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    • 2. 发明授权
    • Image search engine
    • 图像搜索引擎
    • US09275456B2
    • 2016-03-01
    • US13824853
    • 2011-10-25
    • Susumu MoriMichael I. MillerKenichi OishiAndreia V. Faria
    • Susumu MoriMichael I. MillerKenichi OishiAndreia V. Faria
    • G06T7/00A61B5/00A61B5/055G06F17/30G06F19/00A61B6/03A61B6/00A61B8/00
    • G06T7/0014A61B5/0013A61B5/055A61B6/032A61B6/501A61B6/56A61B8/56A61B8/565G06F17/30247G06F19/00G06F19/321G16H50/70
    • An embodiment of the current invention includes a non-invasive imaging system, comprising: an imaging scanner suitable to generate an image representing a tissue region of a subject under observation, the tissue region having at least one substructure and the image comprising a plurality of image voxels; a signal processing system in communication with the imaging scanner to receive the imaging signal from the imaging scanner; and a data storage unit in communication with the signal processing system, wherein the data storage unit is configured to store: an atlas comprising spatial information of the at least one substructure in the tissue region, and a database comprising a plurality of pre-stored medical images representing the tissue region, and wherein the signal processing system is adapted to: identify, based on the atlas and for each of the at least one substructure, a corresponding portion of image voxels in the image; provide a computed quantification of the corresponding portion of image voxels for each of the at least one substructure of the tissue region by performing spatial filtering on the image; and search the database to provide at least one selected medical image from the plurality of pre-stored medical images, the at least one selected medical image having a corresponding quantification that is substantially similar to the computed quantification.
    • 本发明的一个实施例包括一种非侵入性成像系统,包括:成像扫描仪,其适于产生表示观察对象的组织区域的图像,所述组织区域具有至少一个子结构,并且所述图像包括多个图像 体素 与成像扫描仪通信的信号处理系统,以从成像扫描仪接收成像信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元被配置为存储:包括所述组织区域中的所述至少一个子结构的空间信息的图集,以及包括多个预先存储的医疗 表示组织区域的图像,并且其中所述信号处理系统适于:基于所述图集并且针对所述至少一个子结构中的每一个识别所述图像中的图像体素的相应部分; 通过对图像执行空间滤波来提供组织区域的至少一个子结构中的每一个的图像体素的相应部分的计算定量; 并且搜索所述数据库以从所述多个预先存储的医学图像中提供至少一个所选择的医学图像,所述至少一个所选择的医学图像具有与所计算的定量基本相似的相应量化。
    • 3. 发明申请
    • ATLAS-BASED ANALYSIS FOR IMAGE-BASED ANATOMIC AND FUNCTIONAL DATA OF ORGANISM
    • 基于图像分析的有机分析和功能数据的基于ATLAS的分析
    • US20130102877A1
    • 2013-04-25
    • US13703859
    • 2011-06-22
    • Susumu MoriAndreia V. FariaMichael I. MillerKenichi Oishi
    • Susumu MoriAndreia V. FariaMichael I. MillerKenichi Oishi
    • G06K9/20A61B5/055
    • G06K9/2054A61B5/055A61B6/03A61B6/5217G01R33/5608G06T7/11G06T7/149G06T2207/10072G06T2207/20128G06T2207/30016
    • A non-invasive imaging system, including an imaging scanner suitable to generate an imaging signal from a tissue region of a subject under observation, the tissue region having at least one anatomical substructure and more than one constituent tissue type; a signal processing system in communication with the imaging scanner to receive the imaging signal from the imaging scanner; and a data storage unit in communication with the signal processing system, wherein the data storage unit is configured to store a parcellation atlas comprising spatial information of the at least one substructure in the tissue region, wherein the signal processing system is adapted to: reconstruct an image of the tissue region based on the imaging signal; parcellate, based on the parcellation atlas, the at least one anatomical substructure in the image; segment the more than one constituent tissue types in the image; and automatically identify, in the image, a portion of the at least one anatomical substructure that correspond to one of the more than one constituent tissue type.
