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WO1999044494A1 - Appareil cellulaire individuel de controle de la sante pour malade ambulatoire - Google Patents

Appareil cellulaire individuel de controle de la sante pour malade ambulatoire Download PDF

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Publication number
WO1999044494A1
WO1999044494A1 PCT/IL1999/000123 IL9900123W WO9944494A1 WO 1999044494 A1 WO1999044494 A1 WO 1999044494A1 IL 9900123 W IL9900123 W IL 9900123W WO 9944494 A1 WO9944494 A1 WO 9944494A1
Authority
WO
WIPO (PCT)
Prior art keywords
patient
physiological data
circuitry
input device
monitoring station
Prior art date
Application number
PCT/IL1999/000123
Other languages
English (en)
Inventor
Yakov Geva
Original Assignee
Card Guard Scientific Survival Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Card Guard Scientific Survival Ltd. filed Critical Card Guard Scientific Survival Ltd.
Priority to JP54447999A priority Critical patent/JP2001523150A/ja
Priority to AU26382/99A priority patent/AU747555B2/en
Priority to EP99906437A priority patent/EP0980227A1/fr
Priority to IL132659A priority patent/IL132659A/en
Priority to KR1019997010148A priority patent/KR100626758B1/ko
Priority to BR9904898-1A priority patent/BR9904898A/pt
Priority to CA002288797A priority patent/CA2288797C/fr
Publication of WO1999044494A1 publication Critical patent/WO1999044494A1/fr
Priority to NO995381A priority patent/NO995381L/no

Links

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Measuring devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
    • A61B5/1112Global tracking of patients, e.g. by using GPS
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient; User input means
    • A61B5/7465Arrangements for interactive communication between patient and care services, e.g. by using a telephone network
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H80/00ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6813Specially adapted to be attached to a specific body part
    • A61B5/6823Trunk, e.g., chest, back, abdomen, hip
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6813Specially adapted to be attached to a specific body part
    • A61B5/6825Hand
    • A61B5/6826Finger

