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    • 2. 发明申请
    • Foundation Theory And Method of Internet Map/Platform Iconology/Markerology
    • US20190034468A1
    • 2019-01-31
    • US16040917
    • 2018-07-20
    • Qiang WangXinwei WangYong WangJin WangZhaoyang Wang
    • Qiang WangXinwei WangYong WangJin WangZhaoyang Wang
    • G06F17/30G06F17/24G06Q10/10
    • The present invention discloses the foundation theory and method of the internet map/platform Iconology/Markerology which is characterized in followings: the invention firstly establishes the foundation theory of internet map/platform iconology, its specification, standards and methods including a complete theoretical dynamic icon/marker management system, basic concepts, categories, judgments and inferences, definitions, rules and methods, According to the foundation theory and method of Internet Map/Platform Iconology/Markerology, the user can use the iconology theory and methods specified in the present invention to identify almost everything on the internet maps or platforms and to perform various operations and to control all of the icons/markers on the internet maps/platforms and also to connect to variety of external network resource and network platforms to get in touch with various network businesses through these internet map icons/markers enriched with infinite network resource spaces. Actually, Icon/marker economic activity that is currently limited with traditional Internet map technology so far will become main tendency in future with the present invention. In particular, the present invention assigns a unique icon/marker Identification (IID) number to each valid icon/marker on the internet map and in future we can use this IID to identify almost everything on any kinds of network platforms and can control all the targets/objects of both the Internet of Things (IoT) and the Internet just by controlling all the icons/markers on the internet map/platform through unique icon/marker Identification number (IID). The Cardinality of icon/marker Identification (IID) is Second Level Infinity.
    • 5. 发明授权
    • Method and device for automatic migration of system configuration item
    • 系统配置项自动迁移的方法和设备
    • US09171053B2
    • 2015-10-27
    • US13565387
    • 2012-08-02
    • Yi CaiYong WangYuangang WangQiang Wang
    • Yi CaiYong WangYuangang WangQiang Wang
    • G06F17/30H04L12/24H04L29/08G06F9/445
    • G06F17/30578G06F9/44505G06F17/30067H04L41/084H04L41/0886H04L67/08
    • A method and a device for migrating a source system configuration item: collecting through a telnet/ssh protocol channel established with a source system and a predefined shell script corresponding to the source system, a source system configuration item corresponding to a system configuration item identifier, wherein the system configuration item identifier is a predefined system configuration item identifier corresponding to the source system; comparing the collected source system configuration item with a preset default system configuration item to obtain a non-default system configuration item, wherein the non-default system configuration item is regarded as a system configuration item that needs to be migrated; querying a mapping relationship among a pre-system: the system configuration item and a key parameter value to obtain a destination system configuration item and the key parameter value; and performing migration configuration on a destination system through the telnet/ssh protocol channel established with the destination system.
    • 一种用于迁移源系统配置项的方法和设备:通过与源系统相对应的源系统建立的telnet / ssh协议通道和对应于源系统的预定义shell脚本来收集,对应于系统配置项标识符的源系统配置项, 其中所述系统配置项标识符是与所述源系统相对应的预定义系统配置项标识符; 将收集的源系统配置项与预设的默认系统配置项进行比较,以获得非默认系统配置项,其中非默认系统配置项被视为需要迁移的系统配置项; 查询系统之间的映射关系:系统配置项和密钥参数值,以获取目标系统配置项和密钥参数值; 并通过目的地系统建立的telnet / ssh协议通道在目的地系统上执行迁移配置。
    • 6. 发明申请
    • METHOD AND DEVICE FOR AUTOMACTIC MIGRATION OF SYSTEM CONFIGURATION ITEM
    • 系统配置自动移动的方法和装置
    • US20130054521A1
    • 2013-02-28
    • US13565387
    • 2012-08-02
    • Yi CaiYong WangYuangang WangQiang Wang
    • Yi CaiYong WangYuangang WangQiang Wang
    • G06F7/00
    • G06F17/30578G06F9/44505G06F17/30067H04L41/084H04L41/0886H04L67/08
    • A method and a device for migrating a source system configuration item: collecting through a telnet/ssh protocol channel established with a source system and a predefined shell script corresponding to the source system, a source system configuration item corresponding to a system configuration item identifier, wherein the system configuration item identifier is a predefined system configuration item identifier corresponding to the source system; comparing the collected source system configuration item with a preset default system configuration item to obtain a non-default system configuration item, wherein the non-default system configuration item is regarded as a system configuration item that needs to be migrated; querying a mapping relationship among a pre-system: the system configuration item and a key parameter value to obtain a destination system configuration item and the key parameter value; and performing migration configuration on a destination system through the telnet/ssh protocol channel established with the destination system.
    • 一种用于迁移源系统配置项的方法和设备:通过与源系统相对应的源系统建立的telnet / ssh协议通道和对应于源系统的预定义shell脚本来收集,对应于系统配置项标识符的源系统配置项, 其中所述系统配置项标识符是与所述源系统相对应的预定义系统配置项标识符; 将收集的源系统配置项与预设的默认系统配置项进行比较,以获得非默认系统配置项,其中非默认系统配置项被视为需要迁移的系统配置项; 查询系统之间的映射关系:系统配置项和密钥参数值,以获取目标系统配置项和密钥参数值; 并通过目的地系统建立的telnet / ssh协议通道在目的地系统上执行迁移配置。
    • 10. 发明授权
    • Diagnosis of central nervous system white matter pathology using diffusion MRI
    • 诊断中枢神经系统白质病变使用扩散MRI
    • US09494669B2
    • 2016-11-15
    • US13109986
    • 2011-05-17
    • Sheng-Kwei SongQing WangYong Wang
    • Sheng-Kwei SongQing WangYong Wang
    • A61B5/055G01R33/563
    • G01R33/56341A61B5/055
    • Determining diffusivity of multiple diffusion components within a tissue using diffusion magnetic resonance data representing a volume of the tissue. A plurality of candidate fibers having a direction is defined within the volume. A possibility coefficient is calculated by a processor for each candidate fiber of the plurality of candidate fibers based on the magnetic resonance data and the direction of the candidate fiber. The possibility coefficient represents a likelihood that the candidate fiber exists in the volume. Candidate fibers associated with a possibility coefficient greater than a threshold value are selected by the processor to create one or more probable fibers. For each probable fiber of the one or more probable fibers, an axial diffusivity indicating a diffusion of water in the direction of the probable fiber and a radial diffusivity indicating a diffusion of water perpendicular to the direction of the probable fiber are calculated by the processor. The diffusivity of isotropic diffusion component and the volume ratios of each fiber component and isotropic components are calculated.
    • 使用表示组织体积的扩散磁共振数据确定组织内多个扩散组分的扩散系数。 具有方向的多个候选光纤被定义在体积内。 基于磁共振数据和候选光纤的方向,由处理器对多个候选光纤中的每个候选光纤计算可能性系数。 可能性系数表示候选光纤存在于卷中的可能性。 与大于阈值的可能性系数相关联的候选光纤由处理器选择以产生一个或多个可能的光纤。 对于一个或多个可能纤维的每个可能的纤维,通过处理器计算指示水在可能纤维的方向上的扩散的轴向扩散率和指示垂直于可能纤维的方向的水的扩散的径向扩散率。 计算各向同性扩散成分的扩散系数和各纤维成分与各向同性成分的体积比。