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    • 1. 发明申请
    • RESONANCE CIRCUIT FOR IMPLANTABLE DEVICES AND LEADS
    • 用于可移植设备和引线的谐振电路
    • WO2007118194A3
    • 2008-08-07
    • PCT/US2007066143
    • 2007-04-06
    • BIOPHAN TECHNOLOGIES INCGRAY ROBERT WMACDONALD STUART G
    • GRAY ROBERT WMACDONALD STUART G
    • A61N1/00
    • A61N1/36125A61N1/056A61N1/086
    • An implantable medical assist device includes a housing and electronics contained therein. A lead provides an electrical path to or from the electronics. A resonance tuning module is located in the housing and is connected to the lead. The resonance tuning module includes a control circuit for determining a resonant frequency of the implantable medical assist device and an adjustable impedance circuit to change the combined resonant frequency of the medical device and lead. Also, a stent structure includes a stent formed of a plurality of rings to form a lumen and a plurality of struts. The stent structure also includes a conductive trace and a dielectric material. The first end of the conductive trace overlaps the second end of the conductive trace such that the dielectric material is located between the first end of the conductive trace and the second end of the conductive trace to form a capacitor.
    • 可植入医疗辅助装置包括其中包含的壳体和电子装置。 引线提供到电子设备的电路。 谐振调谐模块位于壳体中并连接到引线。 谐振调谐模块包括用于确定可植入医疗辅助装置的谐振频率的控制电路和用于改变医疗装置和引线的组合谐振频率的可调阻抗电路。 此外,支架结构包括由多个环形成的支架,以形成内腔和多个支柱。 支架结构还包括导电迹线和电介质材料。 导电迹线的第一端与导电迹线的第二端重叠,使得介电材料位于导电迹线的第一端和导电迹线的第二端之间以形成电容器。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR MINIMALLY INVASIVE DIRECT MECHANICAL VENTRICULAR ACTUATION
    • 最小直接机械通气动作的方法与装置
    • WO2007062239A2
    • 2007-05-31
    • PCT/US2006/045492
    • 2006-11-28
    • MYOTECH LLCMACDONALD, Stuart G.PEREZ-TAMAYO, Ruheri A.ANSTADT, George W.
    • MACDONALD, Stuart G.PEREZ-TAMAYO, Ruheri A.ANSTADT, George W.
    • A61F2/02
    • A61M1/122A61F2/2481A61F2002/2484A61F2250/0003A61M1/1008A61M1/1058A61M1/106A61M1/1068A61M1/12A61M2205/0283
    • A device for assisting the function of a heart can be deployed using minimally invasive procedures. The device is collapsible to facilitate insertion into the chest cavity and deployment on the heart, e.g., via a specially configured tube. In one embodiment, the device includes a cup-shaped shell having a wall with an outer surface and an inner surface, the wall extending from a hole at an apex of the shell to a rim; a cup-shaped support cage disposed within the cup-shaped shell, the support cage comprising a base comprising a port and a plurality of flexible radial struts comprising proximal ends extending from the base contiguously along the inner surface of the shell to distal ends that are proximate to the rim of the shell; a liner comprising an outer surface, an inner surface, an upper region joined to the rim of the cup-shaped shell, a tapered seal, an elastic central region, and a lower region joined to the cup-shaped shell proximate to the base of the support cage, thereby forming an inflatable cavity between the outer surface of the liner and the inner surface of the shell; a first fitting connected to the apex of the cup-shaped shell and connectable to a first lumen; and; and a second fitting in communication with the inflatable cavity between the outer surface of the liner and the inner surface of the shell and connectable to a second lumen.
    • 可以使用微创程序部署用于辅助心脏功能的装置。 该装置可折叠以便于插入胸腔并且例如通过特别配置的管部署在心脏上。 在一个实施例中,该装置包括具有外壁和内表面的壁的杯形壳,该壁从壳的顶点处的孔延伸到边缘; 设置在杯形壳体内的杯状支撑保持架,支撑架包括底座,该基座包括端口和多个柔性径向支柱,该基座包括从底座沿着壳体的内表面连续延伸到远端的近端, 靠近壳的边缘; 衬套,其包括外表面,内表面,连接到杯形壳的边缘的上部区域,锥形密封件,弹性中心区域和连接到杯形壳体的下部区域,靠近基座 从而在衬套的外表面和壳的内表面之间形成可膨胀的空腔; 连接到杯形壳体的顶点并可连接到第一管腔的第一配件; 和; 以及第二配件,其与所述衬套的外表面和所述壳体的内表面之间的所述可充气腔连通,并且可连接到第二内腔。