Definitions

  • the present invention relates to patient monitoring systems in general, an in particular to apparatus and methods for monitoring a mobile patient's physiological condition and wireless reporting of same.
  • One such group of devices includes holter devices which generally record a patient's physiological data, such as the patient's ECG, during predetermined period of time for examination at later time.
  • Other devices include event recorders. These devices provide for the capture of a patient's physiological data during a physiological "event," such as a cardiac arrhythmia or an episode of patient discomfort. These devices may be patient activated or activated automatically when physiological data are detected which meet predefined event criteria.
  • Holter devices and event recorders typically require that a patient return to the hospital periodically in order to transfer the recorded data. Some of these devices provide for transmission via telephone or other communications facilities to a remote location for interpretation by a clinician. These devices generally require additional communications and medical testing devices to be present at patient location. In the case of event recorders, unnecessary delay between event recording and transmission is often introduced where such additional devices are not present during the event.
  • the present invention seeks to provide improved apparatus and methods for monitoring a mobile patient's physiological condition and reporting the patient's physiological data as well as the patient's location which overcome the disadvantages of the prior art.
  • the monitoring may be initiated by the patient with or without a periodic reminder, may be initiated by the device itself, may be initiated by the clinician through instruction to the patient, and/or may be performed continuously.
  • the communication between the monitoring device and the central station may be initiated by the patient, by the device itself, or by the clinician at the central station.
  • ambulatory patient monitoring apparatus including a portable housing including at least one physiological data input device operative to gather physiological data of the patient, location determination circuitry operative to determine geographic location information of the patient, cellular telephone communications circuitry for communicating the physiological data and the geographic location information to a central health monitoring station, voice communications circuitry whereby the patient conducts voice communications with a clinician at the central health monitoring station, digital signal processing circuitry for processing signals associated with any of the physiological data input device, the location determination circuitry, the cellular telephone communications circuitry, and the voice communications circuitry, and control circuitry for controlling any of the digital signal processing circuitry, the physiological data input device, the location determination circuitry, the cellular telephone communications circuitry, and the voice communications circuitry.
  • the at least one physiological data input device is assembled within the housing.
  • the at least one physiological data input device is at least partially external to the housing.
  • the external portion of the at least one physiological data input device is connected to the via housing via a connector.
  • the location determination circuitry includes GPS circuitry.
  • control circuitry operates the physiological data input device continuously.
  • control circuitry operates the physiological data input device upon initiation by the patient.
  • control circuitry includes a memory for storing any of the physiological data.
  • control circuitry is operative to simultaneously store a first portion of the physiological data in the memory in FIFO fashion and a second portion of the physiological data in the memory that is write-protected with respect to the first portion.
  • the memory includes preset parameters adapted for comparison with the physiological data.
  • control circuitry is operative to determine whether the physiological data are within the preset parameters.
  • control circuitry is operative to initiate contact with the central health monitoring station when the physiological data are determined to be outside of the preset parameters.
  • memory includes preprogrammed instructions for output to the patient via either of a display and a speaker.
  • a system for monitoring a patient including a central health monitoring station, and a portable housing for use by the patient, the portable housing including at least one physiological data input device operative to gather physiological data of the patient, location determination circuitry operative to determine geographic location information of the patient, cellular telephone communications circuitry for communicating the physiological data and the geographic location information to the central health monitoring station, voice communications circuitry whereby the patient conducts voice communications with a clinician at the central health monitoring station, digital signal processing circuitry for processing signals associated with any of the physiological data input device, the location determination circuitry, the cellular telephone communications circuitry, and the voice communications circuitry, and control circuitry for controlling any of the digital signal processing circuitry, the physiological data input device, the location determination circuitry, the cellular telephone communications circuitry, and the voice communications circuitry.
  • a method for monitoring a patient including providing a portable housing for use by the patient, the portable housing including at least one physiological data input device operative to gather physiological data of the patient, location determination circuitry operative to determine geographic location information of the patient, cellular telephone communications circuitry for communicating the physiological data and the geographic location information to the central health monitoring station, voice communications circuitry whereby the patient conducts voice communications with a clinician at the central health monitoring station, digital signal processing circuitry for processing signals associated with any of the physiological data input device, the location determination circuitry, the cellular telephone communications circuitry, and the voice communications circuitry, and control circuitry for controlling any of the digital signal processing circuitry, the physiological data input device, the location determination circuitry, the cellular telephone communications circuitry, and the voice communications circuitry, gathering physiological data of the patient, determining the geographic location of the patient, and communicating the physiological data and the geographic location to the central health monitoring station.
