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公开(公告)号:US20220148711A1
公开(公告)日:2022-05-12
申请号:US17361718
申请日:2021-06-29
Applicant: Quanta Computer Inc.
Inventor: Kuei-Hong KUO , Yi-Ting PENG , Ching-Chung KAO , Ai-Ling HSU , Yu-Ren YANG , Pei-Wei SHUENG , Chun-You CHEN , Kuan-Chieh HUANG
Abstract: Systems with a contouring method are provided for contouring one or more targets that correspond to specific organs and/or tumors in a three-dimensional medical image of a patient using neural networks. The contouring system includes a storage unit, a processing unit, and a plurality of modules that are computer operable. The processing unit is used to obtain the image, and then to generate one or more contouring images using a contouring method. The contouring method includes enhancing image features and improving contouring accuracy using an image preprocessing module, and extracting a plurality of multi-scale image representations and expanding these representations to one or more contouring images using a neural network-based contouring module.
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公开(公告)号:US20210202089A1
公开(公告)日:2021-07-01
申请号:US16933163
申请日:2020-07-20
Applicant: Quanta Computer Inc.
Inventor: Kuei-Hong KUO , Hao WANG , Chung-Yi YANG , Kuan-Chieh HUANG , Bo-Yu LIN , Yi-Ting PENG , Ching-Chung KAO
Abstract: The medical image recognition method includes the following steps: transmitting an accession number to a recognition module through a prediction unit; receiving an accession number and a human body image by a recognition model, and importing the human body image into a set of neural network models respectively; wherein each of the neural network models outputs at least one recognition result; the recognition module returns the recognition results to the prediction unit, and then the recognition results are stored in database.
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公开(公告)号:US20210378616A1
公开(公告)日:2021-12-09
申请号:US17223605
申请日:2021-04-06
Applicant: Quanta Computer Inc. , Taipei Medical University
Inventor: Wing P. CHAN , Ai-Ling HSU , Kuan-Chieh HUANG , Yi-Ting PENG , Ching-Chung KAO
Abstract: The present invention discloses a method and a system of vertebral compression fracture detection. The method of vertebral compression fracture detection includes: recombining a plurality of anatomical images captured in at least a spine segment of a target individual into a 3D image; using a multi-planar reconstruction method to reformat the 3D image to obtain at least one sagittal reformatted image; using a classification model to determine whether the sagittal reformatted image covers the middle section of the vertebral column or not; using a vertebral detection method to detect each vertebral body in the sagittal reformatted image covering the middle section of the vertebral column; using a keypoint localization method to localize a plurality of keypoints of each vertebral body which was detected in the sagittal reformatted image; evaluating the compression fracture grade of each vertebral body in the sagittal reformatted image.
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