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    • 1. 发明授权
    • Defibrillator with a multiple-mode interface
    • 除颤器具有多模式接口
    • US06920354B2
    • 2005-07-19
    • US10725704
    • 2003-12-02
    • John C. DaynesCathlene D. BuchananDouglas J. HillRichard M. Lee
    • John C. DaynesCathlene D. BuchananDouglas J. HillRichard M. Lee
    • A61B5/0402A61N1/39
    • A61N1/39A61N1/3993
    • The present invention is directed to a defibrillator having both a manual and an AED mode with corresponding user commands for both modes. The defibrillator includes a door which conceals manual mode commands, such that opening of the door puts the defibrillator in the manual mode and simultaneously reveals the manual mode command buttons. In one actual embodiment, the door includes apertures which allow access to the AED command buttons. When the door is in the open position, a keypad is revealed having manual commands which preferably take the form of buttons. In another actual embodiment, the door includes a switch which senses when the door is opened and sends the defibrillator into manual mode. The door includes a front side having AED command buttons, and a back side having manual mode command buttons. The door conceals a keypad having further manual mode command buttons.
    • 本发明涉及具有手动和AED模式的除颤器,其具有用于两种模式的相应用户命令。 除颤器包括隐藏手动模式命令的门,使得门的打开使除颤器处于手动模式并同时显示手动模式命令按钮。 在一个实际实施例中,门包括允许访问AED命令按钮的孔。 当门处于打开位置时,显示出具有优选采取按钮形式的手动命令的键盘。 在另一个实际实施例中,门包括开关,该开关检测门何时打开并将去纤颤器发送到手动模式。 门包括具有AED命令按钮的前侧,以及具有手动模式命令按钮的后侧。 门隐藏了具有进一步手动模式命令按钮的小键盘。
    • 2. 发明授权
    • Defibrillator with a multiple-mode interface
    • 除颤器具有多模式接口
    • US06754526B2
    • 2004-06-22
    • US09945333
    • 2001-08-31
    • John C. DaynesCathlene D. BuchananDouglas J. HillRichard M. Lee
    • John C. DaynesCathlene D. BuchananDouglas J. HillRichard M. Lee
    • A61N139
    • A61N1/39A61N1/3993
    • The present invention is directed to a defibrillator having both a manual and an AED mode with corresponding user commands for both modes. The defibrillator includes a door which conceals manual mode commands, such that opening of the door puts the defibrillator in the manual mode and simultaneously reveals the manual mode command buttons. In one actual embodiment, the door includes apertures which allow access to the AED command buttons. When the door is in the open position, a keypad is revealed having manual commands which preferably take the form of buttons. In another actual embodiment, the door includes a switch which senses when the door is opened and sends the defibrillator into manual mode. The door includes a front side having AED command buttons, and a back side having manual mode command buttons. The door conceals a keypad having further manual mode command buttons.
    • 本发明涉及具有手动和AED模式的除颤器,其具有用于两种模式的相应用户命令。 除颤器包括隐藏手动模式命令的门,使得门的打开使除颤器处于手动模式并同时显示手动模式命令按钮。 在一个实际实施例中,门包括允许访问AED命令按钮的孔。 当门处于打开位置时,显示出具有优选采取按钮形式的手动命令的键盘。 在另一个实际实施例中,门包括开关,该开关检测门何时打开并将去纤颤器发送到手动模式。 门包括具有AED命令按钮的前侧,以及具有手动模式命令按钮的后侧。 门隐藏了具有进一步手动模式命令按钮的小键盘。
    • 5. 发明授权
    • Intelligent battery and well interface
    • 智能电池和接口良好
    • US6127063A
    • 2000-10-03
    • US13569
    • 1998-01-26
    • Leonard W. KowalskyRodney J. MerryJohn C. DaynesDouglas J. HillJudith F. Marquardt
    • Leonard W. KowalskyRodney J. MerryJohn C. DaynesDouglas J. HillJudith F. Marquardt
    • H01M2/10
    • H01M2/1066H01M10/4257H01M2/22A61N1/378
    • A battery (10) contains a base portion (12) that is shaped generally rectangular parallelpiped. The bottom face (18) of the base portion (12) contains a raised notch portion (22) at the first end (14) of the base portion directly beneath an upper ledge (20) that extends along the perimeter of the first end. The first end (14) contains two keyed recesses (24) that extend from an upper ledge (20) to the notch portion (22) of the bottom face (18). A blade connector (26) is located between the two keyed recesses (24) at the intersection of the notch portion (22) and the first end (14). The bottom face (18) contains two apertures (28) for receiving pin shaped positive and negative cell terminals. The second end (16) contains a resiliently attached latch member (30). A corresponding battery well (40) contains opposite first and second ends (44) and (46), a bottom floor (48), and a rim portion (50) that extends along the first end. The bottom floor (48) contains a raised step portion (52) located directly beneath the overhanging rim (50) at the first end. The first end (44) contains two protrusions (54) that span from the step portion (52) to the overhanging rim (50). A blade connector (56) is located on the step portion (52) between the two protrusions (54) at the first end (44). The bottom floor (48) contains two banana plug cell terminals (58), near the second end (46). Three retractable contact pins (60) are aligned between the two banana plug cell terminals (58) in the bottom floor (48). The second end (46) contains an overhanging flange (62) that is bisected by a central indentation (64).