  • the method further includes analyzing the physiological data, and providing a response based on the physiological data.
  • the gathering step is performed in response to activation by the patient.
  • the method further includes activating an alarm prior to the activation by the patient.
  • the gathering step is performed independently from activation by the patient.
  • the gathering step includes storing the physiological data in a memory.
  • the communicating step is performed in response to activation by the patient.
  • the communicating step is performed independently from activation by the patient upon the memory becoming full.
  • the method further includes clearing a portion of the memory corresponding to the physiological data that has been communicated to the central health monitoring station.
  • the storing step includes simultaneously storing a first portion of the physiological data in the memory in FIFO fashion and a second portion of the physiological data in the memory that is write-protected with respect to the first portion.
  • the communicating step includes establishing a communications link with the central health monitoring station in response to activation by the patient. Additionally in accordance with a preferred embodiment of the present invention the communicating step includes establishing a communications link with the central health monitoring station in response to an incoming communication from the central health monitoring station. Moreover in accordance with a preferred embodiment of the present invention the communicating step includes determining whether the physiological data are outside of preset parameters, and establishing a communications link with the central health monitoring station when the physiological data are determined to be outside of the preset parameters. Further in accordance with a preferred embodiment of the present invention the providing a response step includes voice-communicating an instruction to the patient.
  • the providing a response step includes providing the patient's location to medical emergency personnel and dispatching the personnel to the patient's location.
  • Fig. 1 is a simplified pictorial illustration of a personal ambulatory cellular health monitor, constructed and operative in accordance with a preferred embodiment of the present invention
  • Fig. 2 is a simplified block diagram illustration of the personal ambulatory cellular health monitor of Fig. 1 , constructed and operative in accordance with a preferred embodiment of the present invention
  • Fig. 3 is a simplified block diagram illustration of voice processing subsystem
  • Fig. 4 is a simplified block diagram illustrating end-to-end communications between monitor 12 and a central medical monitoring station, constructed and operative in accordance with a preferred embodiment of the present invention
  • FIG. 5 is a simplified flowchart illustration of the operation of monitor 12 in event recording mode activated by patient, operative in accordance with a preferred embodiment of the present invention
  • Fig. 6 is a simplified flowchart illustration of the operation of monitor 12 in event recording mode activated remotely by an operator at a central medical monitoring station, operative in accordance with a preferred embodiment of the present invention
  • Fig. 7 is a simplified flowchart illustration of the operation of monitor 12 in event recording mode activated by the patient pursuant to an alarm, operative in accordance with a preferred embodiment of the present invention
  • Fig. 8 is a simplified flowchart illustration of the operation of monitor 12 in combination continuous recording mode and patient-activated event recording mode, operative in accordance with a preferred embodiment of the present invention
  • Fig. 9 is a simplified flowchart illustration of the operation of monitor 12 in continuous recording mode with a device-activated event recorder, operative in accordance with a preferred embodiment of the present invention.
  • Fig. 10 is a simplified flowchart illustration of the operation of monitor 12 in continuous recording holter-mode with a device-activated or patient-activated data upload, operative in accordance with a preferred embodiment of the present invention.
  • FIG. 1 is a simplified pictorial illustration of a personal ambulatory cellular health monitor, constructed and operative in accordance with a preferred embodiment of the present invention.
  • a patient 10 is shown wearing a personal ambulatory cellular health monitor 12 which preferably monitors the physiological condition of patient 10, records physiological data, and transmits some or all of the data, as well as patient 10's location, via a cellular telephone network to a central medical monitoring station (not shown).
  • Monitor 12 preferably includes a microphone 405, a speaker 406, a display 606 and a keypad 607.
  • Monitor 12 is preferably adapted to be connected to one or more physiological data input devices such as an electrocardiographic
  • ECG input device generally designated 14 having one or more ECG electrodes 105 each connected by a wire 16 to a terminus 18 which is connected to monitor 12.
  • Other physiological data input devices known in the art may likewise be connected to monitor 12 or otherwise built into monitor 12, as is described in greater detail hereinbelow with reference to Fig. 2, including devices for monitoring blood oxygen saturation, respiration,
  • FIG. 2 is a simplified block diagram illustration of the personal ambulatory cellular health monitor 12 of Fig. 1, constructed and operative in accordance with a preferred embodiment of the present invention.
  • Monitor 12 typically includes a medical subsystem 100, a personal location subsystem (PLC) 200, a digital signal processing (DSP) subsystem 300, a voice processing subsystem 400, a radio subsystem 500 and a control subsystem 600.
  • PLC personal location subsystem
  • DSP digital signal processing
  • Medical subsystem 100 typically includes one or more built-in and/or external physiological sensors and associated electronic signal conditioning circuits and a set of sensors.
  • Built-in sensors may include a finger optical sensor 1 18 for SpO 2 , an optical sensor 122 for measuring blood glucose, a temperature sensor 120, and ECG electrodes 105 A.
  • External sensors for plug-in connection to monitor 12 may include EEG electrodes 101, ECG electrodes 105, a pressure cuff 110 for measuring NIBP, and an air flow sensor 1 14 for measuring spirometry.
  • EEG electrodes 101 and ECG electrodes 105 are equipped with connector plugs 102 and 106 respectively which may be identical for connection to monitor 12 via a single receptacle connector 107.
  • Connector 107 may include an electronic circuit which automatically recognizes which of EEG electrodes
  • Pressure cuff 110 also typically includes a plug 11 1 designed to be connected to a receptacle 112, as does flow sensor 114 typically include a plug 115 designed to be connected to a receptacle 116.
