Patents by Inventor Shane S. Volpe

Shane S. Volpe 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).

  • Publication number: 20200397382
    Abstract: A wearable therapeutic device to facilitate care of a subject is provided. The wearable therapeutic device can include a garment having a sensing electrode. The garment includes at least one of an inductive element and a capacitive element, and a controller identifies an inductance of the inductive element or a capacitance of the capacitive element, and determines a confidence level of information received from the sensing electrode based on the inductance or the capacitance. The wearable therapeutic device also includes an alarm module coupled with the controller and configured to provide a notification to a subject based on the confidence level.
    Type: Application
    Filed: September 3, 2020
    Publication date: December 24, 2020
    Inventors: Shane S. Volpe, Thomas E. Kaib
  • Publication number: 20200390172
    Abstract: According to at least one aspect, a wearable cardiac device is provided. The wearable cardiac device includes a garment worn about a torso of a patient, at least one sensing electrode to monitor cardiac activity of the patient, and a controller including a plurality of separate and distinct modules distributed about and/or integrated into the garment. The plurality of separate and distinct modules includes, for example, an operations module coupled to the at least one sensing electrode and configured to detect at least one cardiac condition of the patient and/or a communications module coupled to the operations module to communicate with an external device. In some examples, the wearable cardiac device may be configured as a treatment device and include an energy storage module coupled to at least one therapy electrode and configured to store energy for at least one therapeutic shock to be applied to the patient.
    Type: Application
    Filed: June 25, 2020
    Publication date: December 17, 2020
    Inventors: Thomas E. Kaib, Shane S. Volpe, Gregory R. Frank, Gary A. Freeman, Mark Jerome Owens
  • Publication number: 20200359926
    Abstract: A physiological signal monitoring system includes a single set of sensing electrodes to provide conditioned physiological signals to a primary monitoring device and a secondary monitoring device. The monitoring system includes pre-processing circuitry configured to receive a raw physiological signal. The pre-processing circuitry is configured to produce a primary physiological signal and a secondary physiological signal. Each of the primary and secondary physiological signals are conditioned. The primary conditioned physiological signal is directed to a primary monitoring device such as a hospital wearable defibrillator device. The secondary conditioned physiological signal is directed to telemetry modeling circuitry where it is further processed to output one or more telemetry signals. The one or more telemetry signals are output to a secondary monitoring device such as a three lead ECG monitoring device.
    Type: Application
    Filed: February 19, 2020
    Publication date: November 19, 2020
    Applicant: ZOLL Medical Corporation
    Inventors: Shane S. Volpe, Gary A. Freeman
  • Publication number: 20200349823
    Abstract: According to another example, a wearable medical device controller is provided. The device controller includes a memory and a processor coupled to the memory. The processor is configured to determine a correlation between a phenomenon identifiable by the wearable medical device controller and at least one response pattern associated with a patient and store, responsive to detecting the correlation, an adaptation path to address the at least one response pattern, the adaptation path specifying an adaptation of at least one characteristic of an alarm. The at least one response pattern may include a plurality of response patterns and the adaptation path may reflect adaptations made to address at least some of the plurality of response patterns.
    Type: Application
    Filed: July 15, 2020
    Publication date: November 5, 2020
    Inventors: Thomas E. Kaib, Shane S. Volpe, John G. Clark
  • Publication number: 20200345260
    Abstract: A system including a medical device is provided. The medical device includes at least one sensor configured to acquire first data descriptive of a patient, first memory storing a plurality of templates, and at least one processor coupled to the at least one sensor and the first memory. The at least one processor is configured to identify a first template of the plurality of templates that is similar to the first data, to determine first difference data based on the first template and the first data, and to store the first difference data in association with the first template. The system may further include the programmable device.
