Patents Assigned to GE Medical Systems Information Technologies, Inc.
  • Patent number: 6549423
    Abstract: The invention provides an electronic device including a housing having a plurality of sidewalls defining a generally rectangular cavity within the housing to support therein a predetermined number of generally cylindrical batteries. One of the sidewalls defines an aperture extending through the sidewall and opening into the cavity. A support member is mounted in the housing and includes a support portion extending into the cavity to support inserted batteries in a position transverse to at least one of the sidewalls until all of the predetermined number of batteries are inserted into the cavity.
    Type: Grant
    Filed: November 15, 2001
    Date of Patent: April 15, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: Donald E. Brodnick
  • Patent number: 6537214
    Abstract: A patient monitor has a plurality of voice alarm messages stored in a memory. When the monitor detects an occurrence of an alarm condition, such as an usual physiological characteristic of the patient, a voice alarm message associated with that condition is played back through a loudspeaker. To enable the patient monitor to be used throughout the world, the end user is able to replace each of the prerecorded voice alarm messages. Thus the end user is able to store voice messages in the native language and dialect spoken where the monitor is used.
    Type: Grant
    Filed: September 13, 2001
    Date of Patent: March 25, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Rush Hood, John Booth, Rick Medero
  • Patent number: 6534769
    Abstract: A gas stream monitoring system including a low cost main stream gas analyzer system is disclosed herein. The low cost main stream gas analyzer system is calibrated by a side stream gas analyzer system included in the gas stream monitoring system. Once calibrated, the side stream system is placed into standby mode such that diversions of portions of the gas stream can be minimized. The calibrated output signals from the low cost main stream system contain corrections for gas interference, pressure change, temperature change, manufacturing tolerance, component flaws, and any other sources of error.
    Type: Grant
    Filed: December 31, 1999
    Date of Patent: March 18, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: James E. Graham
  • Patent number: 6532381
    Abstract: A patient monitor for determining a probability that a patient has acute cardiac ischemia including an input device connectable to a patient to acquire electrocardiogram (ECG) signals from the patient, an instrumentation amplifier connected to the input terminal to combine the signals and to generate at least one ECG lead, and an analysis module. The analysis module is operable to continuously read the ECG lead, to analyze a portion of the ECG lead for a period of time, and to calculate a probability that the patient has acute cardiac ischemia based at least in part on the analyzed portion of the ECG lead.
    Type: Grant
    Filed: January 11, 2001
    Date of Patent: March 11, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Brian J. Bayer, Areef Ahmed Bin Moin, Patrick Van Ryzin
  • Patent number: 6529164
    Abstract: An object location monitoring system tracks the locations of portable transceivers that attach to movable objects, such as patients within a hospital. The system preferably tracks the locations of the transceivers by combining a signal strength based locating process with a topological tracking process. Beacons that intermittently transmit unique ID codes are mounted to walls or other structures throughout a building, and are maintained in synchronization using the 60 Hz cycle of a standard 120V AC power signal, either directly or by monitoring flicker of fluorescent lighting. The transceivers receive the transmissions of nearby beacons, determine the signal strengths of such transmissions, and forward associated data to a server. The server uses this data to determine the location of each transceiver, and uses expected travel times between specific locations to resolve ambiguities.
    Type: Grant
    Filed: March 30, 2001
    Date of Patent: March 4, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: Scott J. Carter
  • Patent number: 6526310
    Abstract: Various designs and features of an ambulatory transceiver and ECG lead set are disclosed for use in remote patient monitoring. One feature involves the use of unshielded, dual-conductor lead wires in which one conductor carries the patient's ECG signal and the other conductor provides an RF antenna element for the transceiver. The lead wires used in one embodiment provide improved flexibility, durability, and antenna performance over conventional lead sets with shielded wires. Another feature involves an antenna diversity scheme in which the transceiver switches between two or more ECG-lead antennas, each of which is formed from one or more ECG leads of the lead set. Another feature involves the use of a circuit within the transceiver to monitor, and dynamically compensate for changes in, the impedance of an ECG-lead antenna or a conductor thereof. Another feature is an improved circuit for protecting the transceiver from damage caused by defibrillation pulses.
    Type: Grant
    Filed: May 11, 2001
    Date of Patent: February 25, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Scott J. Carter, Edward L. Flanders, Robert B. Kato
  • Patent number: 6520910
    Abstract: A method and system of encoding physiological data. In one embodiment of the invention, raw data is transformed into formatted images and then the formatted images are encoded. The data is transferred at full resolution once to a main server and then the superimposition of the data is encoded using a compression scheme. Preferably, the data is encoded using difference-based encoding, such as MPEG encoding. Encoding the data in this way makes it possible to perform data analysis on a wide variety of workstations, not just high-performance machines.
