The Experts below are selected from a list of 102369 Experts worldwide ranked by ideXlab platform

Kezheng Huang - One of the best experts on this subject based on the ideXlab platform.

  • Product Genetic Engineering
    Advances in Design, 2020
    Co-Authors: Kezheng Huang, Hongwu Chen, Yandong Wang, Zhengjun Song, Liangmin Lv
    Abstract:

    Creativity and high efficiency are still the essential requirements for product design with wide impact on current design research and Engineering practice. Design automation aims to increase the efficiency and quality of design work. Creativity is receiving more attention but with essentially little progress so far, especially in automatic design. The rapid and automatic growth of organisms and the great potential for production of new species that Genetic Engineering shows are the two main reasons that lead to our work. A new design environment - Product Growth Design platform (DARFAD) - has been developed, new concepts such as Product Genetic Engineering (PGE) are proposed, a theoretical PGA framework is discussed, and an example of product design is introduced.

  • Mechanical Product Growth Design Based Product Genetic Engineering
    16th International Conference on Artificial Reality and Telexistence--Workshops (ICAT'06), 2006
    Co-Authors: Hongwu Chen, Shi-ming Wang, Kezheng Huang
    Abstract:

    Similar relations between organism and product are proposed firstly so that growth design is introduced. Then product gene's new concept and corresponding data structure based on function surface in growth design are put forward. Product gene can be defined as an integrated set of information specifying product's structures and functions and its mechanisms to 'grow' automatically. Furthermore, the work flow of product Genetic Engineering and the expression method are proposed. Finally, an example of vise fixture based on product Genetic Engineering with the application of soft system is introduced. The conclusion can be drawn that product Genetic Engineering is promising for new generation of CAD systems with both high efficiency and innovative ability.

Hongwu Chen - One of the best experts on this subject based on the ideXlab platform.

  • Product Genetic Engineering
    Advances in Design, 2020
    Co-Authors: Kezheng Huang, Hongwu Chen, Yandong Wang, Zhengjun Song, Liangmin Lv
    Abstract:

    Creativity and high efficiency are still the essential requirements for product design with wide impact on current design research and Engineering practice. Design automation aims to increase the efficiency and quality of design work. Creativity is receiving more attention but with essentially little progress so far, especially in automatic design. The rapid and automatic growth of organisms and the great potential for production of new species that Genetic Engineering shows are the two main reasons that lead to our work. A new design environment - Product Growth Design platform (DARFAD) - has been developed, new concepts such as Product Genetic Engineering (PGE) are proposed, a theoretical PGA framework is discussed, and an example of product design is introduced.

  • Mechanical Product Growth Design Based Product Genetic Engineering
    16th International Conference on Artificial Reality and Telexistence--Workshops (ICAT'06), 2006
    Co-Authors: Hongwu Chen, Shi-ming Wang, Kezheng Huang
    Abstract:

    Similar relations between organism and product are proposed firstly so that growth design is introduced. Then product gene's new concept and corresponding data structure based on function surface in growth design are put forward. Product gene can be defined as an integrated set of information specifying product's structures and functions and its mechanisms to 'grow' automatically. Furthermore, the work flow of product Genetic Engineering and the expression method are proposed. Finally, an example of vise fixture based on product Genetic Engineering with the application of soft system is introduced. The conclusion can be drawn that product Genetic Engineering is promising for new generation of CAD systems with both high efficiency and innovative ability.

Shi-ming Wang - One of the best experts on this subject based on the ideXlab platform.

  • Mechanical Product Growth Design Based Product Genetic Engineering
    16th International Conference on Artificial Reality and Telexistence--Workshops (ICAT'06), 2006
    Co-Authors: Hongwu Chen, Shi-ming Wang, Kezheng Huang
    Abstract:

    Similar relations between organism and product are proposed firstly so that growth design is introduced. Then product gene's new concept and corresponding data structure based on function surface in growth design are put forward. Product gene can be defined as an integrated set of information specifying product's structures and functions and its mechanisms to 'grow' automatically. Furthermore, the work flow of product Genetic Engineering and the expression method are proposed. Finally, an example of vise fixture based on product Genetic Engineering with the application of soft system is introduced. The conclusion can be drawn that product Genetic Engineering is promising for new generation of CAD systems with both high efficiency and innovative ability.

Sun Y - One of the best experts on this subject based on the ideXlab platform.

Se Won Park - One of the best experts on this subject based on the ideXlab platform.

  • Plastid Genetic Engineering in Solanaceae
    Protoplasma, 2012
    Co-Authors: Jelli Venkatesh, Se Won Park
    Abstract:

    Plastid Genetic Engineering has come of age, becoming today an attractive alternative approach for the expression of foreign genes, as it offers several advantages over nuclear transformants. Significant progress has been made in plastid Genetic Engineering in tobacco and other Solanaceae plants, through the use of improved regeneration procedures and transformation vectors with efficient promoters and untranslated regions. Many genes encoding for industrially important proteins and vaccines, as well as genes conferring important agronomic traits, have been stably integrated and expressed in the plastid genome. Despite these advances, it remains a challenge to achieve marked levels of plastid transgene expression in non-green tissues. In this review, we summarize the basic requirements of plastid Genetic Engineering and discuss the current status, limitations, and the potential of plastid transformation for expanding future studies relating to Solanaceae plants.