    • 电池(10)包含基本部分(12),其基本上是矩形平行的。 基部(12)的底面(18)在基部的第一端(14)处包含直立在沿着第一端的周边延伸的上凸缘(20)下方的凸起切口部分(22)。 第一端(14)包含从上凸缘(20)延伸到底面(18)的切口部分(22)的两个键槽(24)。 刀片连接器(26)位于切口部分(22)和第一端(14)的交叉点处的两个键槽(24)之间。 底面(18)包含两个孔(28),用于接收引脚形的正极和负极端子。 第二端(16)包含弹性连接的闩锁构件(30)。 相应的电池槽(40)包含相对的第一和第二端(44)和(46),底板(48)和沿第一端延伸的边缘部分(50)。 底板(48)包括在第一端处直接位于悬垂边缘(50)下方的凸起台阶部分(52)。 第一端(44)包含从台阶部分(52)跨越悬伸边缘(50)的两个突起(54)。 叶片连接器(56)位于第一端(44)处的两个突起(54)之间的台阶部分(52)上。 底部(48)包含两个香蕉插头单元(58),靠近第二端(46)。 三个可伸缩接触销(60)在底板(48)中的两个香蕉插头单元端子(58)之间对准。 第二端(46)包含由中心凹口(64)平分的突出凸缘(62)。
    • 6. 发明授权
    • Configuring defibrillator energy dosing
    • 配置除颤器能量计量
    • US06813517B2
    • 2004-11-02
    • US10012635
    • 2001-11-06
    • John C. DaynesRichard M. Lee
    • John C. DaynesRichard M. Lee
    • A61N139
    • A61N1/39A61N1/3906
    • A defibrillator can be programmed with multiple energy protocols to be followed when the defibrillator administers therapy to a patient. Each energy protocol defines a sequence of energy dosages or levels to be applied during consecutive shocks. When the defibrillator is activated, the first energy dosage in the sequence is administered to the patient. If the first dosage is ineffective, the defibrillator administers subsequent dosages to the patient. Programming multiple energy protocols into the defibrillator allows the defibrillator to be adapted for use on a variety of patients with diverse needs, such as children and large adults, thereby improving the versatility of the defibrillator. Furthermore, because the expert responder can select the energy protocol most appropriate for the needs of the particular patient, therapy may be more effective.
    • 除颤器可以按照除颤器对患者进行治疗时要遵循的多种能量方案进行编程。 每个能量协议定义了在连续冲击期间应用的能量剂量或水平的顺序。 当除颤器被激活时,将序列中的第一能量剂量施用于患者。 如果第一剂量无效,则除颤器将后续剂量施用于患者。 将多种能量方案编程到除颤器中可使除颤器适用于各种需要的患者,如儿童和大型成年人,从而提高除颤器的通用性。 此外,由于专家应答者可以选择最适合于特定患者的需要的能量协议,治疗可能更有效。
    • 9. 发明申请
    • Defibrillator Battery Authentication System
    • 除颤器电池认证系统
    • US20090295326A1
    • 2009-12-03
    • 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 authentications 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方法,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。