Patents by Inventor Guodong GAO
Guodong GAO has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12293841Abstract: A method may receive historical metabolic values for an individual having a first medical condition. A method may provide a first subset of the historical metabolic values to a machine learning model to train a generative machine learning model. A method may generate a first predicted metabolic value based on the first subset of historical metabolic values. A method may calculate a root mean square error (RMSE) between the first predicted metabolic value and a corresponding actual metabolic value of a second subset of historical metabolic values. A method may train the generative machine learning model to minimize the RMSE. A method may generate a trained generative machine learning model based on the training.Type: GrantFiled: September 20, 2024Date of Patent: May 6, 2025Assignee: Welldoc, Inc.Inventors: Junjie Luo, Abhimanyu Kumbara, Anand K. Iyer, Mansur E. Shomali, Guodong Gao
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Patent number: 12279864Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: May 6, 2024Date of Patent: April 22, 2025Assignee: Welldoc, Inc.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Patent number: 12283381Abstract: Methods and devices include predicting future glucose and engagement levels for a user by receiving the user's glucose levels collected by a continuous glucose monitoring (CGM) device over a time period, receiving engagement data associated with the user, wherein the engagement data are associated with the user's medication intake, diet, physical activity, laboratory results, and education activity, determining a first glycemia risk index (GRI) value, determining, using a machine learning model and responsive to the user's glucose levels and the engagement data collected over the time period, one or more predictions for future glucose levels for the user including a prediction that a future GRI value is greater than or less than the first GRI value, and determining, using the machine learning model and responsive to the user's engagement data collected over the time period, one or more predictions for future engagement levels.Type: GrantFiled: September 20, 2024Date of Patent: April 22, 2025Assignee: Welldoc, Inc.Inventors: Anand K. Iyer, Abhimanyu Kumbara, Mansur E. Shomali, Junjie Luo, Guodong Gao
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Publication number: 20250014760Abstract: Methods and devices include predicting future glucose and engagement levels for a user by receiving the user's glucose levels collected by a continuous glucose monitoring (CGM) device over a time period, receiving engagement data associated with the user, wherein the engagement data are associated with the user's medication intake, diet, physical activity, laboratory results, and education activity, determining a first glycemia risk index (GRI) value, determining, using a machine learning model and responsive to the user's glucose levels and the engagement data collected over the time period, one or more predictions for future glucose levels for the user including a prediction that a future GRI value is greater than or less than the first GRI value, and determining, using the machine learning model and responsive to the user's engagement data collected over the time period, one or more predictions for future engagement levels.Type: ApplicationFiled: September 20, 2024Publication date: January 9, 2025Applicant: Welldoc, Inc.Inventors: Anand K. IYER, Abhimanyu KUMBARA, Mansur E. SHOMALI, Junjie LUO, Guodong GAO
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Publication number: 20240285194Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: May 6, 2024Publication date: August 29, 2024Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO
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Patent number: 12011262Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: December 14, 2022Date of Patent: June 18, 2024Assignee: WELLDOC, INC.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Publication number: 20230134811Abstract: Methods and devices include managing a metabolic metric of a user by determining an activity behavior score for the user based on self-monitoring activity inputs and activity performance. A carbohydrate behavior score for the user may be determined based on self-monitoring carbohydrate inputs and carbohydrate performance. A medicine behavior score may be determined based on user consumption of medicine according to a medicine schedule. A user cluster may be identified from a plurality of clusters that are determined based on receiving initial user activity, carbohydrate and medicine behavior scores for a plurality of initial users. The plurality of user clusters may be generated by applying a clustering algorithm to the initial user activity, carbohydrate, medicine behavior scores. A metabolic metric trend may be determined based on the user cluster and used to generate a treatment plan for the user to improve a metabolic metric outcome.Type: ApplicationFiled: November 2, 2022Publication date: May 4, 2023Applicant: Welldoc, Inc.Inventors: Anand IYER, Malinda PEEPLES, Mansur SHOMALI, Abhimanyu KUMBARA, Michelle DUGAS, Guodong GAO, Junjie LUO
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Publication number: 20230110814Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: December 14, 2022Publication date: April 13, 2023Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO
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Patent number: 11564600Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: May 11, 2022Date of Patent: January 31, 2023Assignee: Welldoc, Inc.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Publication number: 20220265179Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: May 11, 2022Publication date: August 25, 2022Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO
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Patent number: 11357427Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: September 14, 2021Date of Patent: June 14, 2022Assignee: Welldoc, Inc.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Patent number: 11344232Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: April 9, 2021Date of Patent: May 31, 2022Assignee: Welldoc, Inc.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Patent number: 11298054Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: April 9, 2021Date of Patent: April 12, 2022Assignee: Welldoc, Inc.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Publication number: 20210401333Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: September 14, 2021Publication date: December 30, 2021Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO
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Patent number: 11147480Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: GrantFiled: March 19, 2021Date of Patent: October 19, 2021Assignee: Welldoc, Inc.Inventors: Shiping Liu, Mansur Shomali, Abhimanyu Kumbara, Anand Iyer, Malinda Peeples, Michelle Dugas, Kenyon Crowley, Guodong Gao
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Publication number: 20210290111Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: March 19, 2021Publication date: September 23, 2021Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO
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Publication number: 20210290113Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: April 9, 2021Publication date: September 23, 2021Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO
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Publication number: 20210290112Abstract: Methods and devices include automated coaching for management of glucose states by receiving a user's glucose levels using a continuous glucose monitoring (CGM) device, determining a time in range (TIR) value, determining a TIR state, receiving a glucose variability (GV) value, determining a GV state, determining a starting state based on the TIR state and the GV state, determining that the starting state corresponds to a non-ideal state, generating an optimized pathway to reach an ideal state based on one or more account vectors such as addressing self-management behavior including food, activity, and medication use. The optimized pathway may further be based on computer detection and classification of significant events of interest over time.Type: ApplicationFiled: April 9, 2021Publication date: September 23, 2021Applicant: Welldoc, Inc.Inventors: Shiping LIU, Mansur SHOMALI, Abhimanyu KUMBARA, Anand IYER, Malinda PEEPLES, Michelle DUGAS, Kenyon CROWLEY, Guodong GAO