Patents by Inventor John Hatlestad
John Hatlestad 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: 9480848Abstract: Systems, devices and methods for using environmental data to manage health care are disclosed. One aspect is an advanced patient management system. In various embodiments, the system includes at least one implantable medical device (IMD) to acquire at least one IMD parameter indicative of patient wellness, means to acquire at least one environmental parameter from at least one external source, and means to correlate the at least one parameter indicative of patient wellness and the at least one environmental parameter to assist with patient health care decisions. Other aspects and embodiments are provided herein.Type: GrantFiled: July 18, 2011Date of Patent: November 1, 2016Assignee: Cardiac Pacemakers, Inc.Inventors: John Hatlestad, Jeffrey E. Stahmann, Qingsheng Zhu
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Patent number: 9375566Abstract: An embodiment of a device for reporting a heart failure status of a patient comprises: a parameter acquisition module configured to acquire at least one trended heart failure parameter; a predetermined event acquisition module configured to acquire at least one predetermined event corresponding to the at least one trended heart failure parameter, wherein each of the at least one predetermined event represents an event condition where a predetermined event definition is satisfied; an alert acquisition module configured to acquire at least one heart failure status alert associated with the at least one predetermined event, wherein each of the at least one alert represents an alert condition where a predetermined alert definition is satisfied; and an output communication module configured to communicate the at least one heart failure status alert.Type: GrantFiled: July 18, 2011Date of Patent: June 28, 2016Assignee: Cardiac Pacemakers, Inc.Inventors: Jeffrey E. Stahmann, John Hatlestad, Qingsheng Zhu
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Patent number: 9089275Abstract: This patent document discusses, among other things, systems, devices, and methods for enhancing detection of pulmonary edema using, in addition to thoracic impedance, one or a combination of: physiologic information about a subject, at least one statistical parameter, a user-programmable detection level, at least one parameter associated with a previous pulmonary edema event, and patient symptom information about the subject. In one example, a (base) thoracic impedance threshold is modified to an adjusted thoracic impedance threshold. The adjusted thoracic impedance threshold provides an increased sensitivity of pulmonary edema detection as compared to the base thoracic impedance threshold. In another example, an alert is provided to a subject, a caregiver, or other user based on a pulmonary edema indication determined by the present systems, devices, and methods. In a further example, a therapy (provided to the subject) is adjusted or initiated in response to the pulmonary edema indication.Type: GrantFiled: May 11, 2005Date of Patent: July 28, 2015Assignee: Cardiac Pacemakers, Inc.Inventors: Jeffrey E. Stahmann, John Hatlestad, Jesse W. Hartley
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Patent number: 8391989Abstract: Systems, devices and methods for defining, identifying and using health-related significant events are disclosed. One aspect is a programmable device having machine executable instructions for performing a method to assist with managing a patient's health. In various embodiments, at least one previously-defined event is detected based on a number of acquired health-related parameters. The at least one detected event is recorded with an associated time when the at least one detected significant event occurred. An action is triggered based on the at least one detected event. The at least one detected event is displayed with at least one trended health-related parameter in a single display area. Other aspects and embodiments are provided herein.Type: GrantFiled: December 18, 2002Date of Patent: March 5, 2013Assignee: Cardiac Pacemakers, Inc.Inventors: John Hatlestad, Jeffrey E. Stahmann, Qingsheng Zhu
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Patent number: 8366641Abstract: Calibrating a posture detector for a patient's body involves measuring outputs of one or more sensors disposed in relation to the patient's body while the patient assumes a plurality of positions. A transfer matrix is formed having coefficients corresponding to the measured outputs. The transfer matrix defines a relationship between a coordinate system of the one or more sensors and a coordinate system of the patient's body. The body coordinate system is used as a reference coordinate system for posture detection. Posture, including tilt and/or tilt angle, may be determined based on first and second rotational angles defined in relation to the body coordinate system.Type: GrantFiled: November 18, 2005Date of Patent: February 5, 2013Assignee: Cardiac Pacemakers, Inc.Inventors: Hua Wang, John Hatlestad
