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    • 1. 发明申请
    • MRI OPERATION MODES FOR IMPLANTABLE MEDICAL DEVICES
    • 可植入医疗器械的MRI手术模式
    • US20110270338A1
    • 2011-11-03
    • US13178571
    • 2011-07-08
    • Daniel J. CookeJeffrey A. Von Arx
    • Daniel J. CookeJeffrey A. Von Arx
    • A61N1/362A61N1/39A61N1/36
    • A61N1/3718A61N1/02A61N1/36092A61N1/3688A61N1/3931A61N1/3962Y10S128/901
    • One embodiment of the present invention relates to an implantable medical device (“IMD”) that can be programmed from one operational mode to another operational mode when in the presence of electro-magnetic interference (“EMI”). In accordance with this particular embodiment, the IMD includes a communication interface for receiving communication signals from an external device, such as a command to switch the IMD from a first operation mode to a second operation mode. The IMD further includes a processor in electrical communication with the communication interface, which is operable to switch or reprogram the IMD from the first operation mode to the second operation mode upon receiving a command to do so. In addition, the IMD includes a timer operable to measure a time period from when the processor switches the IMD to the second operation mode. In accordance with this aspect of the invention, the processor is in electrical communication with the timer, and is further operable to switch the IMD from the second operation mode back to the first operation mode when the measured time period reaches a predetermined time period.
    • 本发明的一个实施例涉及当存在电磁干扰(“EMI”)时可从一个操作模式编程到另一个操作模式的可植入医疗装置(“IMD”)。 根据该特定实施例,IMD包括用于从外部设备接收通信信号的通信接口,诸如将IMD从第一操作模式切换到第二操作模式的命令。 IMD还包括与通信接口电通信的处理器,其可操作以在接收到这样做的命令时将IMD从第一操作模式切换或重新编程到第二操作模式。 另外,IMD包括一个定时器,可操作以测量从处理器将IMD切换到第二操作模式的时间段。 根据本发明的这个方面,处理器与定时器电通信,并且当测量的时间段达到预定的时间周期时,进一步可操作地将IMD从第二操作模式切换回第一操作模式。
    • 2. 发明授权
    • MRI operation modes for implantable medical devices
    • 可植入医疗器械的MRI操作模式
    • US08543207B2
    • 2013-09-24
    • US13178571
    • 2011-07-08
    • Daniel J. CookeJeffrey A. Von Arx
    • Daniel J. CookeJeffrey A. Von Arx
    • A61N1/37
    • A61N1/3718A61N1/02A61N1/36092A61N1/3688A61N1/3931A61N1/3962Y10S128/901
    • One embodiment of the present invention relates to an implantable medical device (“IMD”) that can be programmed from one operational mode to another operational mode when in the presence of electro-magnetic interference (“EMI”). In accordance with this particular embodiment, the IMD includes a communication interface for receiving communication signals from an external device, such as a command to switch the IMD from a first operation mode to a second operation mode. The IMD further includes a processor in electrical communication with the communication interface, which is operable to switch or reprogram the IMD from the first operation mode to the second operation mode upon receiving a command to do so. In addition, the IMD includes a timer operable to measure a time period from when the processor switches the IMD to the second operation mode. In accordance with this aspect of the invention, the processor is in electrical communication with the timer, and is further operable to switch the IMD from the second operation mode back to the first operation mode when the measured time period reaches a predetermined time period.
