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    • 6. 发明公开
    • SYSTEM AND METHOD FOR EXTRACORPOREAL TEMPERATURE CONTROL
    • 用于体外温度控制的系统和方法
    • EP3188771A2
    • 2017-07-12
    • EP15832049.9
    • 2015-08-05
    • Medivance Incorporated
    • VOORHEES, Marc E.PARK, ChristopherPRIVITERA, Salvatore
    • A61M1/36A61B18/02A61F7/00
    • A61M1/369A61F7/0085A61F7/12A61F2007/0056A61F2007/0086A61F2007/0096A61F2007/126A61M1/10A61M5/007A61M5/14A61M19/00A61M25/0026A61M2205/3355A61M2205/3368
    • Improved systems and methods for extracorporeal blood temperature control and patient temperature control, e.g., for induced hypothermia and optional normothermia, may include or otherwise employ a heat exchanger for cooling/warming of a fluid, a thermal exchange module having fluidly isolated first and second volumes, and a fluid pump for circulating the fluid through the heat exchanger and the first volume of the thermal exchange module. A blood pump may be provided for the flow of blood through the second volume of the thermal exchange module, and a first controller may be provided for providing output signals for use in operation of the heat exchanger to selectively control thermal exchange between the fluid circulated through the first volume of the thermal exchange module and the blood flowed through the second volume of the thermal exchange module, thereby providing for selective cooling/warming of the blood. A multi lumen catheter may be utilized for the flow of blood from a patient vascular system to the second volume of the thermal exchange module, and for flow of blood from the second volume of the thermal exchange module back to the patient vascular system. The circulated fluid may be optionally circulated through a patient contact pad(s) for contact cooling/warming, wherein patient cooling/warming may be provided in a first mode via blood cooling/warming in the thermal exchange module, and patient cooling/warming may be provided in a second mode via thermal exchange by the contact pad(s).
    • 用于体外血液温度控制和患者温度控制的改进的系统和方法,例如用于诱导的体温过低和任选的体温过低的系统和方法可以包括或另外采用用于流体冷却/加热的热交换器,具有流体隔离的第一和第二体积 以及用于使流体循环通过热交换器和热交换模块的第一容积的流体泵。 血液泵可以被提供用于血液流动通过热交换模块的第二容积,并且可以提供第一控制器用于提供用于热交换器的操作的输出信号,以选择性地控制通过循环的流体 第一体积的热交换模块和血液流过第二体积的热交换模块,由此提供血液的选择性冷却/加热。 多腔导管可用于从患者血管系统到第二体积的热交换模块的血液流动,以及用于从第二体积的热交换模块返回到患者血管系统的血液流动。 循环流体可以任选地循环通过患者接触垫以接触冷却/加热,其中患者冷却/加热可以通过热交换模块中的血液冷却/加热以第一模式提供,并且患者冷却/加热可以 通过接触垫的热交换以第二模式提供。
    • 7. 发明授权
    • IMPLANTABLE WIRELESS POWER SYSTEM
    • 可植入的无线电力系统
    • EP2648803B1
    • 2017-04-26
    • EP11847692.8
    • 2011-09-23
    • Everheart Systems, Inc.
    • ARMSTRONG, Randolph, K.ABER, Greg, S.
    • A61M1/10A61M1/12H02J5/00H02J7/02
    • A61M1/1086A61M1/10A61M1/101A61M1/12A61M1/122A61M1/127A61M2205/8243H01F38/14H02J5/005H02J7/025H02J50/12
    • The present invention refers to an apparatus for use in wireless energy transfer to power an electronic device. The apparatus comprises a transmitting assembly configured to transmit electromagnetic energy, whereby the transmitting assembly comprises a transmitting resonant coil providing a first conductor and a first electrical insulating medium between coil turns of said first conductor. The apparatus further comprises a receiving assembly magnetic resonance coupled to the transmitting assembly, whereby the receiving assembly comprises a receiving resonant coil providing a second conductor and a second electrical insulating medium between coil turns of said second conductor. A first capacitor is electrically connected to the first conductor and a second capacitor is electrically connected to the second conductor. The first and/or second insulating medium comprises one or more dielectric materials that is solid with a polygonal cross section. Further the first and/or second insulating medium provides a dielectric dissipation factor of 0.01 or less. The first and/or second conductor has a thickness T of less than 0.0508 cm [0.020 inches] and a width W of 1.27 cm [0.5 inches] or less, wherein the transmitting and/or receiving resonant coil has a diameter of 7.62 cm [3 inches] or less.
    • 无线电力系统能够通过皮肤传输电力,而不需要经皮电线,距离范围从几英寸到几英尺,包括外部发射线圈组件和接收线圈组件。 发送线圈组件包括彼此电感耦合的激励线圈和发送谐振线圈。 接收线圈组件包括也相互感应耦合的接收谐振线圈和功率拾取线圈。 诸如射频(RF)之类的高频AC功率输入以感应方式提供给励磁线圈,导致发射谐振线圈谐振,导致局部时变磁场。 发射和接收谐振线圈被构造为具有紧密匹配或相同的谐振频率,使得由发射谐振线圈产生的磁场也能够使接收谐振线圈也强烈地谐振,即使当两个谐振线圈 大大超过任一线圈的最大尺寸。 接收谐振线圈然后产生其自身的局部时变磁场,其在感应拾取线圈中感应产生电压以向有源可植入医疗装置或可植入可再充电电池提供电力。