21.
    发明专利
    未知

    公开(公告)号:AT385184T

    公开(公告)日:2008-02-15

    申请号:AT01930556

    申请日:2001-04-17

    Applicant: MOTOROLA INC

    Abstract: A wireless, programmable system for medical monitoring includes a base unit and a plurality of individual wireless, remotely programmable biosensor transceivers. The base unit manages the transceivers by issuing registration, configuration, data acquisition, and transmission commands using wireless techniques. Physiologic data from the wireless transceivers is demultiplexed and supplied via a standard interface to a conventional monitor for display. Initialization, configuration, registration, and management routines for the wireless transceivers and the base unit are also described.

    ELECTRONIC DIRECTION FINDER
    26.
    发明专利

    公开(公告)号:CA2079160A1

    公开(公告)日:1993-04-05

    申请号:CA2079160

    申请日:1992-09-25

    Applicant: MOTOROLA INC

    Abstract: ELECTRONIC DIRECTION FINDER An electronic direction finder (10), having a housing (11) with a major axis (18), has a GPS receiver (28) and directional (31) and omnidirectional (30) antennas and provides an electrical signal (angle A) indicative of the direction of the housing axis (18) with respect to a predetermined compass heading (North). The electrical signal (angle A) is provided by using determined positions of the GPS receiver (28) and one GPS satellite to calculate a compass bearing from the receiver (28) to the one satellite and using the directional antenna (31) to determine the orientation of the housing axis (18) with respect to the satellite. This eliminates using electrical output terrestrial magnetism sensing devices to sense direction finder/receiver orientation with respect to compass direction, and therefore avoids the inaccuracies and costs associated with such magnetism sensing devices.

    OPTICAL NONINVASIVE BLOOD PRESSURE SENSOR AND METHOD

    公开(公告)号:CA2378166C

    公开(公告)日:2009-06-09

    申请号:CA2378166

    申请日:2001-05-10

    Applicant: MOTOROLA INC

    Abstract: A blood pressure sensor (12) includes a source of photo-radiation, such as a n array (30) of laser diodes (30A-I). The sensor also includes a two-dimensional, flexible reflective surface (14) . The reflective surface is nominally positioned relative to the radiation source such that the radiation travels in a direction norma l to the reflective surface. The reflective surface is placed adjacent to the location on the patient where the blood pressure data is to be acquired. Radiation from the source is reflected off of the reflective surface onto a two-dimensional array (17) of photo-detectors (18) . Systolic and diastolic blood pressure fluctuations in the patient are translated into deflections of the patient's skin. These deflections cause corresponding deflections in the two dimensional reflective surface. The associated movement of said flexible reflective surface (14) due to blood pulsation causes scattering patterns from said reflective surface to be detected by the two dimensional array (17 ) of photo-detectors (18). The output from the array of photo-detectors is calibrated to blood pressure in mmHg during a calibration procedure to obtain a set of calibration relationships for one or more of the individual detectors. The calibration relationships a re then used during acquisition of blood pressure data to arrive at blood pressure data.

    28.
    发明专利
    未知

    公开(公告)号:DE60132665T2

    公开(公告)日:2009-01-29

    申请号:DE60132665

    申请日:2001-04-17

    Applicant: MOTOROLA INC

    Abstract: A wireless, programmable system for medical monitoring includes a base unit and a plurality of individual wireless, remotely programmable biosensor transceivers. The base unit manages the transceivers by issuing registration, configuration, data acquisition, and transmission commands using wireless techniques. Physiologic data from the wireless transceivers is demultiplexed and supplied via a standard interface to a conventional monitor for display. Initialization, configuration, registration, and management routines for the wireless transceivers and the base unit are also described.

    29.
    发明专利
    未知

    公开(公告)号:DE60133525D1

    公开(公告)日:2008-05-21

    申请号:DE60133525

    申请日:2001-05-10

    Applicant: MOTOROLA INC

    Abstract: A blood pressure sensor includes a source of photo-radiation, such as an array of laser diodes. The sensor also includes a two-dimensional, flexible reflective surface. The reflective surface is nominally positioned relative to the radiation source such that the radiation travels in a direction normal to the reflective surface. The reflective surface is placed adjacent to the location on the patient where the blood pressure data is to be acquired. Radiation from the source is reflected off of the reflective surface onto a two-dimensional array of photo-detectors. Systolic and diastolic blood pressure fluctuations in the patient are translated into deflections of the patient's skin. These deflections cause corresponding deflections in the two dimensional reflective surface. The associated movement of said flexible reflective surface due to blood pulsation causes scattering patterns from said reflective surface to be detected by the two dimensional array of photo-detectors. The output from the array of photo-detectors is calibrated to blood pressure in mmHg during a calibration procedure to obtain a set of calibration relationships for one or more of the individual detectors. The calibration relationship are then used during acquisition of blood pressure data to arrive at blood pressure data.

    SISTEMA INALAMBRICO DE ELECTRODOS PROGRAMABLES PARA MONITORIZACION MEDICA.

    公开(公告)号:ES2295158T3

    公开(公告)日:2008-04-16

    申请号:ES01930553

    申请日:2001-04-17

    Applicant: MOTOROLA INC

    Abstract: Un sistema de adquisición de señal de biopotencial inalámbrico, dinámicamente programable (10), incluyendo: a) una pluralidad de transceptores inalámbricos individuales, programables a distancia (20), cada uno de dichos transceptores (20) asociado con un electrodo parche (22) para uso en monitorización médica, y b) una unidad base (18) incluyendo un transceptor inalámbrico (54) para enviar y recibir mensajes a dicha pluralidad de transceptores inalámbricos individuales, programables a distancia (20), c) donde dicha unidad base (18) y dicha pluralidad de transceptores inalámbricos programables individuales (20) implementan un protocolo de programación inalámbrico por el que dichos mensajes son intercambiados entre dicha unidad base (18) y dicha pluralidad de transceptores inalámbricos individuales, programables a distancia (20), por lo que las propiedades de registro, configuración, control de adquisición de datos, y control de transmisión de datos de dicha pluralidad de transceptores inalámbricos individuales, programables a distancia (20) pueden ser gestionadas por dicha unidad base (18); caracterizado porque dicha unidad base (18) incluye además una interface (70) a equipo convencional de monitorización y visualización, y la unidad base (18) es operable para enviar datos en la interface (70) formateados como señales analógicas de entrada de electrodo de tal manera que dichas señales adquiridas puedan ser enviadas desde dicha unidad base (18) a dicho equipo convencional de monitorización y visualización para visualización.

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