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US20190336824A1 - System and method for predictive health monitoring - Google Patents

System and method for predictive health monitoring
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Publication number
US20190336824A1
US20190336824A1US16/509,465US201916509465AUS2019336824A1US 20190336824 A1US20190336824 A1US 20190336824A1US 201916509465 AUS201916509465 AUS 201916509465AUS 2019336824 A1US2019336824 A1US 2019336824A1
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Prior art keywords
health
data
user
neural networks
biometric
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Abandoned
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US16/509,465
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Coleman Fung
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Blue Goji LLC
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Blue Goji LLC
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Publication date
Priority claimed from US14/012,879external-prioritypatent/US10737175B2/en
Priority claimed from US14/846,966external-prioritypatent/US10080958B2/en
Priority claimed from US15/175,043external-prioritypatent/US9766696B1/en
Priority claimed from US15/187,787external-prioritypatent/US10124255B2/en
Priority claimed from US15/193,112external-prioritypatent/US20160287989A1/en
Priority claimed from US15/219,115external-prioritypatent/US9849333B2/en
Priority claimed from US15/992,108external-prioritypatent/US20180264318A1/en
Application filed by Blue Goji LLCfiledCriticalBlue Goji LLC
Priority to US16/509,465priorityCriticalpatent/US20190336824A1/en
Priority to US16/527,434prioritypatent/US10722749B2/en
Publication of US20190336824A1publicationCriticalpatent/US20190336824A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A system and method for predictive health monitoring using neural networks, comprising a wearable device with biometric sensors, a database containing data from multiple users across many categories of health-related factors, a first set of neural networks trained on the database that makes health predictions based on a single health factor, and a second neural network that makes health predictions based on a combination of the predictions made by the first set of neural networks.

Description

Claims (14)