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Patent number: 8317719Abstract: Adventitious lung sounds indicative of lung congestion are detected using an implantable sensor. The sensor is adapted to be positioned adjacent to a pulmonary system and to output signals indicative of lung sounds in response to pulmonary system activity. A controller receives the signals and processes the signals to detect the presence of adventitious lung sounds. A respiratory cycle sensor operating in conjunction with the lung-sound sensor enables classification of an adventitious lung sound according to its time occurrence within the respiratory cycle. Posture sensing in conjunction with lung-sound sensing provides valuable additional information as to the severity of the lung congestion.Type: GrantFiled: April 26, 2011Date of Patent: November 27, 2012Assignee: Cardiac Pacemakers, Inc.Inventors: John Hatlestad, Qingsheng Zhu, Jeffrey E. Stahmann
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Publication number: 20110275942Abstract: An embodiment of a device for reporting a heart failure status of a patient comprises: a parameter acquisition module configured to acquire at least one trended heart failure parameter; a predetermined event acquisition module configured to acquire at least one predetermined event corresponding to the at least one trended heart failure parameter, wherein each of the at least one predetermined event represents an event condition where a predetermined event definition is satisfied; an alert acquisition module configured to acquire at least one heart failure status alert associated with the at least one predetermined event, wherein each of the at least one alert represents an alert condition where a predetermined alert definition is satisfied; and an output communication module configured to communicate the at least one heart failure status alert.Type: ApplicationFiled: July 18, 2011Publication date: November 10, 2011Inventors: Jeffrey E. Stahmann, John Hatlestad, Qingsheng Zhu
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Publication number: 20110275941Abstract: Systems, devices and methods for using environmental data to manage health care are disclosed. One aspect is an advanced patient management system. In various embodiments, the system includes at least one implantable medical device (IMD) to acquire at least one IMD parameter indicative of patient wellness, means to acquire at least one environmental parameter from at least one external source, and means to correlate the at least one parameter indicative of patient wellness and the at least one environmental parameter to assist with patient health care decisions. Other aspects and embodiments are provided herein.Type: ApplicationFiled: July 18, 2011Publication date: November 10, 2011Inventors: John Hatlestad, Jeffrey E. Stahmann, Qingsheng Zhu
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Patent number: 8043213Abstract: Systems, devices and methods for triaging health-related data, such as significant health-related events associated with health-related parameters, are disclosed. One aspect is a method for use in managing a patient's health within a patient management system. In various embodiments of the method, a number of predetermined events are accessed. The events are related to the patient's health and are identified by the patient management system. Each of the predetermined events are classified according to severity using a color-code system. In various embodiments, a red event is an imminent life threatening event, a yellow event is a serious health-related condition that is not imminently life threatening, and a green event is an event that is neither an imminent life threatening event nor a serious health-related condition. Other aspects and embodiments are provided herein.Type: GrantFiled: December 18, 2002Date of Patent: October 25, 2011Assignee: Cardiac Pacemakers, Inc.Inventors: John Hatlestad, Jeffrey E. Stahmann, Qingsheng Zhu, Richard Fogoros
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Publication number: 20110251506Abstract: Systems, devices and methods for defining, identifying and utilizing composite parameter indices from health-related parameters are disclosed. One aspect is a programmable device having machine executable instructions for performing a method to assist with managing a patient's health. In various embodiments, a first set of at least two health-related parameters is acquired. A first composite parameter is generated using the first set of at least two health-related parameters. Other aspects and embodiments are provided herein.Type: ApplicationFiled: June 16, 2011Publication date: October 13, 2011Inventors: John Hatlestad, Jeffrey E. Stahmann, Qingsheng Zhu