  • An EEG amplifier circuit 103 connected to EEG electrodes 101, typically eight EEG electrodes, captures EEG signals, amplifies and normalizes the signal, and provides the normalized signal to an EEG channel multiplexer (MUX) 104 which in turn provides the normalized signals to a multiplexer and analog to digital converter circuit
  • MUX EEG channel multiplexer
  • ECG amplifier circuit 108 connected to ECG electrodes 105, typically two or more ECG electrodes, captures ECG signals, amplifies and normalizes the signal, and provides the normalized signal to MUX & A/D 124.
  • ECG electrodes 105 are also preferably connected to a respiration circuit 109 which measures the AC voltage drop between ECG electrodes 105, amplifies the voltage drop, and normalizes the signal. Circuit 109 then provides the normalized signal to
  • An NIBP circuit 113 connected to pressure cuff 1 10 captures a blood pressure signal, amplifies and normalizes the signal, and provides the normalized signal to MUX & A/D 124.
  • An air flow amplifier 1 17 connected to air flow sensor 1 14 captures an air flow signal, amplifies and normalizes the signal, and provides the normalized signal to MUX & A/D 124.
  • An Sp0 2 circuit 119 connected to finger sensor 1 18 captures an oxygen saturation signal, amplifies and normalizes the signal, and provides the normalized signal to MUX & A/D 124.
  • a temperature circuit 121 connected to temperature sensor 120 captures a temperature signal, amplifies and normalizes the signal, and provides the normalized signal to MUX & A/D 124.
  • a glucose circuit 123 connected to optical sensor 122 captures a blood glucose signal, amplifies and normalizes the signal, and provides the normalized signal to MUX & A/D 124.
  • PLC subsystem 200 determines the location of patient 10.
  • PLC subsystem 200 preferably includes known location determination circuitry such as GPS components including a GPS receiver 202 and a filter 201 which is tuned to a known GPS frequency for GPS satellite communication via a built-in antenna 501 typically shared by radio subsystem 500.
  • PLC subsystem 200 preferably receives the pseudo range (PR) and pseudo range dot (PRD) from GPS satellites in communication range.
  • the GPS receiver preferably operates in aided mode enabling "snapshot" operation as is known in GPS systems.
  • Patient 10 * s position and velocity data is preferably transmitted via radio subsystem 500 to a central medical monitoring station together with measured physiological data as is described in greater detail hereinbelow.
  • PLC 200 preferably determines the patient's location once monitor 12 is in contact with the central medical monitoring station, such as when contact is established by the patient, a clinician at the central medical monitoring station, or automatically by monitor 12 during a patient event or otherwise as is described in greater detail hereinbelow with reference to Figs. 5 - 7B.
  • the location information determined by GPS receiver 202 may be stored in memory 602 or may be transmitted immediately once the patient's location is determined.
  • Radio subsystem 500 typically includes cellular telephone communications circuitry including a filter 502, a power amplifier 504, a frequency up-converter 506, an amplifier 508, and a GMSK modulator 510 which generates, modulates, and amplifies a signal for transmission via antenna 501.
  • Radio subsystem 500 also typically includes a filter 503 and an amplifier 505 which filters and amplifies incoming signals received via antenna 501.
  • the signal is then processed at a frequency down-converter 507, an intermediate reception amplifier 509, and a filter 51 1, whereupon the processed incoming signal is provided to voice processing subsystem 400 for output.
  • a synthesizer 512 is also provided which, in conjunction with frequency up-converter 506 and frequency down-converter 507, performs the frequency conversions required for signal transmission and reception.
  • Control subsystem 600 typically includes control circuitry including a data MUX/DEMUX 601 which provides simultaneous multiple analog data channel conversion to digital data and vice versa, RAM memory 602, a ROM memory 603, a microprocessor 604, interface function circuitry 605 via which microprocessor 604 communicates with the various subsystems, display 606, keypad 607, a subscriber ID 608 for cellular telephone identification such as is known with GSM systems, an alarm 609, and a service request decoder (SRQ) 610 which decodes incoming signals to determine if the signal is a voice communication or a control signal and, if the latter, informs microprocessor 604 of the incoming control signal and the nature of the control instructions, such as data download, data upload, etc.
  • SRQ service request decoder
  • Microprocessor 604 preferably controls the operation of monitor 12, including medical subsystem 100, PLC subsystem 200, DSP subsystem 300, voice processing subsystem 400, and radio subsystem 500.
  • Control subsystem 600 also manages common resources such as DSP subsystem 300, Data MUX/DEMUX 601, RAM memory 602, and ROM memory 603 among the various subsystems, and controls data flow between subsystems.
  • Monitor 12 is typically powered by a batten 700 and a power supply 701 .
  • Fig. 3 is a simplified block diagram illustration of voice processing subsystem 400 of Fig. 2. constructed and operative in accordance with a preferred embodiment of the present invention.
  • Voice processing subsystem 400 typically voice communications circuit. ) including a demodulator 401. a channel coder/decoder 402, a GSM voice coder (vocoder) 403. microphone 405. speaker
  • ADC analog-to-digital converter
  • DAC digital-to-analog converter
  • Radio subsystem 400 Signal received by radio subsystem 400 are demodulated at demodulator 401. decoded at channel coder/decoder 402. processed at voice coder 403. converted to analog signals at DAC 407. and output via speaker 406. Voice signals input via microphone 405 are digitized at ADC 404, processed at voice coder 403. channel encoded at channel coder/decoder 402. and provided to data MUX/DEMUX 601 and finally to digital GMSK modulator 5 10 for transmission via radio subsystem 500.
  • FIG. 4 is a simplified block diagram illustrating end-to-end communication between monitor 12 and a central medical monitoring station 20, constructed and operative in accordance w ith a preferred embodiment of the present invention.
  • Monitor 12 typically communicates with central medical monitoring station 20 via a cellular telephone network system 22 and a public switched telephone network (PSTN) 24.
  • Central station 20 typically comprises conventional communications and data processing means for supporting voice and data communications with monitor 12 and patient 10.
  • Patient 10 ma) communicate by voice channel via monitor 12 with a clinician 26 who is located at the central station 20.
  • Monitor 12 may send and/or receive data to and/or central station 20 via a data communications channel.