What is claimed is:
1. A system for predictive health monitoring, comprising:
a cloud-based health prediction engine comprising:
a plurality of first-stage neural networks, each configured to make a first health prediction based on a health-related factor;
a second-stage neural network, configured to make a second health prediction based on a combination of the first health predictions from at least two of the plurality of first-stage neural networks;
a data storage device configured to store a history of biometric data and a history of health predictions for a user of a wearable biometric monitoring and feedback device;
a network-connected server comprising a memory, a processor, and a plurality of programming instructions, wherein the programming instructions, when operating on the processor, cause the network-connected server to:
receive biometric data from a wearable biometric monitoring and feedback device for the user;
retrieve the history of biometric data and the history of health predictions for the user from the data storage device;
process the biometric data, history of biometric data, and the history of health predictions through at least two of the plurality of first-stage neural networks;
receive the first health prediction from each first-stage neural network through which the biometric data was processed;
process the first health predictions received through a second-stage neural network;
receive the second health prediction from the second-stage neural network;
send the second health prediction to the wearable biometric monitoring and feedback device, and
a wearable biometric monitoring and feedback device comprising:
a plurality of sensors for gathering biometric data from the user of the wearable biometric monitoring and feedback device;
a network device configured to connect to the cloud-based health prediction system;
a screen for providing feedback to the user; and
a computing device comprising a memory, a processor, and a plurality of programming instructions, wherein the programming instructions, when operating on the processor, cause the computing device to:
obtain biometric data from at least two of the plurality of sensors for the user of the wearable biometric monitoring and feedback device;
send the biometric data obtained to the cloud-based health prediction engine using the network device;
receive a second health prediction from a cloud-based health prediction engine; and
display the second health prediction to the user.
2. The system ofclaim 1, wherein the user can enter an age, a health profile, a type of exercise, or a training goal, and wherein the data processed by the neural networks further comprises the user's age, the health profile, the type of exercise, or the training goal.
3. The system ofclaim 2, wherein the data processed by the neural networks further comprises statistical data for a group of users similar in at least one aspect to the user of the wearable biometric monitoring and feedback device.
4. The system ofclaim 3, wherein the statistical data comprises data representative of a global or national group.
5. The system ofclaim 3, wherein the statistical data comprises data representative of a local or regional group.
6. The system ofclaim 1, wherein the wearable biometric monitoring and feedback device further comprises sensors that collect non-biometric data, and wherein the data processed by the neural networks further comprises the non-biometric data.
7. The system ofclaim 1, wherein the wearable biometric monitoring and feedback device uses the network device to obtain weather data from the Internet, and wherein the data processed by the neural networks further comprises the weather data.
8. A method for predictive health monitoring, comprising the steps of:
obtaining biometric data for a user of a wearable biometric monitoring and feedback device;
retrieving a history of biometric data and a history of health predictions for the user from a data storage device;
processing the biometric data, history of biometric data, and the history of health predictions through at least two of a plurality of first-stage neural networks, the plurality of first-stage neural networks, each configured to make a first health prediction based on a separate health-related factor;
receiving a first health prediction from each first-stage neural network through which the biometric data was processed;
processing the first health predictions received through a second-stage neural network, the second-stage neural network configured to make a second health prediction based on a combination of the first health predictions from at least two of the plurality of first-stage neural networks;
receiving the second health prediction from the second-stage neural network; and
displaying the second health prediction to the user of the wearable biometric monitoring and feedback device.
9. The method ofclaim 8, wherein the user can enter an age, a health profile, a type of exercise, or a training goal, and wherein the data processed by the neural networks further comprises the user's age, the health profile, the type of exercise, or the training goal.
10. The method ofclaim 9, wherein the data processed by the neural networks further comprises statistical data for a group of users similar in at least one aspect to the user of the wearable biometric monitoring and feedback device.
11. The method ofclaim 10, wherein the statistical data comprises data representative of a global or national group.
12. The method ofclaim 10, wherein the statistical data comprises data representative of a local or regional group.
13. The method ofclaim 8, wherein the wearable biometric monitoring and feedback device further comprises sensors that collect non-biometric data, and wherein the data processed by the neural networks further comprises the non-biometric data.
14. The method ofclaim 8, wherein the wearable biometric monitoring and feedback device further comprises a network device that obtains weather data from the Internet, and wherein the data processed by the neural networks further comprises the weather data.
US16/509,4652012-08-312019-07-11System and method for predictive health monitoringAbandonedUS20190336824A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US16/509,465US20190336824A1 (en)2012-08-312019-07-11System and method for predictive health monitoring
US16/527,434US10722749B2 (en)2012-08-312019-07-31System and method using two-stage neural networks for predictive health monitoring

Applications Claiming Priority (14)

Application NumberPriority DateFiling DateTitle
US201261696068P2012-08-312012-08-31
US14/012,879US10737175B2 (en)2012-08-312013-08-28Mobile and adaptable fitness system
US14/846,966US10080958B2 (en)2015-09-072015-09-07Multiple electronic control devices
US201662310568P2016-03-182016-03-18
US201662330602P2016-05-022016-05-02
US201662330642P2016-05-022016-05-02
US15/175,043US9766696B1 (en)2016-03-182016-06-07Apparatus for natural torso tracking and feedback for electronic interaction
US15/187,787US10124255B2 (en)2012-08-312016-06-21Multiple electronic control and tracking devices for mixed-reality interaction
US15/193,112US20160287989A1 (en)2012-08-312016-06-27Natural body interaction for mixed or virtual reality applications
US15/219,115US9849333B2 (en)2012-08-312016-07-25Variable-resistance exercise machine with wireless communication for smart device control and virtual reality applications
US15/853,746US10265578B2 (en)2012-08-312017-12-23Variable-resistance exercise machine with wireless communication for smart device control and interactive software applications
US201862661220P2018-04-232018-04-23
US15/992,108US20180264318A1 (en)2012-08-312018-05-29System and methods for a smart weight training belt
US16/509,465US20190336824A1 (en)2012-08-312019-07-11System and method for predictive health monitoring