    Type: Grant
    Filed: October 13, 2000
    Date of Patent: February 18, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: Mark Robert Kohls
  • Patent number: 6517497
    Abstract: A method and apparatus for monitoring and/or quantitatively measuring a patient's respiration using a flexible piezoelectric film sensor. The apparatus includes a piezoelectric film which converts acoustical waves generated by the patient's respiration into electrical signals. The piezoelectric film sensor can be used to monitor the respiration of a patient by correlating the sound generated in the patient's airway with respiratory activity. Further, the data generated by the sensor may be further analyzed by a patient monitor to diagnose respiratory conditions.
    Type: Grant
    Filed: December 13, 2000
    Date of Patent: February 11, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Russell Rymut, Eric Slotty, Narendra Kini
  • Patent number: 6517495
    Abstract: Blood pressure of an human being is read by a process that places a cuff around a portion of the human being's body. The cuff is inflated to a predefined pressure which occludes the flow of blood and then the cuff is deflated in a controlled manner. At a plurality of deflation pressure levels, pressure oscillations that occur in the cuff are measured to produce a series of measurements representing the waveform of the oscillations. The systolic pressure and mean arterial pressure are derived from the measurements in conventional manners. A portion of the waveform for one cardiac cycle is analyzed by locating points which correspond to the occurrence of the systolic and mean arterial pressures. The diastolic pressure, which occurs at the minimum point of the waveform, is derived from those points and the systolic and mean arterial pressures.
    Type: Grant
    Filed: September 10, 2001
    Date of Patent: February 11, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: Lawrence T. Hersh
  • Patent number: 6519484
    Abstract: A physiologic condition sensor comprises a sensor body including an optical assembly housed in a sensor housing. The optical assembly is configured to include a head portion, a tail portion, and an intermediate portion connecting the head portion and tail portion. The head and tail portions are wider than the intermediate portion to prevent longitudinal deformation of the sensor housing around the optical assembly.
    Type: Grant
    Filed: November 1, 2000
    Date of Patent: February 11, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: David Anthony Lovejoy, George Alexander Byers
  • Patent number: 6510344
    Abstract: A medical telemetry system includes a procedure alarm silence feature that enables a clinician to remotely disable a monitoring station alarm in order to perform a patient procedure that might cause inadvertent false alarms. To disable the alarm for a preprogrammed time interval, the clinician presses keys on the telemetry unit according to a predefined key sequence that is selected so as to reduce a likelihood of accidental alarm disablement. The monitoring system responds to the predefined sequence by disabling an audible alarm for all alarm conditions except class 1 arrhythmias. A corresponding visual alarm at the monitoring station is maintained active. While the alarm is disabled, the monitoring station displays an indication of the amount of time until expiration of the preprogrammed time interval.
    Type: Grant
    Filed: March 22, 2000
    Date of Patent: January 21, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: Arieh S. Halpern
  • Patent number: 6506163
    Abstract: A method and system of distinguishing physiological pulses as measured by pulmonary artery catheterization. The method includes positioning two measurement devices in blood vessels of a subject, one in a major systemic artery and one in the pulmonary artery, and measuring blood pressure in the blood vessel with the measuring device to generate a pressure waveform. A phase difference between the two pressure waveforms is determined and used to create a warning or to display the phase difference on a display. The system includes an analysis module that determines phase differences based on the inputs from two or more physiological sensing modules.
    Type: Grant
    Filed: November 28, 2000
    Date of Patent: January 14, 2003
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Robert M. Farrell, Michael W. Jopling
  • Publication number: 20020183797
    Abstract: A method and apparatus for reducing noise and detecting electrode faults in a physiological activity acquisition system. The method includes the act of delivering a carrier signal through an electrode connected to a subject. Once the carrier signal is delivered, a combined signal having an electrical-activity portion and a carrier-signal portion is sensed by at least one signal sensing electrode attached to the subject. A low-pass, finite impulse response filter, having a first zero point frequency substantially the same as the carrier signal, separates the carrier signal portion from the electrical activity portion. An impedance value for the sensing electrode is calculated using the carrier signal portion. The calculated impedance value is compared against a known value to determine whether an electrode fault exists.
    Type: Application
    Filed: July 22, 2002
    Publication date: December 5, 2002
    Applicant: GE Medical Systems Information Technologies, Inc.
