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    • 6. 发明申请
    • Numerically simulating structural behaviors of embedded bi-materials using meshfree method
    • 使用无网格方法数值模拟嵌入式双材料的结构行为
    • US20130085727A1
    • 2013-04-04
    • US13251654
    • 2011-10-03
    • Cheng-Tang Wu
    • Cheng-Tang Wu
    • G06F17/10
    • G06F17/5018G01N2203/0216G06F2217/16G06F2217/44G06T17/20
    • Methods and systems for numerically simulating structural behaviors of embedded bi-materials are disclosed. At least first and second grid models are created independently for an embedded bi-material that contains an immersed material embedded entirely within a base material. First group of meshfree nodes represents the entire domain (i.e., base plus immersed materials). Second group of meshfree nodes represents the immersed or embedded material, which includes all interface nodes and nodes located within a space bordered by the material interface. Numerical structural behaviors of the embedded bi-material are simulated using the first and second set of meshfree nodes with a meshfree method that combines two meshfree approximations. The first meshfree approximation covers the first set of meshfree nodes and is based on properties of the base material, while the second meshfree approximation covers the second set of meshfree nodes and is based on a differential between the immersed and base materials.
    • 公开了用于数值模拟嵌入式双材料结构行为的方法和系统。 至少第一和第二格栅模型是独立地为包含完全嵌入基材的浸入材料的嵌入式双材料而创建的。 第一组无网格节点表示整个域(即,基底加上浸没的材料)。 第二组无网节点代表浸没或嵌入的材料,其中包括位于物料界面边界的空间内的所有接口节点和节点。 嵌入式双材料的数值结构行为使用组合两个无网格近似的无网格方法,使用第一组和第二组无网格节点进行模拟。 第一个无网格近似覆盖第一组无网格节点,并且基于基础材料的性质,而第二无网格近似覆盖第二组无网格节点,并且基于浸没和基材之间的差异。
    • 8. 发明申请
    • METHOD FOR 3-DIMENSIONAL MICROSCOPIC VISUALIZATION OF THICK BIOLOGICAL TISSUES
    • 方法用于三维显微镜可视化的厚度生物组织
    • US20120081518A1
    • 2012-04-05
    • US13244297
    • 2011-09-24
    • Yuan-An LiuAnn-Shyn ChiangShiue-Cheng Tang
    • Yuan-An LiuAnn-Shyn ChiangShiue-Cheng Tang
    • H04N13/02
    • G02B21/006
    • The present invention discloses a method of visualizing the 3-dimensional microstructure of a thick biological tissue. This method includes: a process of immersing thick, opaque biological tissues in the optical-clearing solution, for example FocusClear (U.S. Pat. No. 6,472,216), and utilizing an optical scanning microscope and a cutter. In microscopy, the cutter removes a portion of the tissue after each round of optical scanning. Each round of optical scanning follows the principal that the depth of the removal plane is less than the depth of the boundary plane derived from the scanning This method acquires an image stack to provide the information of thick biological tissue's 3-dimensional microstructure with minimal interference by the tissue removal.
    • 本发明公开了一种可视化厚生物组织的三维微结构的方法。 该方法包括:将厚的不透明的生物组织浸入光学清除溶液中的方法,例如FocusClear(美国专利号6,472,216),并使用光学扫描显微镜和切割器。 在显微术中,切割器在每轮光学扫描后移除一部分组织。 每轮光学扫描遵循的原理是去除平面的深度小于从扫描导出的边界平面的深度。该方法获取图像堆叠,以最小的干扰提供厚生物组织的3维微结构的信息 组织去除。
    • 9. 发明申请
    • MICRO-OPERATION PROCESSING SYSTEM AND DATA WRITING METHOD THEREOF
    • 微操作处理系统及其数据写入方法
    • US20120066476A1
    • 2012-03-15
    • US13177801
    • 2011-07-07
    • Cheng Tang CHENG
    • Cheng Tang CHENG
    • G06F15/76G06F9/22
    • G06F9/22G06F9/38G06F9/3824G06F9/3836
    • A data writing method and a micro-operation processing system are provided. The micro-operation processing system is adapted to access a plurality of registers and each of the registers defines at least one logic storing area. The data writing method comprises the following steps: executing a first micro-operation; selecting a target area of the first micro-operation, which has been updated by the second micro-operation before, as one of the logic storing areas; assigning each of the first micro-operation and the second micro-operation a respective identification number; determining that a execution order of the first micro-operation is later than a execution order of the second micro-operation according to the identification numbers of the first micro-operation and the second micro-operation; and recording that the target area has been updated by the first micro-operation.
    • 提供数据写入方法和微操作处理系统。 微操作处理系统适于访问多个寄存器,并且每个寄存器定义至少一个逻辑存储区域。 数据写入方法包括以下步骤:执行第一微操作; 通过第二微操作将已经更新的第一微操作的目标区域选择为逻辑存储区域之一; 将所述第一微操作和所述第二微操作中的每一个分配给相应的识别号码; 根据第一微操作和第二微操作的识别号确定第一微操作的执行顺序晚于第二微操作的执行次序; 并且通过第一微操作来记录目标区域已被更新。