疫算法的克隆机制,增强了算法在单目标和多目标情况下对传感器位置进行全局优化的能力。

    Combining with the clone mechanism in artificial immunity system ( AIS ), the methods aiming at optimizing the placement of sensors are developed which can optimize the placement of sensors globally for both single-objective and multi-objective optimization .