    • 一种非侵入性成像系统,包括适于从观察对象的组织区域产生成像信号的成像扫描器,所述组织区域具有至少一个解剖学亚结构和多于一种构成组织类型; 与成像扫描仪通信的信号处理系统,以从成像扫描仪接收成像信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元被配置为存储包括所述组织区域中的所述至少一个子结构的空间信息的分割图集,其中所述信号处理系统适于:重构 基于成像信号的组织区域的图像; 基于分割图谱分析图像中的至少一个解剖学亚结构; 在图像中分割多个组成组织类型; 并且在所述图像中自动识别所述至少一个解剖学亚结构的对应于多于一种构成组织类型之一的部分。
    • 4. 发明申请
    • AUTOMATED IMAGE ANALYSIS FOR MAGNETIC RESONANCE IMAGING
    • 自动图像分析用于磁共振成像
    • US20150015253A1
    • 2015-01-15
    • US14248998
    • 2014-04-09
    • Susumu MoriMichael I. MillerJiangyang ZhangKenichi Oishi
    • Susumu MoriMichael I. MillerJiangyang ZhangKenichi Oishi
    • G01R33/56
    • G01R33/56G01R33/5608G01R33/56341G06T7/0012G06T7/11G06T7/30G06T2207/10088G06T2207/30016
    • A magnetic resonance imaging (MRI) system, comprising: a magnetic resonance imaging scanner configured to generate a plurality of signals for forming at least one magnetic resonance image of a soft tissue region from a subject under observation, wherein the at least one magnetic resonance image provides at least one integrating feature to facilitate automatic segmentation; a signal processing system in communication with the magnetic resonance imaging scanner to receive the plurality of signals; and a data storage unit in communication with the signal processing system, wherein the data storage unit contains at least one template corresponding to the soft tissue region, wherein the signal processing system is adapted to process the plurality of signals received from the magnetic resonance imaging scanner to automatically perform segmentation for the soft tissue region of the subject under observation by utilizing the at least one template and the at least one integrating feature.
    • 一种磁共振成像(MRI)系统,包括:磁共振成像扫描器,被配置为产生用于从观察对象形成软组织区域的至少一个磁共振图像的多个信号,其中所述至少一个磁共振图像 提供至少一个积分特征以促进自动分割; 信号处理系统,与所述磁共振成像扫描器通信以接收所述多个信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元包含与所述软组织区域对应的至少一个模板,其中所述信号处理系统适于处理从所述磁共振成像扫描器接收的所述多个信号 通过利用所述至少一个模板和所述至少一个积分特征来自动执行观察对象的软组织区域的分割。
    • 5. 发明授权
    • Atlas-based analysis for image-based anatomic and functional data of organism
    • 基于图像的生物体解剖学和功能数据分析
    • US08838201B2
    • 2014-09-16
    • US13703859
    • 2011-06-22
    • Susumu MoriAndreia V. FariaMichael I. MillerKenichi Oishi
    • Susumu MoriAndreia V. FariaMichael I. MillerKenichi Oishi
    • A61B5/05G06T7/00A61B6/00A61B5/055G06K9/20G01R33/56A61B6/03
    • G06K9/2054A61B5/055A61B6/03A61B6/5217G01R33/5608G06T7/11G06T7/149G06T2207/10072G06T2207/20128G06T2207/30016
    • A non-invasive imaging system, including an imaging scanner suitable to generate an imaging signal from a tissue region of a subject under observation, the tissue region having at least one anatomical substructure and more than one constituent tissue type; a signal processing system in communication with the imaging scanner to receive the imaging signal from the imaging scanner; and a data storage unit in communication with the signal processing system, wherein the data storage unit is configured to store a parcellation atlas comprising spatial information of the at least one substructure in the tissue region, wherein the signal processing system is adapted to: reconstruct an image of the tissue region based on the imaging signal; parcellate, based on the parcellation atlas, the at least one anatomical substructure in the image; segment the more than one constituent tissue types in the image; and automatically identify, in the image, a portion of the at least one anatomical substructure that correspond to one of the more than one constituent tissue type.