    • 本发明的一个实施例涉及当存在电磁干扰(“EMI”)时可从一个操作模式编程到另一个操作模式的可植入医疗装置(“IMD”)。 根据该特定实施例,IMD包括用于从外部设备接收通信信号的通信接口,诸如将IMD从第一操作模式切换到第二操作模式的命令。 IMD还包括与通信接口电通信的处理器,其可操作以在接收到这样做的命令时将IMD从第一操作模式切换或重新编程到第二操作模式。 另外,IMD包括一个定时器,可操作以测量从处理器将IMD切换到第二操作模式的时间段。 根据本发明的这个方面,处理器与定时器电通信,并且当测量的时间段达到预定的时间周期时,进一步可操作地将IMD从第二操作模式切换回第一操作模式。
    • 3. 发明申请
    • MRI OPERATION MODES FOR IMPLANTABLE MEDICAL DEVICES
    • 可植入医疗器械的MRI手术模式
    • US20090138058A1
    • 2009-05-28
    • US11015807
    • 2004-12-17
    • Daniel J. CookeJeffrey A. Von Arx
    • Daniel J. CookeJeffrey A. Von Arx
    • A61N1/08A61N1/362A61N1/39
    • A61N1/3718A61N1/02A61N1/36092A61N1/3688A61N1/3931A61N1/3962Y10S128/901
    • One embodiment of the present invention relates to an implantable medical device (“IMD”) that can be programmed from one operational mode to another operational mode when in the presence of electro-magnetic interference (“EMI”). In accordance with this particular embodiment, the IMD includes a communication interface for receiving communication signals from an external device, such as a command to switch the IMD from a first operation mode to a second operation mode. The IMD further includes a processor in electrical communication with the communication interface, which is operable to switch or reprogram the IMD from the first operation mode to the second operation mode upon receiving a command to do so. In addition, the IMD includes a timer operable to measure a time period from when the processor switches the IMD to the second operation mode. In accordance with this aspect of the invention, the processor is in electrical communication with the timer, and is further operable to switch the IMD from the second operation mode back to the first operation mode when the measured time period reaches a predetermined time period.
    • 本发明的一个实施例涉及当存在电磁干扰(“EMI”)时可从一个操作模式编程到另一个操作模式的可植入医疗装置(“IMD”)。 根据该特定实施例,IMD包括用于从外部设备接收通信信号的通信接口,诸如将IMD从第一操作模式切换到第二操作模式的命令。 IMD还包括与通信接口电通信的处理器,其可操作以在接收到这样做的命令时将IMD从第一操作模式切换或重新编程到第二操作模式。 另外,IMD包括一个定时器,可操作以测量从处理器将IMD切换到第二操作模式的时间段。 根据本发明的这个方面,处理器与定时器电通信,并且当测量的时间段达到预定的时间周期时,进一步可操作地将IMD从第二操作模式切换回第一操作模式。
    • 4. 发明授权
    • MRI operation modes for implantable medical devices
    • 可植入医疗器械的MRI操作模式
    • US08014867B2
    • 2011-09-06
    • US11015807
    • 2004-12-17
    • Daniel J. CookeJeffrey A. Von Arx
    • Daniel J. CookeJeffrey A. Von Arx
    • A61N1/37
    • A61N1/3718A61N1/02A61N1/36092A61N1/3688A61N1/3931A61N1/3962Y10S128/901
    • One embodiment of the present invention relates to an implantable medical device (“IMD”) that can be programmed from one operational mode to another operational mode when in the presence of electro-magnetic interference (“EMI”). In accordance with this particular embodiment, the IMD includes a communication interface for receiving communication signals from an external device, such as a command to switch the IMD from a first operation mode to a second operation mode. The IMD further includes a processor in electrical communication with the communication interface, which is operable to switch or reprogram the IMD from the first operation mode to the second operation mode upon receiving a command to do so. In addition, the IMD includes a timer operable to measure a time period from when the processor switches the IMD to the second operation mode. In accordance with this aspect of the invention, the processor is in electrical communication with the timer, and is further operable to switch the IMD from the second operation mode back to the first operation mode when the measured time period reaches a predetermined time period.