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Publication number: 20110201955Abstract: Adventitious lung sounds indicative of lung congestion are detected using an implantable sensor. The sensor is adapted to be positioned adjacent to a pulmonary system and to output signals indicative of lung sounds in response to pulmonary system activity. A controller receives the signals and processes the signals to detect the presence of adventitious lung sounds. A respiratory cycle sensor operating in conjunction with the lung-sound sensor enables classification of an adventitious lung sound according to its time occurrence within the respiratory cycle. Posture sensing in conjunction with lung-sound sensing provides valuable additional information as to the severity of the lung congestion.Type: ApplicationFiled: April 26, 2011Publication date: August 18, 2011Inventors: John Hatlestad, Quingsheng Zhu, Jeffrey E. Stahmann
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Patent number: 7983759Abstract: Systems, devices and methods for reporting multiple health-related parameters are disclosed. One aspect is a programmable device having machine executable instructions for performing a method to report multiple parameters related to a health condition of a patient. In various embodiments, a number of trended health-related parameters, a number of predetermined events corresponding to the number of trended health-related parameters, and a number of alerts associated with the predetermined events are acquired. The number of trended health-related parameters, the number of predetermined events, and the number of alerts are communicated in a manner suitable for use in determining the health condition of the patient. Other aspects and embodiments are provided herein.Type: GrantFiled: December 18, 2002Date of Patent: July 19, 2011Assignee: Cardiac Pacemakers, Inc.Inventors: Jeffrey E. Stahmann, John Hatlestad, Qingsheng Zhu
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Patent number: 7979115Abstract: This patent document discusses systems, devices, and methods for increasing a sensitivity or specificity of thoracic fluid detection in a subject and differentiating between pleural effusion and pulmonary edema. In one example, a thoracic impedance measurement circuit senses a thoracic impedance signal. In another example, a processor receives the thoracic impedance signal and determines whether such thoracic impedance signal is “significant.” A significant thoracic impedance signal indicates the presence of thoracic fluid and may be recognized by comparing the thoracic impedance signal (or variation thereof) to a thoracic impedance threshold. When a significant thoracic impedance signal is recognized, the processor is adapted to detect one or both of: a pleural effusion indication and a pulmonary edema indication using one or a combination of: physiologic information, patient symptom information, and posture information.Type: GrantFiled: January 10, 2008Date of Patent: July 12, 2011Assignee: Cardiac Pacemakers, Inc.Inventors: Jeffrey E. Stahmann, John Hatlestad, Jesse W. Hartley, Richard Fogoros
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Publication number: 20110144526Abstract: This patent document discusses, among other things, systems, devices, and methods for enhancing detection of pulmonary edema using, in addition to thoracic impedance, one or a combination of: physiologic information about a subject, at least one statistical parameter, a user-programmable detection level, at least one parameter associated with a previous pulmonary edema event, and patient symptom information about the subject. In one example, a (base) thoracic impedance threshold is modified to an adjusted thoracic impedance threshold. The adjusted thoracic impedance threshold provides an increased sensitivity of pulmonary edema detection as compared to the base thoracic impedance threshold. In another example, an alert is provided to a subject, a caregiver, or other user based on a pulmonary edema indication determined by the present systems, devices, and methods. In a further example, a therapy (provided to the subject) is adjusted or initiated in response to the pulmonary edema indication.Type: ApplicationFiled: February 23, 2011Publication date: June 16, 2011Inventors: Jeffrey E. Stahmann, John Hatlestad, Jesse W. Hartley
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Patent number: 7931600Abstract: Adventitious lung sounds indicative of lung congestion are detected using an implantable sensor. The sensor is adapted to be positioned adjacent to a pulmonary system and to output signals indicative of lung sounds in response to pulmonary system activity. A controller receives the signals and processes the signals to detect the presence of adventitious lung sounds. A respiratory cycle sensor operating in conjunction with the lung-sound sensor enables classification of an adventitious lung sound according to its time occurrence within the respiratory cycle. Posture sensing in conjunction with lung-sound sensing provides valuable additional information as to the severity of the lung congestion.Type: GrantFiled: August 21, 2009Date of Patent: April 26, 2011Assignee: Cardiac Pacemakers, Inc.Inventors: John Hatlestad, Qingsheng Zhu, Jeffrey E. Stahmann
