in:(Varad N Srivastava)
ADVERSE EVENT MITIGATION SYSTEMS, METHODS, AND DEVICES
US16944348
[Michael Scott Hood, David L. Ribble, Laetitia Gazagnes, Pierre Deguignet, Aziz A. Bhai, Eric D. Agdeppa, Neal Wiggermann, Charles A. Howell, Varad N. Srivastava, Jason A. Penninger]
US IN Batesville
A sleep apparatus, such as a mattress, comprises a head support surface sized to support a person's head, and a torso support surface sized to support a person's torso. The head support surface is generally laterally sloped moving from a first side toward a second side of the mattress, and the torso support surface is generally laterally sloped moving from the first side toward the second side. In some embodiments, the lateral slope of the head support surface is at least about 15°, the lateral slope of the head support surface is greater than the lateral slope of the torso support surface, and/or, the sleep apparatus slopes in the longitudinal direction as well.
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CAREGIVER LOCATING TAG HAVING ADVANCED FUNCTIONALITY
US16678568
[Bradley T. Smith, Andrew S. Robinson, Steven D. Baker, Pamela Wells, John S. Schroder, Kiana M. Dezelon, Laura A. Hassey, Thomas A. Myers, Eric D. Agdeppa, Varad N. Srivastava]
US IN Batesville
A caregiver badge system includes a caregiver badge configured to be worn by a caregiver and having a cavity defined therein. An identification badge is configured to be positioned within the cavity. The identification badge is removable from the caregiver badge. A transceiver is positioned within the caregiver badge and configured to communicate with a positioning system to identify a location of the caregiver. A battery is positioned within the caregiver badge to power the transceiver.
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INCONTINENCE DETECTION APPARATUS HAVING DISPLACEMENT ALERT
US15257301
[Thomas F. Heil, Steven A. Dixon, Laetitia Gazagnes, Timothy A. Lane, David L. Ribble, Varad N. Srivastava]
US IN Batesville
One embodiment of a method of interrogating a sensor to detect the presence of moisture on an occupant support comprises the steps of A) providing a moisture responsive sensor in a surveillance zone of the occupant support, the sensor being tuned to a center frequency; B) exciting the sensor with an electromagnetic signal having a frequency approximately equal to the center frequency; C) monitoring for a center frequency response from the sensor; D) comparing the center frequency response to an expected center frequency response; and E) if the center frequency response compares favorably to an expected center frequency response, issuing a first output consistent with the favorable comparison.
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METHOD AND APPARATUS FOR COLLECTING PATIENT IDENTIFICATION
US13793414
[Irvin J. VANDERPOHL, III, Varad N. Srivastava, Steven A. Dixon]
US IN Batesville
A patient support apparatus includes a microphone and a controller. The microphone is configured to record a patient's verbal acknowledgement of his identity and generate a first input signal in response to the patient's verbal acknowledgement.
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MEDICAL IMPLANT TARGETING SYSTEM AND METHOD
PCT/US2009/004717
[SRIVASTAVA, Varad, N., FOSKETT, James, J., SCHNEIDER, Michael, G., PICKERILL, Dan, SPANTMAN, Abtin]
841 N 1st St, Rockford, IL 61107;2902 Spring Creek Road Rockford, IL 61107;6161 Cathedral Court Rockford, IL 61109;6858 Chandelier Drive Loves Park, IL 61111;12576 Tweed Drive Loves Park, IL 61111
A system (10) and method for targeting a geometric feature (12) in a medical implant (14) located in a patient (16), such as a transverse bore (12) in an intramedullary nail (14) implanted in a femur (18) of a patient (16). The system (10) includes one or more emitters (20), one or more receptors (22), and a processor (24). The emitter(s) emits at least one of an acoustic field, a magnetic field, an electric field, or an electromagnetic field that will be altered by the geometric feature (12), and the receptor(s) (22) detects the altered field and generates a signal (26) responsive to the altered field. The processor receives the signal and generates a representation of the altered field.
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ULTRA-WIDEBAND LOCATING SYSTEMS AND METHODS
US16944926
[Timothy J. Receveur, Frederick Collin Davidson, Stephen R. Embree, Britten J. Pipher, Eric D. Agdeppa, Steven D. Baker, Bradley T. Smith, Pamela Wells, Laura A. Hassey, Kiana M. Dezelon, Thomas A. Myers, Andrew S. Robinson, Varad N. Srivastava, Douglas A. Seim, Kenzi L. Mudge, Jennifer A. Gunn, John S. Schroder, Brandon Smith, Tanya M. Hawthorne, Elizabeth A. Kowal]
US IN Batesville
High-accuracy locating systems and methods are used for determining successful caregiver rounding, monitoring whether housekeepers have properly cleaned patient beds, or determining whether patients have ambulated sufficient distances during recovery. Patient beds having at least two locating tags are used for establishing patient care zones around the patient beds. Locating anchors and equipment tags are moved around a patient room to determine optimum locating anchor placement within the patient room based on signal quality values. A locating tag on a patient bed switches roles to operate as a locating anchor in response to the patient bed becoming stationary. A locating tag has a digital compass which is used to determine a field of good ranging relative to a front of a caregiver wearing the locating tag.