    Type: Application
    Filed: July 15, 2020
    Publication date: November 5, 2020
    Inventors: Steven J. Szymkiewicz, Francesco Nicolo, Gary A. Freeman, Timothy F. Stever, Shane S. Volpe
  • Publication number: 20200337584
    Abstract: A medical device includes at least one electrode to sense an electrocardiogram (ECG) signal of a patient, and a controller coupled to the at least one electrode. The controller is configured to generate a first ECG template based on a first ECG signal of the patient received during a first baselining operation. The controller is configured to determine that the patient has been administered a therapeutic shock, and responsive to the determination that the patient has been administered the therapeutic shock, the controller is configured to initiate a second baselining operation and generate a second ECG template based on a second ECG signal of the patient received during the second baselining operation. The controller is configured to determine whether the patient is experiencing a cardiac event based on a comparison of the second ECG template to a real time ECG signal received during real time monitoring of the patient.
    Type: Application
    Filed: July 15, 2020
    Publication date: October 29, 2020
    Inventors: Thomas E. Kaib, Shane S. Volpe
  • Publication number: 20200337562
    Abstract: An ambulatory medical device comprises: a sensing component to be disposed on a patient for detecting a physiological signal of the patient; and monitoring and self-test circuitry configured for detecting a triggering event and initiating one or more self-tests based on detection of the triggering event. The ambulatory medical device senses the physiological signal of the patient substantially continuously over an extended period of time.
    Type: Application
    Filed: July 10, 2020
    Publication date: October 29, 2020
    Inventors: Gary A. Freeman, Shane S. Volpe, Timothy F. Stever, Thomas E. Kaib
  • Patent number: 10813566
    Abstract: According to at least one example, an ambulatory medical device is provided. The device includes a plurality of electrodes disposed at spaced apart positions about a patient's body and a control unit. The control unit includes a sensor interface, a memory and a processor. The sensor interface is coupled to the plurality of electrodes and configured to receive a first ECG signal from a first pairing of the plurality of electrodes and to receive a second ECG signal from a second pairing of the plurality of electrodes. The memory stores information indicating a preferred pairing, the preferred pairing being either the first pairing or the second pairing. The processor is coupled to the sensor interface and the memory and is configured to resolve conflicts between interpretations of first ECG signal and the second ECG signal in favor of the preferred pairing.
    Type: Grant
    Filed: January 7, 2019
    Date of Patent: October 27, 2020
    Assignee: ZOLL Medical Corporation
    Inventors: Shane S. Volpe, Thomas E. Kaib
  • Patent number: 10806401
    Abstract: A wearable medical device is provided. The wearable medical device includes a garment that includes a sensing electrode, at least one of an inductive element and a capacitive element included in at least part of the garment, and a controller. The controller may be configured to determine a confidence level of information received from the sensing electrode based on at least one of an inductance of the inductive element and a capacitance of the capacitive element.
    Type: Grant
    Filed: November 15, 2017
    Date of Patent: October 20, 2020
    Assignee: ZOLL MEDICAL CORPORATION
    Inventors: Shane S. Volpe, Thomas E. Kaib
  • Patent number: 10765873
    Abstract: A system for supplementing communications capabilities of a patient monitoring device, the system including an interface device configured to communicably couple with and to receive the patient monitoring information from the patient monitoring device, a memory device hosted by the interface device and configured to store at least a portion of the patient monitoring information, a wireless transceiver hosted by the interface device, a database hosted by the interface device; and a processor communicably coupled to the wireless transceiver and the asset management database, the processor configured to format the patient monitoring information into one or more data objects, each of the one or more data objects associated with an EMS incident during which the patient monitoring information was gathered, the processor further configured to store the one or more data objects to the database and to transmit the one or more data objects with the wireless transceiver.
    Type: Grant
    Filed: October 9, 2012
    Date of Patent: September 8, 2020
    Assignee: ZOLL Medical Corporation
    Inventors: Michael Scott Martin, Chad Ashmore, Eric A. Deines, Gary A. Freeman, Joseph L. Helmick, Thomas E. Kaib, Richard A. Rattanni, C. Shane Reid, Jeremy Ryan Soller, Shane S. Volpe, Gary Ruggiero, Frederick J. Geheb
  • Publication number: 20200268317
    Abstract: A wearable defibrillator includes garment configured to be worn by a patient, treatment electrodes configured to apply electric current to the patient, and an alarm module configured to provide audio, visual, and haptic notifications. The notifications are configured to indicate that an electric current will be administered imminently, and prompt the patient to provide a response input. The wearable defibrillator includes a motion sensor configured to detect motion and a lack of motion of the patient, and a controller in electrical communication with the alarm module and the motion sensor. The controller is configured to monitor for the response input, cause administration of the electric current to be delayed or cancelled if the response input is received and motion of the patient is detected, and cause administration of the electric current to be delivered if no response input from the patient is received and a lack of motion is detected.