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Patent number: 7907997Abstract: This patent document discusses, among other things, systems, devices, and methods for enhancing detection of pulmonary edema using, in addition to thoracic impedance, one or a combination of: physiologic information about a subject, at least one statistical parameter, a user-programmable detection level, at least one parameter associated with a previous pulmonary edema event, and patient symptom information about the subject. In one example, a (base) thoracic impedance threshold is modified to an adjusted thoracic impedance threshold. The adjusted thoracic impedance threshold provides an increased sensitivity of pulmonary edema detection as compared to the base thoracic impedance threshold. In another example, an alert is provided to a subject, a caregiver, or other user based on a pulmonary edema indication determined by the present systems, devices, and methods. In a further example, a therapy (provided to the subject) is adjusted or initiated in response to the pulmonary edema indication.Type: GrantFiled: May 11, 2005Date of Patent: March 15, 2011Assignee: Cardiac Pacemakers, Inc.Inventors: Jeffrey E. Stahmann, John Hatlestad, Jesse W. Hartley
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Publication number: 20100137730Abstract: Systems, devices and methods provide for acquiring respiration information. A respiration information device includes timer circuitry to time a plurality of shorter time apertures and a plurality of longer time apertures. A respiration sensor, which may be implemented as a transthoracic impedance sensor, is configured to generate a signal indicative of patient respiration. For each aperture of the plurality of shorter time apertures and for each aperture of the plurality of longer time apertures, an estimated characteristic of the respiration is determined. Respiration metrics are developed using one or both of the estimated respiration characteristics of the shorter time apertures and the estimated respiration characteristics of the longer time apertures.Type: ApplicationFiled: February 5, 2010Publication date: June 3, 2010Inventor: John Hatlestad
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Publication number: 20100076336Abstract: This document discusses, among other things, a cardiac rhythm management device or other implantable medical device that uses thoracic impedance to determine how much fluid is present in the thorax, such as for detecting or predicting congestive heart failure, pulmonary edema, pleural effusion, hypotension, or the like. The thoracic fluid amount determined from the thoracic impedance is compensated for changes in blood resistivity, which may result from changes in hematocrit level or other factors. The blood-resistivity-compensated thoracic fluid amount can be stored in the device or transmitted to an external device for storage or display. The blood-resistivity-compensated thoracic fluid amount can also be used to adjust a cardiac pacing, cardiac resynchronization, or other cardiac rhythm management or other therapy to the patient. This document also discusses applications of the devices and methods for predicting or indicating anemia.Type: ApplicationFiled: December 1, 2009Publication date: March 25, 2010Inventors: Jeffrey E. Stahmann, John Hatlestad, Boyce Moon
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Patent number: 7662105Abstract: Systems, devices and methods provide for acquiring respiration information. A respiration information device includes timer circuitry to time a plurality of shorter time apertures and a plurality of longer time apertures. A respiration sensor, which may be implemented as a transthoracic impedance sensor, is configured to generate a signal indicative of patient respiration. For each aperture of the plurality of shorter time apertures and for each aperture of the plurality of longer time apertures, an estimated characteristic of the respiration is determined. Respiration metrics are developed using one or both of the estimated respiration characteristics of the shorter time apertures and the estimated respiration characteristics of the longer time apertures.Type: GrantFiled: December 14, 2005Date of Patent: February 16, 2010Assignee: Cardiac Pacemakers, Inc.Inventor: John Hatlestad
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Publication number: 20090326599Abstract: A system includes an implantable medical device that includes a trans-thoracic impedance measurement circuit providing a trans-thoracic impedance signal of a subject. A controller is coupled to the trans-thoracic impedance circuit. The controller extracts a respiration signal from the trans-thoracic impedance signal, measures a breathing volume of the subject using the amplitude of the respiration signal and a breathing volume calibration factor, computes an adjusted breathing volume calibration factor using a reference baseline value of the trans-thoracic impedance and a measured baseline value of the trans-thoracic impedance, and computes a calibrated breathing volume using the adjusted breathing volume calibration factor.Type: ApplicationFiled: September 10, 2009Publication date: December 31, 2009Inventors: John Hatlestad, Boyce Moon, Jesse W. Hartley, Jeffrey E. Stahmann