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ULTRA-WIDEBAND LOCATING SYSTEMS AND METHODS
US18322631
[Timothy J. Receveur, Frederick Collin Davidson, Stephen R. Embree, Britten J. Pipher, Eric D. Agdeppa, Steven D. Baker, Bradley T. Smith, Pamela Wells, Laura A. Hassey, Kiana M. Dezelon, Thomas A. Myers, Andrew S. Robinson, Varad N. Srivastava, Douglas A. Seim, Kenzi L. Mudge, Jennifer A. Gunn, John S. Schroder, Brandon Smith, Tanya M. Hawthorne, Elizabeth A. Kowal]
US US,IN,Batesville
High-accuracy locating systems and methods are used for determining successful caregiver rounding, monitoring whether housekeepers have properly cleaned patient beds, or determining whether patients have ambulated sufficient distances during recovery. Patient beds having at least two locating tags are used for establishing patient care zones around the patient beds. Locating anchors and equipment tags are moved around a patient room to determine optimum locating anchor placement within the patient room based on signal quality values. A locating tag on a patient bed switches roles to operate as a locating anchor in response to the patient bed becoming stationary. A locating tag has a digital compass which is used to determine a field of good ranging relative to a front of a caregiver wearing the locating tag.
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METHODS AND APPARATUSES FOR THE DETECTION OF INCONTINENCE OR OTHER MOISTURE, METHODS OF FLUID ANALYSIS, AND MULTIFUNCTIONAL SENSOR SYSTEMS
US14186522
[Thomas F. Heil, Steven A. Dixon, Laetitia Gazagnes, Timothy A. Lane, II, David L. Ribble, Varad N. Srivastava]
US IN Batesville
One embodiment of a method of interrogating a sensor to detect the presence of moisture on an occupant support comprises the steps of A) providing a moisture responsive sensor in a surveillance zone of the occupant support, the sensor being tuned to a center frequency; B) exciting the sensor with an electromagnetic signal having a frequency approximately equal to the center frequency; C) monitoring for a center frequency response from the sensor; D) comparing the center frequency response to an expected center frequency response; and E) if the center frequency response compares favorably to an expected center frequency response, issuing a first output consistent with the favorable comparison.
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Ultra-wideband locating systems and methods
US16944926
[Timothy J. Receveur, Frederick Collin Davidson, Stephen R. Embree, Britten J. Pipher, Eric D. Agdeppa, Steven D. Baker, Bradley T. Smith, Pamela Wells, Laura A. Hassey, Kiana M. Dezelon, Thomas A. Myers, Andrew S. Robinson, Varad N. Srivastava, Douglas A. Seim, Kenzi L. Mudge, Jennifer A. Gunn, John S. Schroder, Brandon Smith, Tanya M. Hawthorne, Elizabeth A. Kowal]
US IN Batesville
High-accuracy locating systems and methods are used for determining successful caregiver rounding, monitoring whether housekeepers have properly cleaned patient beds, or determining whether patients have ambulated sufficient distances during recovery. Patient beds having at least two locating tags are used for establishing patient care zones around the patient beds. Locating anchors and equipment tags are moved around a patient room to determine optimum locating anchor placement within the patient room based on signal quality values. A locating tag on a patient bed switches roles to operate as a locating anchor in response to the patient bed becoming stationary. A locating tag has a digital compass which is used to determine a field of good ranging relative to a front of a caregiver wearing the locating tag.
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MEDICAL IMPLANT TARGETING SYSTEM AND METHOD
US13054634
[Varad N. Srivastava, James J. Foskett, Michael G. Schneider, Dan Pickerill, Abtin Spantman]
US IL Rockford
A system (10) and method for targeting a geometric feature (12) in a medical implant (14) located in a patient (16), such as a transverse bore (12) in an intramedullary nail (14) implanted in a femur (18) of a patient (16). The system (10) includes one or more emitters (20), one or more receptors (22), and a processor (24). The emitter(s) emits at least one of an acoustic field, a magnetic field, an electric field, or an electromagnetic field that will be altered by the geometric feature (12), and the receptor(s) (22) detects the altered field and generates a signal (26) responsive to the altered field. The processor receives the signal and generates a representation of the altered field.
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