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公开(公告)号:US11596801B2
公开(公告)日:2023-03-07
申请号:US16832029
申请日:2020-03-27
Applicant: ZOLL MEDICAL CORPORATION
Inventor: Gary A Freeman , Paolo Giacometti , Timothy F Stever , Frederick K Newey , Andrew E Fleischacker , Suzanne Crowell
IPC: A61N1/39
Abstract: A system is provided for integrating at least one portable computing device with a resuscitative medical device such as a defibrillator. The system may include a carrying case coupled to the resuscitative medical device. The carrying case may include a storage space for the at least one portable computing device and a wireless charging system for charging the at least one portable computing device. The system may be configured to enable secure data transfer between each of the devices, including data communication and data storage. A processor of the resuscitative medical device may be configured to activate the wireless charging system and charge the at least one portable computing device under certain circumstances. The processor may further be configured to prioritize or optimize charging and data transfer between the resuscitative medical device and each of multiple portable computing devices.
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公开(公告)号:US11583471B2
公开(公告)日:2023-02-21
申请号:US16741925
申请日:2020-01-14
Applicant: ZOLL Medical Corporation
Inventor: Christopher L Kaufman , Gary A Freeman
Abstract: A CPR chest compression system which uses tonometric data as feedback for control of chest compression device.
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公开(公告)号:US11529527B2
公开(公告)日:2022-12-20
申请号:US16693769
申请日:2019-11-25
Applicant: ZOLL Medical Corporation
Inventor: Gary A Freeman , Thomas E Kaib , Shane S Volpe
Abstract: An ambulatory medical device configured to analyze heart rates in different operating modes includes a plurality of ECG sensing electrodes, a plurality of therapy electrodes and at least one processor configured to in a default operating mode, perform a default heart rate calculation for determining a heart rate of the patient for use in detecting a cardiac arrhythmia condition of the patient. The at least one processor is configured to change a device operating mode from a default mode based on detecting patient activity to an activity operating mode, and in the activity operating mode, perform a different heart rate calculation from the default heart rate calculation for determining the heart rate for use in detecting the cardiac arrhythmia condition of the patient during the activity operating mode. The at least one processor is configured to deliver the treatment in response to detecting the cardiac arrhythmia condition.
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公开(公告)号:US11477628B2
公开(公告)日:2022-10-18
申请号:US16948810
申请日:2020-10-01
Applicant: ZOLL Medical Corporation
Inventor: David Barash , Mark Totman , Gary A Freeman , Timothy S McGough
IPC: H04M11/04 , H04W4/90 , G08B25/01 , G08B25/14 , G08B27/00 , G16H40/20 , H04M1/72418 , G08B21/02 , G08B25/00 , H04W4/02 , H04W4/12
Abstract: An example of a medical equipment and responder management system is configured to register potential responders to an emergency event, receive event information including an event location and an event type, provide an automatic notification that includes the event information and mapping information to first and second mobile computing devices associated with first responder and second responders selected from the potential responders, receive a confirmation that the first responder will bring a first item of registered medical equipment to the event, and provide an indication to the second mobile device that the second responder should proceed to the event without the first item of equipment, where the mapping information indicates a location of the first item of equipment located near a first mobile device current location and the current locations of the first and second mobile devices relative to the locations of the event and the first item of equipment.
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公开(公告)号:US11412973B2
公开(公告)日:2022-08-16
申请号:US16455823
申请日:2019-06-28
Applicant: ZOLL Medical Corporation
Inventor: Michael J Gabrin , Christopher L Swenglish , Gary A Freeman
Abstract: An ergonomic and unobtrusive cardiac monitoring and treatment device for continuous wear includes a band, ECG sensing electrodes and treatment electrodes configured to deliver an electrotherapy, one or more sensor ports for receiving one or more physiological sensors, and a controller for analyzing an ECG signal of a patient and causing a delivery of electro therapy. The band is configured to be worn about a thoracic region and has a vertical span of between about 1 to about 15 centimeters. The band is configured to be immobilized relative to a skin surface of the thoracic region of the patient by exerting one or more compression forces against the thoracic region. The device can include at least two separate wearable portions comprising a band portion including ECG sensing electrodes and/or other physiological sensors, and a second wearable portion optionally separable from the band portion, the second wearable portion including treatment electrodes.
