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US20190374137A1 - System coordinator and modular architecture for open-loop and closed-loop control of diabetes - Google Patents

System coordinator and modular architecture for open-loop and closed-loop control of diabetes
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Publication number
US20190374137A1
US20190374137A1US16/546,335US201916546335AUS2019374137A1US 20190374137 A1US20190374137 A1US 20190374137A1US 201916546335 AUS201916546335 AUS 201916546335AUS 2019374137 A1US2019374137 A1US 2019374137A1
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United States
Prior art keywords
data
insulin
meal
controller device
control
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
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US16/546,335
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Boris P. Kovatchev
Stephen D. Patek
Marc D. Breton
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UVA Licensing and Ventures Group
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University of Virginia Patent Foundation
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Priority to US16/546,335priorityCriticalpatent/US20190374137A1/en
Assigned to UNIVERSITY OF VIRGINIAreassignmentUNIVERSITY OF VIRGINIAASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BRETON, MARC D., KOVATCHEV, BORIS P., PATEK, STEPHEN D.
Assigned to UNIVERSITY OF VIRGINIA PATENT FOUNDATIONreassignmentUNIVERSITY OF VIRGINIA PATENT FOUNDATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: UNIVERSITY OF VIRGINIA
Publication of US20190374137A1publicationCriticalpatent/US20190374137A1/en
Priority to US18/303,962prioritypatent/US20230260617A1/en
Priority to US18/333,955prioritypatent/US20230368885A1/en
Priority to US18/390,081prioritypatent/US20240136040A1/en
Priority to US18/931,879prioritypatent/US20250054597A1/en
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Abstract

A structure, method, and computer program product for a diabetes control system provides, but is not limited thereto, the following: open-loop or closed-loop control of diabetes that adapts to individual physiologic characteristics and to the behavioral profile of each person. An exemplary aspect to this adaptation is biosystem (patient or subject) observation and modular control. Consequently, established is the fundamental architecture and the principal components for a modular system, which may include algorithmic observers of patients' behavior and metabolic state, as well as interacting control modules responsible for basal rate, insulin boluses, and hypoglycemia prevention.

Description

Claims (9)

1. A method for managing diabetes of a patient, comprising:
receiving metabolic measurement data and metabolic state estimate data of a patient at a system coordinator controller device;
routing the received data to one or more activated controller devices selectively activated by the system coordinator controller device for diabetes management of the patient, wherein the selectively activated controller devices include a daily profile controller device configured to compute a reference insulin infusion signal in response to at least a metabolic state estimate of the patient, a meal controller device configured to compute a recommended meal insulin infusion signal in response to data relating to intake of a meal by the patient, and a compensation control to target controller device configured to compute a recommended residual insulin infusion signal in response to data relating to glucose level excursions of the patient caused by non-meal occurrences; and
receiving and monitoring at a supervision controller device the insulin infusion signals from the activated controller devices and non-activated controller devices;
adjusting the insulin infusion signals in accordance with a total insulin infusion amount in dependence on a number of activated controller devices to produce an adjusted total insulin infusion signal, wherein the supervision controller device is configured to send the adjusted total insulin infusion signal to the patient as a suggestion, in an open loop control mode, and send the adjusted total insulin infusion signal to an insulin infusion pump in a closed loop control mode in order for the insulin infusion pump to administer insulin based on the adjusted total insulin infusion signal; and
receiving at a data acquisition controller device continuous glucose monitoring data, insulin pump data, exercise data, and meal data from external data sources, wherein the data acquisition controller device is configured to output data to the system coordinator controller device, such that the system coordinator controller receives the output data in addition to the received metabolic measurement data and the metabolic state estimate data.
US16/546,3352009-05-292019-08-21System coordinator and modular architecture for open-loop and closed-loop control of diabetesPendingUS20190374137A1 (en)

Priority Applications (5)

Application NumberPriority DateFiling DateTitle
US16/546,335US20190374137A1 (en)2009-05-292019-08-21System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/303,962US20230260617A1 (en)2009-05-292023-04-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/333,955US20230368885A1 (en)2009-05-292023-06-13System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/390,081US20240136040A1 (en)2009-05-292023-12-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/931,879US20250054597A1 (en)2009-05-292024-10-30System coordinator and modular architecture for open-loop and closed-loop control of diabetes

Applications Claiming Priority (4)

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US18245409P2009-05-292009-05-29
PCT/US2010/036629WO2010138848A1 (en)2009-05-292010-05-28System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US201113322943A2011-11-292011-11-29
US16/546,335US20190374137A1 (en)2009-05-292019-08-21System coordinator and modular architecture for open-loop and closed-loop control of diabetes

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PCT/US2010/036629ContinuationWO2010138848A1 (en)2009-05-292010-05-28System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US13/322,943ContinuationUS10420489B2 (en)2009-05-292010-05-28System coordinator and modular architecture for open-loop and closed-loop control of diabetes

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US18/303,962ContinuationUS20230260617A1 (en)2009-05-292023-04-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes

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US13/322,943Active2033-10-12US10420489B2 (en)2009-05-292010-05-28System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US16/546,335PendingUS20190374137A1 (en)2009-05-292019-08-21System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/303,962PendingUS20230260617A1 (en)2009-05-292023-04-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/333,955PendingUS20230368885A1 (en)2009-05-292023-06-13System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/390,081PendingUS20240136040A1 (en)2009-05-292023-12-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/931,879PendingUS20250054597A1 (en)2009-05-292024-10-30System coordinator and modular architecture for open-loop and closed-loop control of diabetes

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US18/303,962PendingUS20230260617A1 (en)2009-05-292023-04-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/333,955PendingUS20230368885A1 (en)2009-05-292023-06-13System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/390,081PendingUS20240136040A1 (en)2009-05-292023-12-20System coordinator and modular architecture for open-loop and closed-loop control of diabetes
US18/931,879PendingUS20250054597A1 (en)2009-05-292024-10-30System coordinator and modular architecture for open-loop and closed-loop control of diabetes

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EP (5)EP4224483A1 (en)
JP (1)JP2012527981A (en)
CN (1)CN102576375B (en)
WO (1)WO2010138848A1 (en)

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