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    • 71. 发明授权
    • Defibrillator battery authentication system
    • 除颤电池认证系统
    • US07728548B2
    • 2010-06-01
    • US12131267
    • 2008-06-02
    • John C. DaynesJames S. NeumillerKenneth J. PetersonRichard C. NovaThomas J. McGrath
    • John C. DaynesJames S. NeumillerKenneth J. PetersonRichard C. NovaThomas J. McGrath
    • H02J7/00
    • H01M10/42A61N1/3925A61N1/3975H01M2/34H01M10/4221H01M10/425H02J7/0063H02J7/345
    • A method for operating an external medical device such as a defibrillator includes obtaining a data set from a battery pack and examining the data set to determine whether the battery pack is authenticated for use in the external medical device. If the examination does not confirm the authentication, the method includes causing the device to follow a non-authenticated battery pack protocol. The non-authenticated battery pack protocol may include drawing power from the non-authenticated battery pack only if it is the only available source of power for the external medical device. It may include limiting functionality of the external medical device. It may include modifying the battery status information display for the non-authenticated battery pack. A power system for an external medical device may include a power source external to the medical device and including a memory which stores data indicative of an authorized status of the power source and a processor in the medical device configured to analyze the data and to control a function of the medical device based at least in part on the authorization status.
    • 用于操作诸如除颤器的外部医疗设备的方法包括从电池组获得数据集并检查数据集以确定电池组是否被认证用于外部医疗装置。 如果检查未确认认证,则该方法包括使设备遵循未认证的电池组协议。 未经认证的电池组协议可以包括仅当其是用于外部医疗设备的唯一可用电源时才从未认证的电池组中抽取电力。 它可以包括限制外部医疗设备的功能。 它可以包括修改未经认证的电池组的电池状态信息显示。 用于外部医疗设备的电力系统可以包括医疗设备外部的电源,并且包括存储器,其存储指示电源的授权状态的数据,以及处理器,被配置为分析数据并控制 至少部分地基于授权状态的医疗设备的功能。
    • 73. 发明授权
    • Circuit for performing external pacing and biphasic defibrillation
    • 用于进行外部起搏和双相除颤的电路
    • US06980856B2
    • 2005-12-27
    • US09760212
    • 2001-01-12
    • Joseph L. SullivanRichard C. NovaLawrence A. Borschowa
    • Joseph L. SullivanRichard C. NovaLawrence A. Borschowa
    • A61N1/37A61N1/39
    • A61N1/39A61N1/3912A61N1/3962
    • An external defibrillator/pacer includes an output circuit with four legs arrayed to form an H-bridge. Each leg of the output circuit contains a switch. In a defibrillation mode, pairs of switches in the H-bridge are selectively switched to generate a biphasic defibrillation pulse. Three switches are silicon controlled rectifiers (SCRs). Gate drive circuits are coupled to the SCRs to bias the SCRs with a voltage that allows the SCRs in response to control signals. One switch includes an insulated gate bipolar transistor (IGBT). A gate drive circuit is coupled to the gate of the IGETs to provide a slow turn-on and a fast turn-off of the IGBT. In a pacing mode, a bypass circuit or current source circuit is used to provide a current path bypassing an SCR switch, which cannot be triggered by the relatively low current of pacing pulses.
    • 外部除颤器/起搏器包括具有四个腿的输出电路,以形成H桥。 输出电路的每条支路都有一个开关。 在除颤模式中,选择性地切换H桥中的开关对以产生双相除颤脉冲。 三个开关是可控硅整流器(SCR)。 栅极驱动电路耦合到SCR以通过响应于控制信号允许SCR的电压来偏置SCR。 一个开关包括绝缘栅双极晶体管(IGBT)。 栅极驱动电路耦合到IGBT的栅极,以提供IGBT的缓慢导通和快速关断。 在起搏模式中,旁路电路或电流源电路用于提供旁路SCR开关的电流路径,其不能由相对较低的起搏脉冲电流触发。
    • 74. 发明授权
    • Method and system for locating a portable medical device
    • 用于定位便携式医疗设备的方法和系统
    • US06747556B2
    • 2004-06-08
    • US09919783
    • 2001-07-31
    • Douglas K. MedemaWilliam E. SaltzsteinRobert A. NiskanenRichard C. Nova
    • Douglas K. MedemaWilliam E. SaltzsteinRobert A. NiskanenRichard C. Nova
    • G08B108
    • H04W64/00A61N1/3931
    • The invention provides a wireless automatic location identification (ALI) capable system (10), including a medical device (12) having a wireless data communicator (14), a wireless communication network (16), and a remote locating service (18) for remotely locating and monitoring one or more medical devices over the wireless communication network. When the medical device is linked to the remote locating service over the communication network, the ALI-capable system identifies the location of the medical device and relays the location information to the remote locating service. The system permits reliable determination of the location of the medical device wherever the medical device is situated. The medical device may further be configured to transmit signals indicative of its status, condition, or self-test results, to the remote locating service. This feature allows the remote locating service to centrally monitor the status or condition of a plurality of medical devices.