  • the clinician 26 may contact emergency medical personnel 28 and give them the patient ' s condition and location.
  • the clinician 26 may also alert the patient ' s physician 30.
  • Monitor 12 typically operates in any of the following modes: 1 . Event recording activated by the patient, either at the patient ' s initiative, the clinician ' s initiative, or pursuant to an alarm, where the patient performs one or more tests and transmits the data to the central station. In this mode the central station may be contacted at the beginning of the event for data transmission during the event or at the conclusion of the testing; 2. Continuous monitoring where physiological data are captured continuously and stored in memory for later transmission. Continuous monitoring may be provided in any of the following ways:
  • FIG. 5 is a simplified flowchart illustration of the operation of monitor 12 in event recording mode activated by patient, operative in accordance with a preferred embodiment of the present invention.
  • monitor 12 is used by the patient to perform one or more types of physiological testing described hereinabove.
  • the result of the tests are recorded in RAM memory 602 (Fig. 2).
  • the patient then establishes a communications link between monitor 12 and a central medical monitoring station by dialing via keypad 607 and placing a cellular telephone call which is then connected to the public telephone network.
  • a clinician at the receiving station answers the call the clinician and patient may communications by voice.
  • the patient may also send the stored data of the test results, as well as the patient's current location as determined by PLC subsystem 200.
  • the clinician at the receiving station may analyze the patient's physiological data and may instruct the patient regarding any actions the patient should take and/or may notify emergency medical personnel of the patient's present location and dispatch them to come to the patient's aid.
  • FIG. 6 is a simplified flowchart illustration of the operation of monitor 12 in event recording mode activated remotely by an operator at a central medical monitoring station, operative in accordance with a preferred embodiment of the present invention.
  • monitor 12 is in a standby mode in which it is able to receive and automatically answer a call from a central medical monitoring station via cellular network.
  • a clinician at central station connects to monitor 12 and, during a voice communication session with the patient, instructs the
  • the patient performs the tests and sends the test data, in addition to the patient's current location, to the central station.
  • the clinician at the receiving station may analyze the patient's physiological data and may instruct the patient regarding any actions the patient should take and/or may notify emergency medical personnel of the patient's present location and dispatch them to come to the patient ' s aid.
  • FIG. 7 is a simplified flowchart illustration of the operation of monitor 12 in event recording mode activated by the patient pursuant to an alarm, operative in accordance with a preferred embodiment of the present invention.
  • monitor 12 is preprogrammed to activate alarm 609 (Fig. 2) at a specific time or at a timed interval, calculated using microprocessor 604 's internal clock, in order to periodically remind the patient to perform one or more tests.
  • Which tests to perform, as well as instructions for performing the tests may appear on display 606 or may be heard via speaker 406 in accordance with preprogrammed instructions.
  • the patient then performs the tests according to the instructions. Once the tests are completed, or at preset times or elapsed intervals, monitor 12 contacts the central station as described above and transmits the recorded physiological data and the patient's current location.
  • FIG. 8 is a simplified flowchart illustration of the operation of monitor 12 in combination continuous recording mode and patient-activated event recording mode, operative in accordance with a preferred embodiment of the present invention.
  • monitor 12 continuously performs one or more tests and records the test data in RAM memory 602. Since RAM memory 602 is limited, data are stored in FIFO fashion, such that once RAM 602 becomes full, additional data are written over the oldest recorded data. The patient, sensing discomfort, presses a button on keypad 607 to indicate a patient-activated event.
  • the data recorded during the patient-activated event are recorded in an area of RAM memory that is set aside such that it is write-protected with respect to data recorded prior to and subsequent to the event and will not be overwritten once the event concludes, either after a predetermined elapsed time, after the patient signals the conclusion of the event, or upon receiving a signal from the central station.
  • Monitor 12 may additionally transmit data recorded immediately prior to the event, such as the 60 seconds of data recorded prior to the event or any other preset length of time prior to the event, in addition to transmitting the patient ' s current location. Additionally or alternative! ⁇ . any or all data recorded prior to the event and contained in RAM 602 may be transmitted to the central station. This will allow the clinician to compare pre-event data with event data, thus providing a comparison that may be more useful than event data alone. Monitor 12 may additionally transmit post-event data for a predetermined length of time or until the patient or the clinician instructs otherwise. Reference is now made to Fig.
  • monitor 12 performs one or more tests continuously.
  • the patient ' s physiological condition is continuously monitored and the data are compared to preset parameters and recorded. If the data is falls outside the preset parameters monitor 12 automatically contacts the central station as above and sends the recorded data as well as the patient ' s current location, allowing the clinician to analyze the data and take measures.
  • FIG. 10 is a simplified flowchart illustration of the operation of monitor 12 in continuous recording holter-mode with a device-activated or patient-activated data upload, operative in accordance with a preferred embodiment of the present invention.
  • monitor 12 performs one or more tests continuously. The patient's physiological data are continuously recorded. If memory becomes full monitor 12 automatically contacts the central station and uploads the data in memory, allowing memory to be cleared and monitoring to continue uninterrupted. Additionally or alternatively, the patient may initiate contact and data upload at any time, thus allowing memory to be cleared.
  • a clinician may remotely change preset parameters stored in monitor 12 and may access a patient ' s recorded physiological data without patient intervention. It is also appreciated that any preprogrammed, predetermined, and preset instructions, information, parameters, and criteria described hereinabove with reference to monitor 12 may be stored in ROM