    • 一种非侵入性成像系统,包括适于从观察对象的组织区域产生成像信号的成像扫描器,所述组织区域具有至少一个解剖学亚结构和多于一种构成组织类型; 与成像扫描仪通信的信号处理系统,以从成像扫描仪接收成像信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元被配置为存储包括所述组织区域中的所述至少一个子结构的空间信息的分割图集,其中所述信号处理系统适于:重构 基于成像信号的组织区域的图像; 基于分割图谱分析图像中的至少一个解剖学亚结构; 在图像中分割多个组成组织类型; 并且在所述图像中自动识别所述至少一个解剖学亚结构的对应于多于一种构成组织类型之一的部分。
    • 6. 发明申请
    • IMAGE SEARCH ENGINE
    • 图像搜索引擎
    • US20130223716A1
    • 2013-08-29
    • US13824853
    • 2011-10-25
    • Susumu MoriMichael I. MillerKenichi OishiAndreia V. Faria
    • Susumu MoriMichael I. MillerKenichi OishiAndreia V. Faria
    • G06T7/00
    • G06T7/0014A61B5/0013A61B5/055A61B6/032A61B6/501A61B6/56A61B8/56A61B8/565G06F17/30247G06F19/00G06F19/321G16H50/70
    • An embodiment of the current invention includes a non-invasive imaging system, comprising: an imaging scanner suitable to generate an image representing a tissue region of a subject under observation, the tissue region having at least one substructure and the image comprising a plurality of image voxels; a signal processing system in communication with the imaging scanner to receive the imaging signal from the imaging scanner; and a data storage unit in communication with the signal processing system, wherein the data storage unit is configured to store: an atlas comprising spatial information of the at least one substructure in the tissue region, and a database comprising a plurality of pre-stored medical images representing the tissue region, and wherein the signal processing system is adapted to: identify, based on the atlas and for each of the at least one substructure, a corresponding portion of image voxels in the image; provide a computed quantification of the corresponding portion of image voxels for each of the at least one substructure of the tissue region by performing spatial filtering on the image; and search the database to provide at least one selected medical image from the plurality of pre-stored medical images, the at least one selected medical image having a corresponding quantification that is substantially similar to the computed quantification.
    • 本发明的一个实施例包括一种非侵入性成像系统,包括:成像扫描仪,其适于产生表示观察对象的组织区域的图像,所述组织区域具有至少一个子结构,并且所述图像包括多个图像 体素 与成像扫描仪通信的信号处理系统,以从成像扫描仪接收成像信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元被配置为存储:包括所述组织区域中的所述至少一个子结构的空间信息的图集,以及包括多个预先存储的医疗 表示组织区域的图像,并且其中所述信号处理系统适于:基于所述图集并且针对所述至少一个子结构中的每一个识别所述图像中的图像体素的相应部分; 通过对图像执行空间滤波来提供组织区域的至少一个子结构中的每一个的图像体素的相应部分的计算定量; 并且搜索所述数据库以从所述多个预先存储的医学图像中提供至少一个所选择的医学图像,所述至少一个所选择的医学图像具有与所计算的定量基本相似的相应量化。
    • 7. 发明申请
    • AUTOMATED IMAGE ANALYSIS FOR MAGNETIC RESONANCE IMAGING
    • 自动图像分析用于磁共振成像
    • US20100284595A1
    • 2010-11-11
    • US12747816
    • 2009-02-02
    • Susumu MoriMichael I. MillerJiangyang ZhangKenichi Oishi
    • Susumu MoriMichael I. MillerJiangyang ZhangKenichi Oishi
    • G06K9/00A61B5/055
    • G01R33/56G01R33/5608G01R33/56341G06T7/0012G06T7/11G06T7/30G06T2207/10088G06T2207/30016
    • A magnetic resonance imaging (MRI) system, comprising: a magnetic resonance imaging scanner configured to generate a plurality of signals for forming at least one magnetic resonance image of a soft tissue region from a subject under observation, wherein the at least one magnetic resonance image provides at least one integrating feature to facilitate automatic segmentation; a signal processing system in communication with the magnetic resonance imaging scanner to receive the plurality of signals; and a data storage unit in communication with the signal processing system, wherein the data storage unit contains at least one template corresponding to the soft tissue region, wherein the signal processing system is adapted to process the plurality of signals received from the magnetic resonance imaging scanner to automatically perform segmentation for the soft tissue region of the subject under observation by utilizing the at least one template and the at least one integrating feature.