    • 本发明提供一种无线自动位置识别(ALI)能力系统(10),其包括具有无线数据通信器(14),无线通信网络(16)和远程定位服务(18)的医疗设备(12) 通过无线通信网络远程定位和监视一个或多个医疗设备。 当医疗设备通过通信网络链接到远程定位服务时,具有ALI功能的系统识别医疗设备的位置并将位置信息中继到远程定位服务。 该系统允许在医疗设备所在的任何地方可靠地确定医疗设备的位置。 医疗设备还可以被配置为将指示其状态,状况或自检结果的信号发送到远程定位服务。 该特征允许远程定位服务集中监视多个医疗设备的状态或状况。
    • 75. 发明授权
    • H-bridge circuit for generating a high-energy biphasic waveform in an external defibrillator
    • 用于在外部除颤器中产生高能双相波形的H桥电路
    • US06477413B1
    • 2002-11-05
    • US09706578
    • 2000-11-03
    • Joseph L. SullivanLawrence A. BorschowaRichard C. Nova
    • Joseph L. SullivanLawrence A. BorschowaRichard C. Nova
    • A61N139
    • A61N1/39A61N1/3912
    • An external defibrillator with an output circuit having four legs arrayed in the form of an “H” (an “H-bridge”) is disclosed. The output circuit is designed to be able to conduct a range of defibrillation pulse energies, from below 50 joules to above 200 joules. Each leg of the output circuit contains a solid-state switch. By selectively switching on pairs of switches in the H-bridge, a biphasic defibrillation pulse may be applied to a patient. The switches in three of the legs of the H-bridge output circuit are preferably silicon controlled rectifiers (SCRs). Gate drive circuits are coupled to the SCRs to bias the SCRs with a voltage that allows the SCRs to remain turned-on even when conducting low current. The switch in the fourth leg is preferably a pair of insulated gate bipolar transistors (IGBTs) coupled in series. A gate drive circuit is coupled to the gate of the IGBTs to provide a slow turn-on and a fast turn-off of the IGBTs. The gate drive circuit also biases the IGBTs with a sufficient voltage to allow the IGBTs to withstand a shorted discharge of the external defibrillator through the output circuit. The circuit also includes a protective component that has both inductive and resistive properties. An internal energy dump may be performed by biasing on two legs on the same side of the H-bridge output circuit, thus eliminating the need for a separate energy dump circuit. Methods for testing the H-bridge and verifying its integrity are also disclosed.
    • 公开了具有以“H”形式(“H桥”)排列的四条腿的输出电路的外部除颤器。 输出电路设计为能够进行一系列除颤脉冲能量,从50焦耳到200焦耳以下。 输出电路的每条支路都包含一个固态开关。 通过选择性地开启H桥中的开关对,可以向患者施加双相除颤脉冲。 H桥输出电路的三条腿中的开关优选是可控硅整流器(SCR)。 栅极驱动电路耦合到SCR,以使SCR的偏置电压允许SCR在导通低电流时保持导通。 第四支腿中的开关优选地是串联耦合的一对绝缘栅双极晶体管(IGBT)。 栅极驱动电路耦合到IGBT的栅极,以提供IGBT的缓慢导通和快速关断。 栅极驱动电路还以足够的电压偏压IGBT,以允许IGBT经由输出电路承受外部除颤器的短路放电。 电路还包括具有电感和电阻特性的保护元件。 可以通过在H桥输出电路的同一侧上的两个支路上进行偏置来执行内部能量转储,从而不需要单独的能量转储电路。 还公开了测试H桥并验证其完整性的方法。
    • 78. 发明授权
    • External defibrillator with charge advisory algorithm
    • 外部除颤器带充电咨询算法
    • US08831719B2
    • 2014-09-09
    • US13032400
    • 2011-02-22
    • Joseph L. SullivanPatrick F. KellyRichard C. NovaJames W. Taylor
    • Joseph L. SullivanPatrick F. KellyRichard C. NovaJames W. Taylor
    • A61N1/39
    • A61N1/39A61N1/3931A61N1/3987A61N1/3993
    • An external defibrillator includes a therapy delivery circuit, a sensor, and a processor. The therapy delivery circuit is configured to be electrically charged and to deliver electrical therapy to a patient. The sensor is configured to sense a physiological condition of the patient and generate data indicative of a probability that therapy will be delivered to the patient. The processor is configured to analyze data generated by the sensor to determine whether there is a threshold level of the probability that the therapy delivery will be delivered to the patient, if the probability is at least at the threshold level, charge the therapy delivery circuit, and determine whether therapy delivery is advisable based on the physiological condition of the patient after determining whether the probability is at least at the threshold level.
    • 外部除颤器包括治疗输送电路,传感器和处理器。 治疗递送电路被配置为带电并且向患者递送电疗法。 该传感器被配置为感测患者的生理状态,并产生指示治疗将被递送给患者的概率的数据。 所述处理器被配置为分析由所述传感器产生的数据,以确定是否存在将所述治疗递送递送给所述患者的概率的阈值水平,如果所述概率至少为阈值水平,对所述治疗递送电路充电, 并且在确定概率是否至少在阈值水平之后,基于患者的生理状况确定治疗递送是否可取。