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Abstract

L'invention concerne un appareil de contrôle de la santé pour malade ambulatoire, qui inclut un boîtier portatif muni d'au moins un dispositif d'entrée de données physiologiques pour recueillir des données physiologiques du patient, un circuit de repérage de position pour déterminer des informations relatives à l'emplacement géographique du patient, un circuit de communication par téléphone cellulaire pour communiquer à un poste central de contrôle de la santé les données physiologiques et les informations relatives à l'emplacement géographique. L'appareil inclut également un circuit de communication vocale au moyen duquel le patient communique oralement avec un clinicien situé au poste central de contrôle de la santé, un circuit de traitement du signal numérique pour traiter des signaux associés au dispositif d'entrée de données physiologiques, au circuit de repérage de position, au circuit de communication par téléphone cellulaire, ou au circuit de communication vocale. L'appareil inclut en outre un circuit de commande pour commander le circuit de traitement du signal numérique, le dispositif d'entrée de données physiologiques, le circuit de repérage de position, le circuit de communication par téléphone cellulaire, ou encore le circuit de communication vocale.
PCT/IL1999/000123 1998-03-03 1999-03-02 Appareil cellulaire individuel de controle de la sante pour malade ambulatoire WO1999044494A1 (fr)

Priority Applications (8)

Application Number Priority Date Filing Date Title
JP54447999A JP2001523150A (ja) 1998-03-03 1999-03-02 移動患者用個人携行セルラ健康監視装置
AU26382/99A AU747555B2 (en) 1998-03-03 1999-03-02 Personal ambulatory cellular health monitor for mobile patient
EP99906437A EP0980227A1 (fr) 1998-03-03 1999-03-02 Appareil cellulaire individuel de controle de la sante pour malade ambulatoire
IL132659A IL132659A (en) 1998-03-03 1999-03-02 Personal ambulatory cellular health monitor for mobile patient
KR1019997010148A KR100626758B1 (ko) 1998-03-03 1999-03-02 이동 환자를 위한 보행용 개인 무선 신체상태 모니터
BR9904898-1A BR9904898A (pt) 1998-03-03 1999-03-02 Aparelho de monitoramento de paciente de ambulatório; sistema para monitorar um paciente; e método para monitorar um paciente
CA002288797A CA2288797C (fr) 1998-03-03 1999-03-02 Appareil cellulaire individuel de controle de la sante pour malade ambulatoire
NO995381A NO995381L (no) 1998-03-03 1999-11-03 Personlig portabel cellulær helsemonitor for mobil pasient

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US7666098P 1998-03-03 1998-03-03
US60/076,660 1998-03-03

Publications (1)

Publication Number Publication Date
WO1999044494A1 true WO1999044494A1 (fr) 1999-09-10

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PCT/IL1999/000123 WO1999044494A1 (fr) 1998-03-03 1999-03-02 Appareil cellulaire individuel de controle de la sante pour malade ambulatoire