    Type: Application
    Filed: May 14, 2020
    Publication date: August 27, 2020
    Inventors: Edward J. Donnelly, Thomas E. Kaib, Marshal W. Linder, Steven J. Szymkiewicz, Jason T. Whiting, Shane S. Volpe
  • Patent number: 10750966
    Abstract: A system including a medical device is provided. The medical device includes at least one sensor configured to acquire first data descriptive of a patient, first memory storing a plurality of templates, and at least one processor coupled to the at least one sensor and the first memory. The at least one processor is configured to identify a first template of the plurality of templates that is similar to the first data, to determine first difference data based on the first template and the first data, and to store the first difference data in association with the first template. The system may further include the programmable device.
    Type: Grant
    Filed: March 30, 2017
    Date of Patent: August 25, 2020
    Assignee: ZOLL Medical Corporation
    Inventors: Steven J. Szymkiewicz, Francesco Nicolo, Gary A. Freeman, Timothy F. Stever, Shane S. Volpe
  • Patent number: 10755547
    Abstract: According to another example, a wearable medical device controller is provided. The device controller includes a memory and a processor coupled to the memory. The processor is configured to determine a correlation between a phenomenon identifiable by the wearable medical device controller and at least one response pattern associated with a patient and store, responsive to detecting the correlation, an adaptation path to address the at least one response pattern, the adaptation path specifying an adaptation of at least one characteristic of an alarm. The at least one response pattern may include a plurality of response patterns and the adaptation path may reflect adaptations made to address at least some of the plurality of response patterns.
    Type: Grant
    Filed: March 11, 2019
    Date of Patent: August 25, 2020
    Assignee: ZOLL Medical Corporation
    Inventors: Thomas E. Kaib, Shane S. Volpe, John G. Clark
  • Patent number: 10744057
    Abstract: An ambulatory medical device comprises: a sensing component to be disposed on a patient for detecting a physiological signal of the patient; and monitoring and self-test circuitry configured for defecting a triggering event and initiating one or more self-tests based on detection of the triggering event. The ambulatory medical device senses the physiological signal of the patient substantially continuously over an extended period of time.
    Type: Grant
    Filed: March 12, 2019
    Date of Patent: August 18, 2020
    Assignee: ZOLL MEDICAL CORPORATION
    Inventors: Gary A. Freeman, Shane S. Volpe, Timothy F. Stever, Thomas E. Kaib
  • Publication number: 20200253486
    Abstract: A wearable medical treatment device for monitoring a patient's ECG and treating a cardiac condition is disclosed. The device includes a patient vest portion having cardiac sensing electrodes to obtain an ECG signal of a patient, therapy electrodes for external placement proximate to skin of the patient for delivering electrotherapy to treat the cardiac condition, and, a monitor coupled to the cardiac sensing electrodes and the therapy electrodes via at least one cable. The monitor includes a system computer disposed in the monitor. The system computer is configured to receive the ECG signals of the patient and to execute at least one arrhythmia detection algorithm to determine whether the patient is experiencing a cardiac condition in need of treatment, and a mechanical shock detector disposed on the monitor and configured to detect at least one of a force or acceleration indicative of a mechanical shock to the monitor.
    Type: Application
    Filed: January 23, 2020
    Publication date: August 13, 2020
    Inventors: Shane S. Volpe, John D. Macho, Wade T. Braden, Thomas E. Kaib, Marshal W. Linder
  • Publication number: 20200253477
    Abstract: An ambulatory medical device is provided. The ambulatory medical device includes at least one sensor configured to acquire physiological data of a patient, at least one network interface and at least one processor coupled to the at least one sensor and the at least one network interface. The at least one processor is configured to detect, via the at least one network interface, a medical device, to establish a secure communication session with the medical device via the at least one network interface, to detect a data capacity of the secure communication session, to identify a category of patient data associated with the data capacity, and to transmit patient data of the category to the medical device via the secure communication session.
