US2017049339A1PendingUtilityA1
Mobile System For Comprehensive Medical Examination
Est. expiryOct 31, 2034(~8.3 yrs left)· nominal 20-yr term from priority
Inventors:Rajeshwar Kapoor
A61B 5/6823A61B 5/14542A61B 5/0008A61B 5/6887A61B 5/024A61B 8/00A61B 5/0022G06F 19/3418G06F 19/322A61B 5/742A61B 5/02055A61B 5/04085A61B 5/0472A61B 7/04A61B 5/0006A61B 5/282A61B 5/366G16H 40/67G16H 50/30A61B 5/091A61B 5/002A61B 2560/0443G16H 10/60A61B 5/1135A61B 5/021A61B 5/02028A61B 7/00Y02A90/10
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Claims
Abstract
A comprehensive and integrated point-of-care diagnostic system which consists of biosensors such as stethoscope front-recorder device, a blood pressure monitor, a spirometer, a pulse oximetry, a thermometer, a handheld ultrasound machine, a blood glucose meter, an otoscope and an ophthalmoscope. The biosensors collect data from a user or patient. The data collected is then transferred to a mobile device which then transfers the data to health management server for analysis and notifications.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method of acquiring biosensor parameters for comprehensive medical examination comprising:
a. Acquiring via a processor at a mobile device at least the following: an electrical footprint of the heart from a front-end recorder device, a mechanical footprint of the heart from a front-end recorder device, blood oxygen saturation, heart rate, core body temperature, systolic and diagnostic blood pressure, spirometer data, weight and height; b. The mobile device wirelessly transferring at least the following: an electrical footprint of the heart, a mechanical footprint of the heart, blood oxygen saturation, heart rate, core body temperature, systolic and diagnostic blood pressure, spirometer data, weight and height, to a server; c. Synchronizing the mechanical and electrical footprints of the heart; d. Determining at the server a normal and a pathological heart sounds the mechanical footprint of the heart, normal and abnormal heart rhythm from the electrical footprints of the heart; e. Analyzing at the server at least the following: an electrical footprint of the heart, a mechanical footprint of the heart, blood oxygen saturation, heart rate, core body temperature, systolic and diagnostic blood pressure, spirometer data, weight and height, thereby determining pre-established thresholds; f. Sending and displaying notification to care providers and stake holders.
2 . The method according to claim 1 wherein the mobile device is a cellular telephone.
3 . The method according to claim 1 wherein the mobile device is a tablet computer.
4 . The method according to claim 1 , further acquiring ultrasound data.
5 . A system for acquiring biosensor parameters for comprehensive medical examination comprising:
a. A mobile device that contains a processor, memory storing instructions being executed by the processor performing the following: b. Acquire at least the following: an electrical footprint of the heart, a mechanical footprint of the heart, blood oxygen saturation, heart rate, core body temperature, systolic and diagnostic blood pressure, spirometer data, Weight and height; c. Synchronize the mechanical and electrical footprints of the heart; d. Wirelessly transfer at least the following: an electrical footprint of the heart, a mechanical footprint of the heart, blood oxygen saturation, heart rate, core body temperature, systolic and diagnostic blood pressure, spirometer data, weight and height, to a health management server, e. The health management server analyzing at the server at least the following: an electrical footprint of the heart, a mechanical footprint of the heart, blood oxygen saturation, heart rate, core body temperature, systolic and diagnostic blood pressure, spirometer data, weight and height, thereby determining pre-estasblished thresholds; f. The heath management server sending and displaying notification to care providers and stake holders.
8 . A method of acquiring biosensor parameters comprising:
a. Configuring a front-end recorder device with biological sensors to acquire at least one of mechanical footprint and electrical footprint of the heart; b. Wirelessly transmitting the at least one of mechanical footprint and electrical footprint of the heart to a mobile device, using a processor and wireless module; c. Transmitting the at least one of mechanical footprint and electrical footprint of the heart to a remote server, wherein the remote server analyzes the at least one of mechanical footprint and electrical footprint of the heart and determines cardiac malfunction; d. Transmitting the results to the mobile device and archiving the results after transmission; e. Displaying on the mobile device the result of the analysis.Join the waitlist — get patent alerts
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