    • 一种磁共振成像(MRI)系统,包括:磁共振成像扫描器,被配置为产生用于从观察对象形成软组织区域的至少一个磁共振图像的多个信号,其中所述至少一个磁共振图像 提供至少一个积分特征以促进自动分割; 信号处理系统,与所述磁共振成像扫描器通信以接收所述多个信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元包含与所述软组织区域相对应的至少一个模板,其中所述信号处理系统适于处理从所述磁共振成像扫描器接收的所述多个信号 通过利用所述至少一个模板和所述至少一个积分特征来自动执行观察对象的软组织区域的分割。
    • 8. 发明授权
    • Automated image analysis for magnetic resonance imaging
    • 磁共振成像自动图像分析
    • US08731256B2
    • 2014-05-20
    • US12747816
    • 2009-02-02
    • Susumu MoriMichael I. MillerJiangyang ZhangKenichi Oishi
    • Susumu MoriMichael I. MillerJiangyang ZhangKenichi Oishi
    • G06K9/00G06T7/00
    • G01R33/56G01R33/5608G01R33/56341G06T7/0012G06T7/11G06T7/30G06T2207/10088G06T2207/30016
    • A magnetic resonance imaging (MRI) system, comprising: a magnetic resonance imaging scanner configured to generate a plurality of signals for forming at least one magnetic resonance image of a soft tissue region from a subject under observation, wherein the at least one magnetic resonance image provides at least one integrating feature to facilitate automatic segmentation; a signal processing system in communication with the magnetic resonance imaging scanner to receive the plurality of signals; and a data storage unit in communication with the signal processing system, wherein the data storage unit contains at least one template corresponding to the soft tissue region, wherein the signal processing system is adapted to process the plurality of signals received from the magnetic resonance imaging scanner to automatically perform segmentation for the soft tissue region of the subject under observation by utilizing the at least one template and the at least one integrating feature.
    • 一种磁共振成像(MRI)系统,包括:磁共振成像扫描器,被配置为产生用于从观察对象形成软组织区域的至少一个磁共振图像的多个信号,其中所述至少一个磁共振图像 提供至少一个积分特征以促进自动分割; 信号处理系统,与所述磁共振成像扫描器通信以接收所述多个信号; 以及与所述信号处理系统通信的数据存储单元,其中所述数据存储单元包含与所述软组织区域对应的至少一个模板,其中所述信号处理系统适于处理从所述磁共振成像扫描器接收的所述多个信号 通过利用所述至少一个模板和所述至少一个积分特征来自动执行观察对象的软组织区域的分割。
    • 10. 发明申请
    • ROTARY PUMP
    • 旋转泵
    • US20110229361A1
    • 2011-09-22
    • US13048085
    • 2011-03-15
    • Tomonobu KURODAKenichi Oishi
    • Tomonobu KURODAKenichi Oishi
    • F01C1/10
    • F04C2/102F04C2/084F04C15/0026F04C2240/80F04C2270/17
    • A housing includes a pump chamber, which rotatably receives an inner rotor and an outer rotor that define a pressure chamber therebetween. An inlet port of the housing is communicated with the pressure chamber to supply fluid into the pressure chamber. An outlet port of the housing is communicated with the pressure chamber to discharge the fluid from the pressure chamber. An axial size of an axial clearance, which is formed between an axial end surface of the pump chamber and an axial end surface of the inner rotor, differs from an axial size of an axial clearance, which is formed between the axial end surface of the pump chamber and an axial end surface of the outer rotor.
    • 壳体包括泵室,其可旋转地接收在其间限定压力室的内转子和外转子。 壳体的入口与压力室连通以将流体供应到压力室中。 壳体的出口与压力室连通,以从压力室排出流体。 形成在泵室的轴向端面与内转子的轴向端面之间的轴向间隙的轴向尺寸与轴向间隙的轴向尺寸不同,该轴向间隙形成在轴向间隙的轴向端面之间 泵室和外转子的轴向端面。