    Inventors: Wilhelm J. Kaiser, Horst Weber, Wolfgang Winter
  • Patent number: 6490479
    Abstract: A method and apparatus to detect irregular heart activity based upon a ventricular activity analysis, P wave activity, similarities in R wave to R wave intervals, and a state evaluation. The invention includes a beat classification module that receives ECG information as an input. The beat classification module determines whether the heart beat being analyzed falls within classifications that are suitable for use in analyzing whether an irregular condition exists. If the beat falls within a class suitable for analysis, the ECG information is fed to an interval calculator. The interval calculator determines the interval between successive R waves. The information from the interval calculator is provided to a probability engine and to a contextual analysis module. The probability engine is designed to detect atrial fibrillation based upon beat classification and RR interval values from the interval calculator.
    Type: Grant
    Filed: December 28, 2000
    Date of Patent: December 3, 2002
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventor: Elizabeth Anne Bock
  • Publication number: 20020177755
    Abstract: The invention relates to a system for and a method of establishing monitoring alarm limits based on physiological variables. Such a method can include the steps of receiving a plurality of physiological variable data where the physiological variable data is representative of physiological wellness variables, correlating alarm states of the physiological wellness variables with alarm states of physiological measurable variables, and providing a best clinical selection for the alarm limits.
    Type: Application
    Filed: May 16, 2001
    Publication date: November 28, 2002
    Applicant: GE Medical Systems Information Technologies, Inc.
    Inventor: George M. Hutchinson
  • Patent number: 6487430
    Abstract: An apparatus and method to connect to an electrode is claimed. The apparatus includes a first mating member and a second mating member having first and second openings. A resilient body portion connects the first and second mating members.
    Type: Grant
    Filed: February 11, 2000
    Date of Patent: November 26, 2002
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Robert E. Henderson, Teresa Guichard
  • Patent number: 6487449
    Abstract: A system and apparatus for detecting electrode faults in a physiological activity acquisition system or device. The system includes at least one signal sensing electrode attached to the subject and a signal processor coupled to the at least one signal sensing electrode. The signal sensing electrode senses a combined signal from the subject. The combined signal has an activity portion and a carrier portion. The signal processor receives the combined signal from the electrode. The signal processor processes the combined signal and generates a noise-redeuced ECG and an electrode fault signal, if an electrode fault exists.
    Type: Grant
    Filed: May 23, 2000
    Date of Patent: November 26, 2002
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Wilhelm J. Kaiser, Horst Weber, Wolfgang Winter
  • Patent number: 6462766
    Abstract: A method and an apparatus for limiting the peak power consumed by a thermal recorder connected to portable battery-powered equipment. The battery-powered equipment is designed with a filter and an electronic circuit breaker. A circuit breaker current sense resistor and an output capacitor form an RC filter and provide a large current reservoir for the thermal recorder which averages the peak current demands seen at the circuit input. The electronic circuit breaker provides a current limit function and will not allow a current greater than a predetermined amperage level to be drawn. The thermal recorder has a CPU which provides pulses to a thermal print head in dependence on data incorporated in a pulse-width limit table. The values in the pulse-width limit table can be substituted for calculated pulse widths that would produce peak currents large enough to trip the circuit breaker.
    Type: Grant
    Filed: November 5, 1999
    Date of Patent: October 8, 2002
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Russell R. Roeber, James M. Gray
  • Patent number: 6463320
    Abstract: An apparatus and a method for taking multiple physiological signals (e.g., ECG waveforms) from different sources as input, applying multiple algorithms in its core and generating results which are exported for use in clinical studies and research. The apparatus has a built-in database and a built-in spreadsheet to provide a unified platform for all clinical research in the medical field, including, but not limited to, clinical core laboratory work and high-end clinical research.
    Type: Grant
    Filed: December 22, 1999
    Date of Patent: October 8, 2002
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: Qiuzhen Xue, Shankara B. Reddy
  • Patent number: 6453186
    Abstract: An electrocardiogram (ECG) electrode patch for attachment to a neonatal or infant patient. The ECG electrode patch includes a plurality of at least three electrodes coupled to a substrate. The plurality of at least three electrodes includes at least one electrode capable of measuring the electrical activity of the right side of the patient's heart. A plurality of electrical conductors are coupled to the plurality of electrodes and to the substrate.
    Type: Grant
    Filed: April 13, 2001
    Date of Patent: September 17, 2002
    Assignee: GE Medical Systems Information Technologies, Inc.
    Inventors: David Anthony Lovejoy, George Alexander Byers, Patricia J. Mikula