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公开(公告)号:US20250111513A1
公开(公告)日:2025-04-03
申请号:US18374145
申请日:2023-09-28
Applicant: GE Precision Healthcare LLC
Inventor: Pál Tegzes , Zita Herczeg , Hongxu Yang , Zoltán Kiss , Poonam Dalal , Gireesha Rao , Pulak Goswami , Dennis Zhou
Abstract: An imaging system and method includes a display, a processor, and a memory storing processor-executable code that causes receiving an image of a patient with a medical device disposed therein, detecting the medical device within the image, detecting one or more reference landmark(s) within the image, and generating a combined image by superimposing an overlay on the image to indicate a position of the medical device relative to the reference landmarks. The processor-executable code further causes the image processing system to generate a checklist for verification by a user of the position of the medical device for presentation with the combined image on the display to help the user to adhere to clinical guidelines for placement of the device. In addition, the processor-executable code can prefill the checklist using an artificial intelligence model, with checklist responses used to train or validate the AI model, or for quality assurance purposes.
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公开(公告)号:US20240164845A1
公开(公告)日:2024-05-23
申请号:US18385448
申请日:2023-10-31
Applicant: GE Precision Healthcare LLC
Inventor: Pál Tegzes , Zita Herczeg , Hongxu Yang , Zoltán Kiss , Balázs P. Cziria , Poonam Dalal , Alec Baenen , Gireesha Rao , Beth Heckel , Pulak Goswami , Dennis Zhou , Gopal Avinash , Lehel Ferenczi , Katelyn Nye , Noah Thompson Orfield , Emma Neal , Sarah Ouadah
CPC classification number: A61B34/20 , A61B6/12 , A61B6/463 , A61B6/54 , G06T7/74 , G06T11/00 , A61B2034/2065 , G06T2207/30012 , G06T2207/30204 , G06T2210/41
Abstract: An image processing system and method is provided. The image processing system includes a display, a processor, and a memory. The memory stores processor-executable code that when executed by the processor causes receiving an image of a region of interest of a patient with a medical catheter, tube or line disposed within the region of interest, detecting the medical tube or line within the image, generating a patient coordinate system relative to an anatomy of the patient within the image, generating a combined image by superimposing a first graphical marker on the image that indicates an end of the medical catheter, tube or line, and a second graphical marker on the image that indicates patient coordinate system, and displaying the combined image on the display. In addition, the system assesses common visualizable complications associated with CVC placement, including but not limited to hydrothorax, pneumothorax, pneumomediastinum and CVC position changes between x-rays taken at different times.
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公开(公告)号:US20230162355A1
公开(公告)日:2023-05-25
申请号:US17993612
申请日:2022-11-23
Applicant: GE Precision Healthcare LLC
Inventor: Pal Tegzes , Zita Herczeg , Hongxu Yang , Zoltan Kiss , Balazs Peter Cziria , Poonam Dalal , Alec Joseph Baenen , Gireesha Chinthamani Rao , Beth Ann Heckel , Pulak Goswami , Dennis Wei Zhou , Gopal Biligeri Avinash , Lehel Ferenczi , Katelyn Rose Nye
CPC classification number: G06T7/0012 , G06T7/10 , G06T2207/20081
Abstract: An image processing system is provided. The image processing system includes a display, a processor, and a memory. The memory stores processor-executable code that when executed by the processor causes receiving images of a region of interest of a patient with an enteric tube or line disposed within the region of interest, detecting the medical tube or line within the image, generating a combined image by combining the received images, and superimposing graphical markers on the combined image that indicate placement or misplacement of the enteric tube or line, and displaying the combined image on a display. In further aspects, a classification of the enteric tube or line (e.g., correctly placed tube present, malpositioned tube present, and so forth) and a detected positional change in the placement of the enteric tube or line may be determined and communicated to one or more clinicians. Additionally, the outputs of the image processing system may also be provided to facilitate triage of patients, helping prioritize which tube placements require further attention and in what order.
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