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EP (1) EP0980227A1 (fr)
JP (1) JP2001523150A (fr)
KR (1) KR100626758B1 (fr)
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CA (1) CA2288797C (fr)
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WO2002035997A1 (fr) * 2000-10-31 2002-05-10 Commonwealth Scientific And Industrial Research Organisation Systeme de surveillance
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KR100366816B1 (ko) * 2000-04-03 2003-01-09 주식회사 유비케어 원격 의료 장치 및 방법
EP1097671A3 (fr) * 1999-11-05 2003-02-05 Samsung Electronics Co., Ltd. Système de services medicaux à distance utilisant un réseau de communications et méthode associée
KR100371679B1 (ko) * 2001-03-30 2003-02-12 백무창 지피에스를 이용한 동물 관리방법 및 그 관리시스템
WO2002064032A3 (fr) * 2001-02-14 2003-02-27 Siemens Medical Solutions Réseau de zone de surveillance des patients
KR100376252B1 (ko) * 2000-03-02 2003-03-15 주식회사 알파인터넷 원격 모니터링 및 리마인드 시스템 및 방법
KR20030043178A (ko) * 2001-11-27 2003-06-02 바이오인포메틱스 주식회사 무선통신을 이용한 실버타운 관리 시스템 및 그 방법
WO2002086792A3 (fr) * 2001-04-23 2003-07-31 Cardionet Inc Correlation de signaux de capteur avec des informations subjectives de surveillance de patient
US6602191B2 (en) 1999-12-17 2003-08-05 Q-Tec Systems Llp Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
WO2003075118A2 (fr) 2002-03-04 2003-09-12 Card Guard Scientific Survival Ltd. Dispositif cellulaire ambulatoire personnel de surveillance sanitaire
JP2004500949A (ja) * 2000-06-23 2004-01-15 ボディーメディア インコーポレイテッド 健康及び壮健状態をモニターするシステム
JP2005169128A (ja) * 2000-11-30 2005-06-30 Arkray Inc コメント入力機能付測定装置
US6940403B2 (en) 1997-03-07 2005-09-06 Cardionet, Inc. Reprogrammable remote sensor monitoring system
US6957107B2 (en) 2002-03-13 2005-10-18 Cardionet, Inc. Method and apparatus for monitoring and communicating with an implanted medical device
US6976958B2 (en) 2000-12-15 2005-12-20 Q-Tec Systems Llc Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
US7002468B2 (en) 2001-04-23 2006-02-21 Cardionet, Inc. Controlling access to a medical monitoring system
EP1304633A4 (fr) * 2000-06-02 2006-07-26 Arkray Inc Appareil de mesure et procede de transmission des donnees mesurees
US7130396B2 (en) 2001-04-23 2006-10-31 Cardionet, Inc. Medical monitoring system having multiple communications channels
US7156809B2 (en) 1999-12-17 2007-01-02 Q-Tec Systems Llc Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
EP1404213A4 (fr) * 2000-05-19 2007-10-31 Welch Allyn Protocol Inc Systeme de surveillance des patients
US7534235B2 (en) 2001-05-22 2009-05-19 Uni-Charm Corporation Interlabial pad
WO2010016025A1 (fr) * 2008-08-06 2010-02-11 E-Vitae Pte. Ltd. Réseau de détecteurs corporels universel
US7860731B2 (en) 2004-12-20 2010-12-28 Confidant Hawaii, Llc Monitoring and feedback wireless medical system and method
US8326646B2 (en) 2007-09-18 2012-12-04 Humana Innovations Enterprises, Inc. Method and system for suggesting meals based on tastes and preferences of individual users
US8463618B2 (en) 2007-09-18 2013-06-11 Humana Innovations Enterprises, Inc. Method for tailoring strategy messages from an expert system to enhance success with modifications to health behaviors
US8560336B2 (en) 2007-09-18 2013-10-15 Humana Innovations Enterprises, Inc. System and method for increasing compliance with a health plan
US8655717B2 (en) 2007-09-18 2014-02-18 Humana Innovations Enterprises, Inc. System and method for rewarding users for changes in health behaviors
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US8961414B2 (en) 2000-06-16 2015-02-24 Aliphcom Apparatus for monitoring health, wellness and fitness
US9015008B2 (en) 1999-03-03 2015-04-21 Card Guard Scientific Survival Ltd. System and a method for physiological monitoring
US9033875B2 (en) 2000-06-16 2015-05-19 Bodymedia, Inc. Multi-sensor system, device, and method for deriving human status information
US9168001B2 (en) 2002-08-22 2015-10-27 Bodymedia, Inc. Adhesively mounted apparatus for determining physiological and contextual status
US9220430B2 (en) 2013-01-07 2015-12-29 Alivecor, Inc. Methods and systems for electrode placement
US9247911B2 (en) 2013-07-10 2016-02-02 Alivecor, Inc. Devices and methods for real-time denoising of electrocardiograms
US9254092B2 (en) 2013-03-15 2016-02-09 Alivecor, Inc. Systems and methods for processing and analyzing medical data
US9254095B2 (en) 2012-11-08 2016-02-09 Alivecor Electrocardiogram signal detection
US9351654B2 (en) 2010-06-08 2016-05-31 Alivecor, Inc. Two electrode apparatus and methods for twelve lead ECG
US9420956B2 (en) 2013-12-12 2016-08-23 Alivecor, Inc. Methods and systems for arrhythmia tracking and scoring
US9474445B2 (en) 2001-04-23 2016-10-25 Braemar Manufacturing, Llc Controlling access to medical monitoring system
US9649042B2 (en) 2010-06-08 2017-05-16 Alivecor, Inc. Heart monitoring system usable with a smartphone or computer
US9763581B2 (en) 2003-04-23 2017-09-19 P Tech, Llc Patient monitoring apparatus and method for orthosis and other devices
US9839363B2 (en) 2015-05-13 2017-12-12 Alivecor, Inc. Discordance monitoring
EP1250087B2 (fr) 2000-01-20 2021-04-21 Medtronic MiniMed, Inc. Assistant numerique manuel avec dispositif medical
CN113057650A (zh) * 2019-12-30 2021-07-02 石家庄以岭药业股份有限公司 数据发送方法、装置、数据采集器和存储介质
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JP5499342B2 (ja) * 2008-11-28 2014-05-21 株式会社日立製作所 センサノード、センサネットワークシステム及びデータ収集方法
JP6382185B2 (ja) 2012-05-22 2018-08-29 スミス アンド ネフュー ピーエルシーSmith & Nephew Public Limited Company 創傷治療のための装置および方法
KR101427769B1 (ko) 2012-06-29 2014-08-12 전자부품연구원 장애인 원격 돌보미 시스템 및 방법
US12133789B2 (en) 2014-07-31 2024-11-05 Smith & Nephew, Inc. Reduced pressure therapy apparatus construction and control
US12263294B2 (en) 2016-09-28 2025-04-01 T.J.Smith And Nephew, Limited Systems and methods for operating negative pressure wound therapy devices
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US11712508B2 (en) 2017-07-10 2023-08-01 Smith & Nephew, Inc. Systems and methods for directly interacting with communications module of wound therapy apparatus
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Cited By (67)