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公开(公告)号:US11311457B2
公开(公告)日:2022-04-26
申请号:US15911600
申请日:2018-03-05
Applicant: ZOLL Medical Corporation
Inventor: Qing Tan , Frederick J Geheb , Gary A Freeman , Frederick K Newey , Kristin A Spang
IPC: A61H31/00 , A61N1/39 , A61B5/11 , A61B5/0245 , A61B5/0205 , A61B5/361 , A61B5/145 , A61B5/316
Abstract: A system for assisting a rescuer in providing resuscitative treatment to a victim is described. The system includes a motion sensor configured to generate motion sensor signals that are indicative of motion of the chest of the victim during chest compressions, an input device configured to receive user input indicative of a type of chest compressions, an output device, and a processor, a memory, and associated circuitry, the processor communicatively coupled to the motion sensor, the input device, and the output device and is configured to receive the motion sensor signals and the user input indicative of the type of chest compressions, determine chest compression feedback for the rescuer based on the motion sensor signals, and control the output device to selectively provide the chest compression feedback for the rescuer based at least in part on the type of chest compressions indicated by the user input.
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公开(公告)号:US11266846B2
公开(公告)日:2022-03-08
申请号:US16543822
申请日:2019-08-19
Applicant: ZOLL Medical Corporation
Inventor: Thomas E Kaib , Shane S Volpe , Jason T Whiting , Gregory R Frank , Rachel H Carlson , Gary A Freeman
Abstract: An external wearable medical device includes a plurality of electrocardiogram (ECG) sensors, at least one accelerometer configured to be disposed on a patient, and at least one processor operatively coupled plurality of ECG sensors and the at least one accelerometer. The at least one processor is configured to receive an ECG signal from the plurality of ECG sensors, receive patient activity data from the at least one accelerometer, and detect, based on the patient activity data from the at least one accelerometer, data indicative of an impending syncope event. The at least one processor is configured to issue a notification of the impending syncope event, and store in a memory during a first time period data comprising the ECG signal in association with information descriptive of impending syncope event, and transmit to a remote server during a second time period the stored data for analysis at the remote server.
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公开(公告)号:US11229760B2
公开(公告)日:2022-01-25
申请号:US16250926
申请日:2019-01-17
Applicant: ZOLL Medical Corporation
Inventor: Annemarie E Silver , Gary A Freeman , George Beck , Guy R Johnson , Ulrich R Herken , Wayne F Stanley , Shin-Luen Chai
IPC: A61M16/00 , A61M16/04 , A61H31/00 , G16H50/30 , G16H40/63 , G16H20/40 , A61B5/08 , G16H50/20 , A61N1/39 , A61B5/0205 , A61B5/00 , A61M16/10 , A61B5/145 , A61B5/24 , A61B5/318 , A61B5/021 , A61B5/024 , A61B5/053 , A61B5/083 , A61B5/087
Abstract: A medical system for assisting with an intubation procedure for a patient. The system comprising airflow sensors configured to obtain data indicative of airflow in the patient's airway and physiological sensors configured to obtain information regarding airflow in the patient's lungs. The system further including a monitoring device communicatively coupled to the airflow sensors and the physiological sensors. The patient monitoring device comprising at least one processor coupled to memory and configured to: provide a user interface on a display and assist the rescuer in determining proper placement of an endotracheal tube, receive the data indicative of the airflow in the patient's airway, receive the physiological information regarding the airflow in the patient's lungs, and determine whether the tube is properly placed based on the received physiological information, and present an output of the determination of whether the ET tube was properly placed.
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公开(公告)号:US11224739B2
公开(公告)日:2022-01-18
申请号:US16542355
申请日:2019-08-16
Applicant: ZOLL Medical Corporation
Inventor: Gary A Freeman
Abstract: An electrode for long term wear includes a conductive mesh configured to disperse a therapeutic current across a surface area of the electrode, and a conductive adhesive material configured to conduct the therapeutic current from the conductive mesh in a direction substantially orthogonal to the surface area of the electrode. The conductive adhesive material is configured to be semi-conductive in a direction substantially lateral to the surface area of the electrode. The conductive adhesive material includes at least one of microscopic or nano-scale conductive particles or fibers of materials.
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公开(公告)号:US11224738B2
公开(公告)日:2022-01-18
申请号:US16441673
申请日:2019-06-14
Applicant: ZOLL Medical Corporation
Inventor: Ziad F Elghazzawi , Gary A Freeman
Abstract: Methods and system for guiding a rescuer in placement of a defibrillation electrode may include initializing one or more cameras disposed on the defibrillation electrode, and capturing image information via the one or more cameras. Each image in a series of images may be acquired by the cameras after a set time interval. The method may include determining a separation distance between the defibrillation electrode and the chest of the patient and comparing the separation distance to a threshold distance. The method may further include determining whether the separation distance is below the threshold distance and, once the separation distance is below the threshold distance, determining a current location of the defibrillation electrode based on the series of images, and providing positioning feedback via at least one output device, wherein the positioning feedback includes instructions to move the defibrillation electrode toward a preferred location on the patient.
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