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公开(公告)号:US10178971B2
公开(公告)日:2019-01-15
申请号:US14784961
申请日:2014-04-10
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Lu Wang , Subhendu Seth , Pallavi Vajinepalli , Vipin Gupta , Payal Keswarpu , Sarif Kumar Naik
Abstract: The invention provides a system (100) for acquiring cervical images which comprises an image acquisition subsystem (120) for acquiring cervical images (122) of a cervical region of a patient during a colposcopy procedure, and a display subsystem (160) for displaying the cervical images on a display (060) by providing image data (162) of the cervical images to the display. According to the invention, the image acquisition subsystem (120) is arranged for, when operating in an interval mode, acquiring the cervical images (122) at predetermined time intervals to obtain a time-series of cervical images showing changes in the cervical region over time, and reporting a progress of said acquiring to the display subsystem. Moreover, the display subsystem (160) is arranged for establishing a progress indicator (400-416) on the display by generating indicator data (164) and providing the indicator data to the display (060), the progress indicator providing visual feedback on the progress of said acquiring to a user. Accordingly, the user is provided with visual feedback on a status of the acquiring of the cervical images. In particular, the progress indicator avoids that the user experiences a loss of control or confusion.
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公开(公告)号:US11823479B2
公开(公告)日:2023-11-21
申请号:US17615299
申请日:2020-06-02
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Sarif Kumar Naik , Vidya Ravi , Ravindra Balasaheb Patil , Meru Adagouda Patil
IPC: G06V30/00 , G06V30/422 , G06V10/82 , G06V30/18 , G06V10/426 , G06V30/222
CPC classification number: G06V30/422 , G06V10/426 , G06V10/82 , G06V30/18076 , G06V30/222
Abstract: A non-transitory computer readable medium (107, 127) stores instructions executable by at least one electronic processor (101, 113) to perform a component co-replacement recommendation method (200). The method includes: identifying components of a medical device by analyzing a technical document (130) related to the medical device; identifying component symbols (132) representing the components in drawings of the technical document; extracting relationships between the components of the medical device based on graphical connections (136) between the component symbols in the drawings of the technical document; generating a component connections graph (124) representing the relationships between the components of the medical device, the graph including nodes (138) corresponding to the components and connections (136) between the components; receiving an identification of a component to be replaced; and determining a co-replacement recommendation (122) for the component to be replaced based on the component connections graph.
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公开(公告)号:US11967421B2
公开(公告)日:2024-04-23
申请号:US16981331
申请日:2019-03-06
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Ravindra Balasaheb Patil , Meru Adagouda Patil , Sarif Kumar Naik , Vidya Ravi
IPC: G16H40/40 , G06F11/30 , G06F40/205 , G06F40/211 , G06N5/025 , G06N5/04 , G16H30/00
CPC classification number: G16H40/40 , G06F11/30 , G06F40/205 , G06F40/211 , G06N5/025 , G06N5/04 , G16H30/00
Abstract: In a monitoring method for generating maintenance alerts, component IDs are extracted which identify medical imaging device components in electronic medical imaging device manuals (25, 26, 27, 28). Operating parameters of the medical imaging device components and associated operating parameter ranges are also extracted from the manuals, based on numeric values, parameter terms identifying operating parameters, and linking terms or symbols indicative of equality or inequality that connect the numeric values and parameter terms. The operating parameter ranges are formulated into decision rules (36) which are applied to log data (40) generated by a monitored medical imaging device (2) to detect out-of-range log data generated by the monitored medical imaging device. Maintenance alerts (24) are displayed on a display (18) in response to the detected out-of-range log data. The maintenance alerts are generated from out-of-range log data and are associated with component IDs contained in the out-of-range log data.
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4.
公开(公告)号:US20240008783A1
公开(公告)日:2024-01-11
申请号:US18036181
申请日:2021-11-10
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Krishnamoorthy Palanisamy , Rithesh Sreenivasan , Rajendra Singh Sisodia , Sarif Kumar Naik , Gereon Vogtmeier , Mark Thomas Johnson , Steffen Weiss , Nagaraju Bussa , Christopher Günther Leussler
CPC classification number: A61B5/165 , A61B5/4803 , G16H10/20 , G06V40/174 , G10L25/63
Abstract: The present invention relates to a system (100) for sensor signals dependent dialog generation during a medical imaging process, the system (100) comprising a sensor module (10), configured to measure condition data of a patient; a processor module (20), configured to analyze the condition data of the patient to determine biometric and physical condition data of the patient; a dialog data generation module (30), configured to generate questionnaires data for obtaining real-time feedback from the patient during the medical imaging process, wherein the questionnaires data is based on a parameter of the medical imaging process and on the determined biometric and physical condition data of the patient.
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5.
公开(公告)号:US20240006064A1
公开(公告)日:2024-01-04
申请号:US18037790
申请日:2021-11-18
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Sarif Kumar Naik , Ravindra Patil , Karthick Raja , Shraddha Barodia , Sampad Kumar Mohanty , Rose Ramasamy , Meru Adagouda Patil
CPC classification number: G16H40/40 , G16H40/20 , G06T19/006 , G06T2210/04 , G06T2219/004
Abstract: A method (100) of determining a layout for one or more medical devices (12) in a medical facility includes: obtaining images (30) of a plurality of locations of the medical facility; mapping the obtained images to an architectural layout of the medical facility; generating a three-dimensional (3D) model of the medical facility based on the mapping; determining a recommended location for the one or more medical devices using the 3D model; determining a recommended placement of the one or more medical devices in the recommended location based on the recommended location; and outputting an image (40) showing the determined recommended placement of the medical devices in the recommended location.
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