    Type: Application
    Filed: April 30, 2020
    Publication date: August 13, 2020
    Inventors: Gary A. Freeman, Suzanne Crowell, Shane S. Volpe
  • Publication number: 20200245883
    Abstract: An ambulatory medical device including a plurality of sensing electrodes and one or more processors operably coupled to the plurality of sensing electrodes is provided. Each sensing electrodes is configured to be coupled eternally to a patient and to detect one or more ECG signals. The one or more processors are configured to receive at least one electrode-specific digital signal for each of the plurality of sensing electrodes, determine a noise component for each of the electrode-specific digital signals, analyze each of the noise components for each of the plurality of sensing electrodes, generate electrode matching information for each sensing electrode of the plurality of sensing electrodes based upon analysis of each of the noise components, determine one or more sensing electrode pairs based upon the electrode matching information, and monitor each of the one or more sensing electrode pairs for ECG activity of the patient.
    Type: Application
    Filed: January 30, 2020
    Publication date: August 6, 2020
    Applicant: ZOLL Medical Corporation
    Inventors: Christopher S. Lucci, Nathan J. Berry Ann, Shane S. Volpe
  • Patent number: 10729910
    Abstract: According to at least one aspect, a wearable cardiac device is provided. The wearable cardiac device includes a garment worn about a torso of a patient, at least one sensing electrode to monitor cardiac activity of the patient, and a controller including a plurality of separate and distinct modules distributed about and/or integrated into the garment. The plurality of separate and distinct modules includes, for example, an operations module coupled to the at least one sensing electrode and configured to detect at least one cardiac condition of the patient and/or a communications module coupled to the operations module to communicate with an external device. In some examples, the wearable cardiac device may be configured as a treatment device and include an energy storage module coupled to at least one therapy electrode and configured to store energy for at least one therapeutic shock to be applied to the patient.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: August 4, 2020
    Assignee: Zoll Medical Corporation
    Inventors: Thomas E. Kaib, Shane S. Volpe, Gregory R. Frank, Gary A. Freeman, Mark Jerome Owens
  • Publication number: 20200222684
    Abstract: Techniques that enable medical devices to quickly recover from loss of sensory functions are provided. In some examples, a medical device is configured to advantageously leverage differences between a first type of sensing electrode and a second type of sensing electrode that has a shorter recovery time than the first type of sensing electrode. In some examples, a medical device is configured to reference data generated by a first conditioning circuit that is configured to process signals acquired under a first set of environmental conditions and to reference data generated by a second conditioning circuit that is configured to process signal acquired under a second set of environmental conditions. In some examples, a medical device is configured to arrange electrodes used by the medical device to acquire signals in at specific locations to reduce the amount of disruptive power the electrodes encounter.
    Type: Application
    Filed: March 27, 2020
    Publication date: July 16, 2020
    Inventors: Kent Volosin, Shane S. Volpe, Gary A. Freeman
  • Publication number: 20200206517
    Abstract: A system for providing clinical decision support during a clinical encounter with a patient includes a mobile computing device and a remote computing device communicatively coupled to and remotely located from the mobile computing device, the remote computing device configured to receive clinical data during the clinical encounter from a medical device associated with the patient, provide a first interactive display including the clinical data, enable the mobile computing device to access the clinical data, receive user input based on the clinical data from the mobile computing device, and provide the user input and the clinical data at the first interactive display, where the mobile computing device is configured to access the clinical data, provide the clinical data at a second interactive display, prompt a user for the user input based on the clinical data via the second interactive display, and transmit the user input to the remote computing device.
    Type: Application
    Filed: December 4, 2019
    Publication date: July 2, 2020
    Inventors: Michael S. Martin, Chad Ashmore, Eric A. Deines, Gary A. Freeman, Joseph L. Helmick, Thomas E. Kaib, Richard A. Rattanni, C. Shane Reid, Jeremy R. Soller, Shane S. Volpe, Gary Ruggiero, Frederick J. Geheb