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    • 91. 发明授权
    • Object location monitoring system
    • 对象位置监控系统
    • US06958677B1
    • 2005-10-25
    • US09824921
    • 2001-04-02
    • Scott J. Carter
    • Scott J. Carter
    • G06K17/00H04Q5/22
    • G06K19/07762G06K17/00G06K2017/0045
    • An object location monitoring system includes beacons that are spatially distributed throughout an area to be monitored. The beacons transmit interrogation signals that are received and echoed by transponders that attach to moveable objects. Each beacon retransmits its interrogation signal, and any transponder response thereto, to a receiver that measures a time difference between the two signals. This time difference reflects the signal propagation time, and thus the distance, between the beacon and the transponder. One such receiver preferably analyzes the retransmitted signals of multiple (e.g., 50 to 100) beacons. A triangulation method is used to determine the location of each transponder based on the transponder's distances from a set of beacons. In one embodiment, the transponders are provided as or within disposable ID bracelets worn by patients, and are used to track the locations of the patients within a hospital.
    • 物体位置监视系统包括空间分布在待监视区域的信标。 信标发送询问信号,该讯号信号由连接到可移动对象的应答器接收和回送。 每个信标将其询问信号和任何应答器响应重新传送到测量两个信号之间的时间差的接收机。 该时间差反映了信标传播时间,从而反映信标和应答器之间的距离。 一个这样的接收机优选地分析多个(例如,50至100)个信标的重发信号。 基于应答器距离一组信标的距离,使用三角测量方法来确定每个转发器的位置。 在一个实施例中,应答器被提供为或由患者佩戴的一次性ID手镯内,并且用于跟踪医院内的患者的位置。
    • 92. 发明授权
    • Method of and apparatus for displaying and analyzing a physiological signal
    • 用于显示和分析生理信号的方法和装置
    • US06920350B2
    • 2005-07-19
    • US09922627
    • 2001-08-06
    • Joel Q. XueShankara B. Reddy
    • Joel Q. XueShankara B. Reddy
    • A61B5/044
    • A61B5/044A61B5/7264
    • A method of displaying a representation of a physiological signal produced by a patient. The method includes the acts of obtaining a portion of at least one physiological signal acquired from the patient, determining an area to display, and constructing a virtual image representing at least a portion of the patient. The virtual image including (M) polygonal areas. The method further includes transforming the obtained signal to a plurality of values, assigning each value to one of the (M) polygonal areas, assigning a visual characteristic to each polygonal area based in part on the assigned values, and displaying at least a portion of the virtual image including the assigned visual characteristics. The invention further provides a method of optimal feature selection for the classification of the physiological signals produced by a patient.
    • 一种显示患者产生的生理信号的表示的方法。 该方法包括获得从患者获得的至少一个生理信号的一部分的动作,确定要显示的区域,以及构建表示患者的至少一部分的虚拟图像。 虚拟图像包括(M)多边形区域。 该方法还包括将获得的信号变换为多个值,将每个值分配给(M)个多边形区域中的一个,部分地基于分配值为每个多边形区域分配视觉特征,并且显示至少一部分 虚拟图像包括分配的视觉特征。 本发明还提供了一种用于对由患者产生的生理信号进行分类的最佳特征选择的方法。
    • 93. 发明申请
    • Alarm notification system and device having voice communication capability
    • 具有语音通信功能的报警通知系统和设备
    • US20050143671A1
    • 2005-06-30
    • US10750608
    • 2003-12-31
    • David HastingsPierre Charbonneau
    • David HastingsPierre Charbonneau
    • A61B5/00G06F19/00A61B5/04
    • A61B5/411A61B5/002G06F19/3418
    • A system for use in a monitoring a plurality of subjects may be configured to receive data from a monitoring device, determine whether a subject has a condition that may require attention based on data received from the monitoring device, wirelessly send a notification message to a first portable electronic device and/or a second portable electronic device if a subject has a condition that may require attention, and facilitate voice communication between the first portable device and the second portable device. The voice data may be transferred using one of a network of the health care facility, a direct wireless connection between the portable devices, and a cellular network. The system may further be configured to forward other data from the first portable device to the second portable device, such as data associated with a notification message being displayed on one of the devices.
    • 用于监视多个对象的系统可以被配置为从监视设备接收数据,基于从监视设备接收的数据来确定被摄体是否具有可能需要注意的状况,无线地将通知消息发送到第一 便携式电子设备和/或第二便携式电子设备,如果被摄体具有可能需要注意的状况,并且促进第一便携式设备和第二便携式设备之间的语音通信。 可以使用保健设施的网络之一,便携式设备之间的直接无线连接和蜂窝网络来传送语音数据。 该系统还可以被配置为将其他数据从第一便携式设备转发到第二便携式设备,诸如与正在其中一个设备上显示的通知消息相关联的数据。
    • 99. 发明申请
    • Atrial fibrillation detection method and apparatus
    • 心房颤动检测方法及装置
    • US20030144597A1
    • 2003-07-31
    • US10273614
    • 2002-10-18
    • GE Medical Systems Information Technologies, Inc.
    • Elizabeth Anne Bock
    • A61B005/04
    • A61B5/02405A61B5/046A61B5/7264
    • A method and apparatus to detect irregular heart activity and estimate heart rate. In one embodiment, the heart rate estimation apparatus includes a group of six RR storage structures that receives an input of six successive RR interval values. The apparatus also includes a probability engine coupled to the group of RR storage structures, the probability engine is operable to calculate and output a mean value of the six RR interval values and a median value of the mean value and the six RR interval. In one embodiment, the apparatus carries out a method including the acts of determining a plurality of interval values between successive R waves; determining a mean of a group of six interval values; determining a median interval value for a group including the group of six interval values and the mean of the group of six interval values; and determining a running average of interval values between successive R waves using the median interval value.
    • 检测不规则心脏活动并估计心率的方法和装置。 在一个实施例中,心率估计装置包括接收六个连续RR间隔值的输入的一组六个RR存储结构。 所述装置还包括耦合到所述一组RR存储结构的概率引擎,所述概率引擎可操作以计算并输出所述六个RR间隔值的平均值以及所述平均值和所述六个RR间隔的中值。 在一个实施例中,该装置执行包括确定连续R波之间的多个间隔值的动作的方法; 确定一组六个间隔值的平均值; 确定包括六个间隔值组的组和六个间隔值组的平均值的组的中值间隔值; 以及使用所述中值间隔值来确定连续R波之间的间隔值的运行平均值。
    • 100. 发明申请
    • Method and apparatus for reducing noise and detecting electrode faults in medical equipment
    • 降低医疗设备噪声和检测电极故障的方法和装置
    • US20020183797A1
    • 2002-12-05
    • US10200411
    • 2002-07-22
    • GE Medical Systems Information Technologies, Inc.
    • Wilhelm J. KaiserHorst WeberWolfgang Winter
    • A61N001/37
    • A61B5/0424
    • 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.
    • 一种用于减少生理活动获取系统中噪声和检测电极故障的方法和装置。 该方法包括通过连接到对象的电极传递载波信号的动作。 一旦载波信号被传送,具有电活动部分和载波信号部分的组合信号由连接到对象的至少一个信号感测电极来感测。 具有与载波信号基本相同的第一零点频率的低通有限脉冲响应滤波器将载波信号部分与电活动部分分离。 使用载波信号部分计算感测电极的阻抗值。 将计算的阻抗值与已知值进行比较,以确定是否存在电极故障。