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    • 4. 发明申请
    • MEMORY ACCESSING SYSTEM AND METHOD
    • 存储器访问系统和方法
    • US20080082764A1
    • 2008-04-03
    • US11538253
    • 2006-10-03
    • Yi Feng JangZhi-Jian LiangHai-Ping Liu
    • Yi Feng JangZhi-Jian LiangHai-Ping Liu
    • G06F13/00
    • G06F13/4239
    • A memory accessing system, including an internal memory, an external memory, a microprocessor and a controller, is provided. The internal memory is configured to have a program space with a first address range and a data space with a second address range, and the program space and the data space are for source codes and data storage respectively. The external memory is configured to have an external data space with a third address range for storing data, and the third address range covers the first and second address ranges. The microprocessor is configured to process the source codes and data. The controller is configured to control the access of the program space, data space and the external data space.
    • 提供了包括内部存储器,外部存储器,微处理器和控制器的存储器访问系统。 内部存储器被配置为具有具有第一地址范围的程序空间和具有第二地址范围的数据空间,并且程序空间和数据空间分别用于源代码和数据存储。 外部存储器被配置为具有用于存储数据的具有第三地址范围的外部数据空间,并且第三地址范围覆盖第一和第二地址范围。 微处理器配置为处理源代码和数据。 控制器配置为控制程序空间,数据空间和外部数据空间的访问。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR GENERATING SOUND EFFECTS INTERACTIVELY
    • 产生声音效果的方法和系统互动
    • US20070233494A1
    • 2007-10-04
    • US11691511
    • 2007-03-27
    • Liqin ShenHai Ping LiQin ShiZhiwei Shuang
    • Liqin ShenHai Ping LiQin ShiZhiwei Shuang
    • G10L13/08
    • G10H1/0091G10H2240/145G10H2250/315G10L13/033
    • The invention provides a method and system for generating sound effects interactively. The method provides a plurality of sound effect tags to a user, wherein each of the plurality of sound effects corresponds to a specific sound effect object. The sound effect object includes a seed sound representing a predefined audio file and a sound effect action representing an operation on sound. Then the user selects at least one of the sound effect tags for a whole source sound or at least a piece of the source sound. The method edits the source sound by using the selected sound effect tags to form a sound effect expression, interprets the sound effect expression to determine the operations corresponding to respective sound effect tags in the sound effect expression and the execution order of the operations, and executes the operations in said order to output a sound with the sound effects. The method of the invention enables a user to perform sound effect editing on sound in real time and dynamically, thus providing more customized sound effects.
    • 本发明提供了一种用于交互地产生声音效果的方法和系统。 该方法向用户提供多个声音效果标签,其中多个声音效果中的每一个对应于特定的声音效果对象。 声音对象包括表示预定音频文件的种子声音和表示声音操作的声音效果动作。 然后,用户为整个源声音或至少一段源声音选择至少一个声音效果标签。 该方法通过使用所选择的声音效果标签来形成声音效果表达式,解释声音效果表达式以确定与声音效果表达式中的各个声音效果标签相对应的操作和操作的执行顺序,并执行 按照所述顺序的操作输出具有声音效果的声音。 本发明的方法使得用户能够实时地和动态地对声音执行声音效果编辑,从而提供更多定制的声音效果。
    • 7. 发明授权
    • Brassica Sp. polygalacturonase gene promoter
    • Brassica Sp。 多聚半乳糖醛酸酶基因启动子
    • US5689053A
    • 1997-11-18
    • US577463
    • 1995-12-21
    • Laurian S. RobertJean L. GersterHai Ping Hong
    • Laurian S. RobertJean L. GersterHai Ping Hong
    • C12N9/24C12N15/29C12N15/82A01H5/00C12N15/11
    • C12N15/8231C12N9/2402C12Y302/01015
    • A Brassica sp. genomic clone containing a polygalacturonase gene promoter was isolated. This promoter directs high levels of transcription in the pollen. When the promoter was fused with the GUS gene and introduced into B. napus by Agrobacterium mediated transformation, this promoter controlled GUS expression in microspores and pollen in transgenic B. napus plants. Expression occurred between the late uninucleate microspore stage and the mature pollen grain stage. GUS activity was also identified in tapetal tissue at the binucleate microspore stage. There was no GUS expression in other tissues such as root, stem, leaf, sepal, petal or pistil. This promoter will be useful for the temporal and spatial control of endogenous gene expression in plants.
    • 芸苔属 分离了含有多聚半乳糖醛酸酶基因启动子的基因组克隆。 该启动子在花粉中引导高水平的转录。 当启动子与GUS基因融合并通过农杆菌介导的转化引入甘蓝型油菜时,该启动子控制转基因油菜植物中小孢子和花粉中的GUS表达。 晚期无核小孢子阶段和成熟花粉粒期之间发生表达。 在双核小孢子阶段,也在绒毡层组织中鉴定出GUS活性。 其他组织如根,茎,叶,萼片,花瓣或雌蕊中没有GUS表达。 该启动子可用于植物内源基因表达的时间和空间控制。