    • 本发明的一个实施例涉及当存在电磁干扰(“EMI”)时可从一个操作模式编程到另一个操作模式的可植入医疗装置(“IMD”)。 根据该特定实施例,IMD包括用于从外部设备接收通信信号的通信接口,诸如将IMD从第一操作模式切换到第二操作模式的命令。 IMD还包括与通信接口电通信的处理器,其可操作以在接收到这样做的命令时将IMD从第一操作模式切换或重新编程到第二操作模式。 另外,IMD包括一个定时器,可操作以测量从处理器将IMD切换到第二操作模式的时间段。 根据本发明的这个方面,处理器与定时器电通信,并且当测量的时间段达到预定的时间周期时,进一步可操作地将IMD从第二操作模式切换回第一操作模式。
    • 7. 发明申请
    • Optical Window Assembly for Implantable Medical Device
    • 用于植入式医疗设备的光学窗组件
    • US20090221885A1
    • 2009-09-03
    • US12391761
    • 2009-02-24
    • Peter HallDaniel J. CookeMichael John Kane
    • Peter HallDaniel J. CookeMichael John Kane
    • A61B5/1473B23K31/02
    • A61B5/14542A61B5/1473
    • Embodiments of the invention are related to optical window assemblies for implantable medical devices, amongst other things. In an embodiment, the invention includes an optical window assembly for a medical device. The assembly can include a ferrule defining an aperture and a spacer ring disposed within the aperture. The assembly can also include an optical window coupled to the metal ferrule and the spacer ring. In an embodiment, the invention includes an implantable medical device including a housing and an optical window assembly coupled to the housing. In an embodiment, the invention can include a method of manufacturing a medical device. The method can include brazing a spacer ring to a metal ferrule, coupling an optical window to the spacer ring and the metal ferrule with a bonding glass material, depositing a chemical sensing element over the optical window, and coupling a porous cover layer to the spacer ring and the ferrule with an adhesive. Other embodiments are also included herein.
    • 本发明的实施例涉及用于可植入医疗装置的光学窗组件,其中包括。 在一个实施例中,本发明包括用于医疗装置的光学窗组件。 组件可以包括限定孔的套圈和设置在孔内的间隔环。 组件还可以包括耦合到金属套圈和间隔环的光学窗口。 在一个实施例中,本发明包括可植入医疗装置,其包括壳体和耦合到壳体的光学窗组件。 在一个实施例中,本发明可以包括制造医疗装置的方法。 该方法可以包括将间隔环钎焊到金属套箍上,用光学玻璃材料将光学窗口耦合到间隔环和金属套圈,在光学窗口上沉积化学感测元件,以及将多孔覆盖层耦合到间隔物 环和带有粘合剂的套圈。 本文还包括其它实施例。
    • 10. 发明申请
    • LEAD INCLUDING A HEAT FUSED OR FORMED LEAD BODY
    • 引导包括热熔或形成的铅体
    • US20080046059A1
    • 2008-02-21
    • US11462479
    • 2006-08-04
    • Paul E. ZaremboMohan KrishnanDavid DurandDonna OsterkampDaniel J. Cooke
    • Paul E. ZaremboMohan KrishnanDavid DurandDonna OsterkampDaniel J. Cooke
    • A61N1/00
    • A61N1/056A61N1/057
    • An implantable lead comprises a lead body extending from a lead proximal end portion to a lead distal end portion. In one example, the lead body may comprise a heat-formed bias portion. In another example, an outer insulator is fused to the lead body. In such an example, a lead body fusable plug may be disposed distal to at least one conductor. In another example, the lead comprises an inner boot and an outer boot fused to one another. In another example, the lead includes an atraumatic tip fused to the lead distal end portion. In another example, the lead body is reducable in size using heat shrink tubing. In yet another example, two or more lead sections may be interconnected using an outer insulator fused to the respective lead bodies. In a further example, a stiffener member is fused to the lead body adjacent a lead component.
    • 可植入引线包括从引线近端部分延伸到引线远端部分的引线体。 在一个示例中,引线体可以包括加热成形的偏压部分。 在另一示例中,外绝缘体熔合到引线体。 在这种示例中,引线本体可熔插塞可以设置在至少一个导体的远侧。 在另一个示例中,引线包括彼此融合的内靴和外靴。 在另一示例中,引线包括熔合到引线远端部分的无创尖端。 在另一个例子中,使用热缩管可以使引线体尺寸减小。 在又一示例中,两个或更多个引线部分可以使用融合到相应引线体的外绝缘体互连。 在另一个例子中,加强件与引线部件相邻地被引导体熔合。