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    • 41. 发明申请
    • Method and apparatus for automatic fine tuning based on sync detection
    • 基于同步检测的自动微调方法和装置
    • US20080194218A1
    • 2008-08-14
    • US11985898
    • 2007-11-19
    • Chiew Mun ChangHong Li
    • Chiew Mun ChangHong Li
    • H04B1/18
    • H04N5/50H04N5/08H04N21/4302H04N21/4383
    • The method according to the invention for adjusting the tuning of a receiver circuit for receiving modulated a high frequency signal within a frequency range, the high frequency signal comprising a sync signal, uses the steps of shifting a frequency of a local oscillator within the frequency range and looking for the sync signal, and storing the value of a first frequency, when a sync signal is recognized. Then, the frequency of the local oscillator is continuously shifted in the same frequency direction across the bandwidth of the modulated high frequency signal by controlling the presence of the sync signal. The frequency, at which the sync signal is lost, is stored as a second frequency. From the first and the second frequency in a further step an optimum tuning frequency, located between the first and second frequency, is calculated for the reception for the high frequency signal. The receiver circuit comprises in particular a sync signal detector coupled to an output of an intermediate frequency filter and a controller circuit coupled to the sync signal detector and a local oscillator for performing the method.
    • 根据本发明的用于调整接收机电路的调谐的方法,用于在频率范围内接收调制的高频信号,包括同步信号的高频信号使用以下步骤:将频率范围内的本地振荡器的频率 并且当识别出同步信号时,寻找同步信号并存储第一频率的值。 然后,通过控制同步信号的存在,本地振荡器的频率在调制的高频信号的带宽上在相同的频率方向上连续移位。 同步信号丢失的频率被存储为第二频率。 从另一步骤的第一和第二频率,计算位于第一和第二频率之间的最佳调谐频率用于高频信号的接收。 接收器电路特别包括耦合到中频滤波器的输出的同步信号检测器和耦合到同步信号检测器的控制器电路和用于执行该方法的本地振荡器。
    • 44. 发明申请
    • Mechanism for maintaining data format synchronization between different entities
    • 维护不同实体间数据格式同步的机制
    • US20060259909A1
    • 2006-11-16
    • US11128864
    • 2005-05-13
    • Gary PasseroHong LiAdzim AuzarJames Muoio
    • Gary PasseroHong LiAdzim AuzarJames Muoio
    • G06F3/00
    • G06F9/541G06F17/30569G06F17/3092
    • A software data interface technique allows a program to retrieve data from another program, whether or not data formats employed by the two programs are mutually compatible. An application-independent data format, Fexchange, is a priori agreed upon and readable by creators of the two programs. In the course of storing data during execution of a first program, that data file is augmented to include instructions that convert the format of the data into the application-independent intermediate data format, Fexchange. During execution of the second program, whenever access of data stored in the first program is required, the second program retrieves from the first data file instructions for converting the format of the data to the application-independent intermediate data format, Fexchange. The second program then executes the conversion instructions so as to retrieve the data from the first program.
    • 软件数据接口技术允许程序从另一个程序检索数据,无论两个程序采用的数据格式是否相互兼容。 独立于应用程序的数据格式,F<交换< / SUB>是两个程序的创建者先验同意和可读的。 在执行第一程序期间存储数据的过程中,该数据文件被扩充以包括将数据的格式转换成与应用无关的中间数据格式的交换。 在第二程序的执行期间,当需要存储在第一程序中的数据的访问时,第二程序从第一数据文件检索用于将数据的格式转换为与应用无关的中间数据格式的交换指令 。 然后,第二程序执行转换指令,以从第一程序检索数据。
    • 47. 发明申请
    • Genetically modified plants comprising SARS-CoV viral nucleotide sequences and methods of use thereof for immunization against SARS
    • 包含SARS-CoV病毒核苷酸序列的转基因植物及其用于免疫SARS的方法
    • US20060053516A1
    • 2006-03-09
    • US11004399
    • 2004-12-03
    • Mee ChyeHong LiSathiskumar RamalingamLeo PoonJoseph Peiris
    • Mee ChyeHong LiSathiskumar RamalingamLeo PoonJoseph Peiris
    • A61K39/12C12N5/04A01H1/00C12N15/82A61K36/18
    • C12N15/8257A61K31/7088A61K39/12A61K39/215A61K2039/517A61K2039/542C12N2770/20034
    • The invention relates to genetically modified plants and progeny thereof which constitute edible plant-derived mucosal vaccines and injectable plant-derived mucosal vaccines against Severe Acute Respiratory Syndrome (SARS). The invention relates to a recombinant vector that transforms specifically, but not limited to, the nuclei and/or plastids of tobacco, tomato and lettuce plants for antigen production. In specific embodiments, the plastid transformation vector expressing the nucleotide sequences are pCV1, pCV6 and pCV8, and their derivatives containing an S1 with nucleotide (but not amino acid) changes to optimize codon usage for expression in plants. The present invention relates to methods of making the modified plants which comprises transformation of plants with vectors for nuclear expression and/or plastid expression of nucleotide sequences of the SARS-CoV virus, fragments, derivatives, analogs, or variants thereof. The present invention also relates to methods of immunization against SARS and methods of antibody detection using the SARS-CoV antigens generated by the plastid and/or nuclear vector(s) transformed plants.
    • 本发明涉及构成食用植物来源的粘膜疫苗和针对严重急性呼吸综合征(SARS)的可注射植物来源的粘膜疫苗的转基因植物及其后代。 本发明涉及一种特异性转化,但不限于烟草,番茄和莴苣植物的核和/或质体用于抗原生产的重组载体。 在具体实施方案中,表达核苷酸序列的质体转化载体是pCV1,pCV6和pCV8,并且其含有具有核苷酸(但不是氨基酸)的S1的衍生物改变以优化用于在植物中表达的密码子使用。 本发明涉及制备修饰植物的方法,其包括用SARS-CoV病毒,其片段,衍生物,类似物或变体的核表达和/或质体表达的载体转化植物。 本发明还涉及使用由质体和/或核载体转化的植物产生的SARS-CoV抗原的SARS免疫方法和抗体检测方法。