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US6940403B2 (en) 1997-03-07 2005-09-06 Cardionet, Inc. Reprogrammable remote sensor monitoring system
US9015008B2 (en) 1999-03-03 2015-04-21 Card Guard Scientific Survival Ltd. System and a method for physiological monitoring
EP1095618A3 (fr) * 1999-10-29 2001-08-22 Peter Ganshorn Méthode et appareil de réalisation d'un profil des mouvements et de l'état de stress physiologique d'un individu
EP1097671A3 (fr) * 1999-11-05 2003-02-05 Samsung Electronics Co., Ltd. Système de services medicaux à distance utilisant un réseau de communications et méthode associée
US8277377B2 (en) 1999-12-17 2012-10-02 Q-Tec Systems Llc Method and apparatus for monitoring exercise with wireless internet connectivity
US7156809B2 (en) 1999-12-17 2007-01-02 Q-Tec Systems Llc Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
JP2006075593A (ja) * 1999-12-17 2006-03-23 Roger J Quy ワイヤレスインターネット接続による患者モニタリングのための方法及び装置
US6936007B2 (en) 1999-12-17 2005-08-30 Q-Tec Systems Llp Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
US6602191B2 (en) 1999-12-17 2003-08-05 Q-Tec Systems Llp Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
US7156808B2 (en) 1999-12-17 2007-01-02 Q-Tec Systems Llc Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
EP1250087B2 (fr) 2000-01-20 2021-04-21 Medtronic MiniMed, Inc. Assistant numerique manuel avec dispositif medical
KR100376252B1 (ko) * 2000-03-02 2003-03-15 주식회사 알파인터넷 원격 모니터링 및 리마인드 시스템 및 방법
KR100366816B1 (ko) * 2000-04-03 2003-01-09 주식회사 유비케어 원격 의료 장치 및 방법
EP1404213A4 (fr) * 2000-05-19 2007-10-31 Welch Allyn Protocol Inc Systeme de surveillance des patients
EP1304633A4 (fr) * 2000-06-02 2006-07-26 Arkray Inc Appareil de mesure et procede de transmission des donnees mesurees
US9033875B2 (en) 2000-06-16 2015-05-19 Bodymedia, Inc. Multi-sensor system, device, and method for deriving human status information
US8961414B2 (en) 2000-06-16 2015-02-24 Aliphcom Apparatus for monitoring health, wellness and fitness
JP2004500949A (ja) * 2000-06-23 2004-01-15 ボディーメディア インコーポレイテッド 健康及び壮健状態をモニターするシステム
WO2002011614A3 (fr) * 2000-08-07 2002-06-13 Gruppo Irat S R L Valise de sauvetage pour diagnostic et traitement a distance
WO2002032301A1 (fr) * 2000-10-16 2002-04-25 Tec Properties Limited Systeme permettant de surveiller les parametres physiologiques d'une personne
WO2002035997A1 (fr) * 2000-10-31 2002-05-10 Commonwealth Scientific And Industrial Research Organisation Systeme de surveillance
JP2005169128A (ja) * 2000-11-30 2005-06-30 Arkray Inc コメント入力機能付測定装置
US6976958B2 (en) 2000-12-15 2005-12-20 Q-Tec Systems Llc Method and apparatus for health and disease management combining patient data monitoring with wireless internet connectivity
US6749566B2 (en) 2001-02-14 2004-06-15 Draeger Medical Systems, Inc. Patient monitoring area network
WO2002064032A3 (fr) * 2001-02-14 2003-02-27 Siemens Medical Solutions Réseau de zone de surveillance des patients
KR100371679B1 (ko) * 2001-03-30 2003-02-12 백무창 지피에스를 이용한 동물 관리방법 및 그 관리시스템
US7130396B2 (en) 2001-04-23 2006-10-31 Cardionet, Inc. Medical monitoring system having multiple communications channels
US7002468B2 (en) 2001-04-23 2006-02-21 Cardionet, Inc. Controlling access to a medical monitoring system
US9474445B2 (en) 2001-04-23 2016-10-25 Braemar Manufacturing, Llc Controlling access to medical monitoring system
WO2002086792A3 (fr) * 2001-04-23 2003-07-31 Cardionet Inc Correlation de signaux de capteur avec des informations subjectives de surveillance de patient
US7927323B2 (en) 2001-05-22 2011-04-19 Uni-Charm Corporation Interlabial pad
US7534235B2 (en) 2001-05-22 2009-05-19 Uni-Charm Corporation Interlabial pad
KR20030043178A (ko) * 2001-11-27 2003-06-02 바이오인포메틱스 주식회사 무선통신을 이용한 실버타운 관리 시스템 및 그 방법
WO2003075118A2 (fr) 2002-03-04 2003-09-12 Card Guard Scientific Survival Ltd. Dispositif cellulaire ambulatoire personnel de surveillance sanitaire
EP1488649A2 (fr) * 2002-03-04 2004-12-22 Card Guard Scientific Survival Ltd. Dispositif cellulaire ambulatoire personnel de surveillance sanitaire
EP1488649A4 (fr) * 2002-03-04 2009-04-01 Card Guard Scient Survival Ltd Dispositif cellulaire ambulatoire personnel de surveillance sanitaire
US6957107B2 (en) 2002-03-13 2005-10-18 Cardionet, Inc. Method and apparatus for monitoring and communicating with an implanted medical device
US9168001B2 (en) 2002-08-22 2015-10-27 Bodymedia, Inc. Adhesively mounted apparatus for determining physiological and contextual status
US9763581B2 (en) 2003-04-23 2017-09-19 P Tech, Llc Patient monitoring apparatus and method for orthosis and other devices
US9272183B2 (en) 2003-12-11 2016-03-01 Q-Tec Systems Llc Method and apparatus for exercise monitoring combining exercise monitoring and visual data with wireless wearable devices
US9943723B2 (en) 2004-02-06 2018-04-17 Koninklijke Philips N.V. Method and apparatus for exercise monitoring combining exercise monitoring and visual data with wireless wearable devices
US10632342B2 (en) 2004-02-06 2020-04-28 Koninklijke Philips N.V. Method and apparatus for exercise monitoring combining exercise monitoring and visual data with wireless devices
US7860731B2 (en) 2004-12-20 2010-12-28 Confidant Hawaii, Llc Monitoring and feedback wireless medical system and method
US8463618B2 (en) 2007-09-18 2013-06-11 Humana Innovations Enterprises, Inc. Method for tailoring strategy messages from an expert system to enhance success with modifications to health behaviors
US8655717B2 (en) 2007-09-18 2014-02-18 Humana Innovations Enterprises, Inc. System and method for rewarding users for changes in health behaviors
US8326646B2 (en) 2007-09-18 2012-12-04 Humana Innovations Enterprises, Inc. Method and system for suggesting meals based on tastes and preferences of individual users
US8560336B2 (en) 2007-09-18 2013-10-15 Humana Innovations Enterprises, Inc. System and method for increasing compliance with a health plan
WO2010016025A1 (fr) * 2008-08-06 2010-02-11 E-Vitae Pte. Ltd. Réseau de détecteurs corporels universel
US9649042B2 (en) 2010-06-08 2017-05-16 Alivecor, Inc. Heart monitoring system usable with a smartphone or computer
US9351654B2 (en) 2010-06-08 2016-05-31 Alivecor, Inc. Two electrode apparatus and methods for twelve lead ECG
US11382554B2 (en) 2010-06-08 2022-07-12 Alivecor, Inc. Heart monitoring system usable with a smartphone or computer
US9833158B2 (en) 2010-06-08 2017-12-05 Alivecor, Inc. Two electrode apparatus and methods for twelve lead ECG
US9254095B2 (en) 2012-11-08 2016-02-09 Alivecor Electrocardiogram signal detection
US10478084B2 (en) 2012-11-08 2019-11-19 Alivecor, Inc. Electrocardiogram signal detection
US9579062B2 (en) 2013-01-07 2017-02-28 Alivecor, Inc. Methods and systems for electrode placement
US9220430B2 (en) 2013-01-07 2015-12-29 Alivecor, Inc. Methods and systems for electrode placement
US9254092B2 (en) 2013-03-15 2016-02-09 Alivecor, Inc. Systems and methods for processing and analyzing medical data
US9681814B2 (en) 2013-07-10 2017-06-20 Alivecor, Inc. Devices and methods for real-time denoising of electrocardiograms
US9247911B2 (en) 2013-07-10 2016-02-02 Alivecor, Inc. Devices and methods for real-time denoising of electrocardiograms
US9420956B2 (en) 2013-12-12 2016-08-23 Alivecor, Inc. Methods and systems for arrhythmia tracking and scoring
US10159415B2 (en) 2013-12-12 2018-12-25 Alivecor, Inc. Methods and systems for arrhythmia tracking and scoring
US9572499B2 (en) 2013-12-12 2017-02-21 Alivecor, Inc. Methods and systems for arrhythmia tracking and scoring
CN103876711A (zh) * 2014-03-27 2014-06-25 北京圣博亚科技有限公司 可穿戴电子设备以及人体健康监测管理系统
US9839363B2 (en) 2015-05-13 2017-12-12 Alivecor, Inc. Discordance monitoring
US10537250B2 (en) 2015-05-13 2020-01-21 Alivecor, Inc. Discordance monitoring
US11116401B2 (en) 2016-11-11 2021-09-14 3M Innovative Properties Company Systems and methods for wireless physiology monitoring
CN113057650A (zh) * 2019-12-30 2021-07-02 石家庄以岭药业股份有限公司 数据发送方法、装置、数据采集器和存储介质

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CA2288797A1 (fr) 1999-09-10
JP2001523150A (ja) 2001-11-20
AU747555B2 (en) 2002-05-16
BR9904898A (pt) 2000-07-04
KR100626758B1 (ko) 2006-09-22
IL132659A (en) 2010-12-30
AU2638299A (en) 1999-09-20
EP0980227A1 (fr) 2000-02-23
IL132659A0 (en) 2001-03-19
NO995381L (no) 2000-01-03
CA2288797C (fr) 2008-08-05
KR20010012199A (ko) 2001-02-15
NO995381D0 (no) 1999-11-03

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