发明授权
US09536305B2 Method, system, software and medium for advanced intelligent image analysis and display of medical images and information
有权
方法,系统,软件和媒介,用于高级智能图像分析和医学图像和信息的显示
- 专利标题: Method, system, software and medium for advanced intelligent image analysis and display of medical images and information
- 专利标题(中): 方法,系统,软件和媒介,用于高级智能图像分析和医学图像和信息的显示
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申请号: US14887678申请日: 2015-10-20
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公开(公告)号: US09536305B2公开(公告)日: 2017-01-03
- 发明人: Maryellen L. Giger , Robert Tomek , Jeremy Bancroft Brown , Andrew Robert Jamieson , Li Lan , Michael R. Chinander , Karen Drukker , Hui Li , Neha Bhooshan , Gillian Newstead
- 申请人: Maryellen L. Giger , Robert Tomek , Jeremy Bancroft Brown , Andrew Robert Jamieson , Li Lan , Michael R. Chinander , Karen Drukker , Hui Li , Neha Bhooshan , Gillian Newstead
- 申请人地址: US IL Chicago
- 专利权人: QUANTITATIVE INSIGHTS, INC.
- 当前专利权人: QUANTITATIVE INSIGHTS, INC.
- 当前专利权人地址: US IL Chicago
- 代理机构: Oblon, McClelland, Maier & Neustadt, L.L.P.
- 主分类号: G06T7/00
- IPC分类号: G06T7/00 ; G06T11/00 ; G06T15/08 ; G06T15/20 ; G06T17/00 ; G06T19/20 ; G06K9/62 ; G06T7/60 ; G06T7/40
摘要:
Computerized interpretation of medical images for quantitative analysis of multi-modality breast images including analysis of FFDM, 2D/3D ultrasound, MRI, or other breast imaging methods. Real-time characterization of tumors and background tissue, and calculation of image-based biomarkers is provided for breast cancer detection, diagnosis, prognosis, risk assessment, and therapy response. Analysis includes lesion segmentation, and extraction of relevant characteristics (textural/morphological/kinetic features) from lesion-based or voxel-based analyses. Combinations of characteristics in several classification tasks using artificial intelligence is provided. Output in terms of 1D, 2D or 3D distributions in which an unknown case is identified relative to calculations on known or unlabeled cases, which can go through a dimension-reduction technique. Output to 3D shows relationships of the unknown case to a cloud of known or unlabeled cases, in which the cloud demonstrates the structure of the population of patients with and without the disease.
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