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US15/992,108Continuation-In-PartUS20180264318A1 (en)2012-08-312018-05-29System and methods for a smart weight training belt

Related Child Applications (2)

Application NumberTitlePriority DateFiling Date
US15/175,043ContinuationUS9766696B1 (en)2012-08-312016-06-07Apparatus for natural torso tracking and feedback for electronic interaction
US16/527,434ContinuationUS10722749B2 (en)2012-08-312019-07-31System and method using two-stage neural networks for predictive health monitoring

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US20190336824A1true US20190336824A1 (en)2019-11-07

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US16/509,465AbandonedUS20190336824A1 (en)2012-08-312019-07-11System and method for predictive health monitoring
US16/527,434ActiveUS10722749B2 (en)2012-08-312019-07-31System and method using two-stage neural networks for predictive health monitoring

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CN111540471A (en)*2020-05-122020-08-14西安交通大学医学院第一附属医院Health state tracking and early warning method and system based on user health data
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US20220004915A1 (en)*2020-07-022022-01-06Kpn Innovations, Llc.Method of and system for an interactive system for activity quantification
US20220028517A1 (en)*2020-07-272022-01-27Kpn Innovations, Llc.Method of and system for determining a prioritized instruction set for a user
US11287876B2 (en)*2019-08-142022-03-29International Business Machines CorporationManaging user movement via machine learning
JP2023520303A (en)*2020-02-272023-05-17エム. マーティン,トッド Mobile intelligent injury minimization system and method
CN117423445A (en)*2023-12-112024-01-19广东壹健康健康产业集团股份有限公司Intelligent finger ring control method and device based on user cluster perception
CN118782273A (en)*2024-09-112024-10-15四川观想科技股份有限公司 Health management method and system based on AI digital human
US12380191B2 (en)*2022-02-252025-08-05Hitachi, Ltd.Information processing system and information processing method

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US12142381B1 (en)*2019-08-292024-11-12United Services Automobile Association (Usaa)Systems and methods for offering products based on medical assessments

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US20190180637A1 (en)*2017-12-082019-06-13The Regents Of The University Of Colorado, A Body CorporateVirtually Resilient Simulator
US11287876B2 (en)*2019-08-142022-03-29International Business Machines CorporationManaging user movement via machine learning
JP2023520303A (en)*2020-02-272023-05-17エム. マーティン,トッド Mobile intelligent injury minimization system and method
JP7748378B2 (en)2020-02-272025-10-02マーティン,トッド Mobile intelligent injury minimization system and method
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US20240120064A1 (en)*2020-02-272024-04-11Todd MartinFitness Watch Configured with Micro AI
CN111540471A (en)*2020-05-122020-08-14西安交通大学医学院第一附属医院Health state tracking and early warning method and system based on user health data
US20210387584A1 (en)*2020-06-152021-12-16Lytx, Inc.Sensor fusion for collision detection
US11769332B2 (en)*2020-06-152023-09-26Lytx, Inc.Sensor fusion for collision detection
US12106186B2 (en)*2020-07-022024-10-01Kpn Innovations, LlcMethod of and system for an interactive system for activity quantification
US20220004915A1 (en)*2020-07-022022-01-06Kpn Innovations, Llc.Method of and system for an interactive system for activity quantification
US20220028517A1 (en)*2020-07-272022-01-27Kpn Innovations, Llc.Method of and system for determining a prioritized instruction set for a user
US11756663B2 (en)*2020-07-272023-09-12Kpn Innovations, Llc.Method of and system for determining a prioritized instruction set for a user
US12380191B2 (en)*2022-02-252025-08-05Hitachi, Ltd.Information processing system and information processing method
CN117423445A (en)*2023-12-112024-01-19广东壹健康健康产业集团股份有限公司Intelligent finger ring control method and device based on user cluster perception
CN118782273A (en)*2024-09-112024-10-15四川观想科技股份有限公司 Health management method and system based on AI digital human

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US20190344120A1 (en)2019-11-14

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