发明名称 Intelligent nanomagnetic cardiac assist device for a failing heart
摘要 The present invention is directed to a contractible and expandable jacket configured to encase at least a portion of a patient's heart. The jacket has a plurality of individual contractile cells with each of the cells having a first electrically conductive coil and a second electrically conductive coil spaced from the first coil. The first coil preferably defines at least in part a first periphery of an inner nucleus of the cell and the second coil preferably defining at least in part an outer portion of the cell spaced outwardly from the inner nucleus. When electrical current passes through the first and second coils in opposite directions, the cell contracts and when electrical current passes through the first and second coils in the same direction the cell expands. Each of the individual cells has conductive appendages for conducting information to and from the individual cells.
申请公布号 US9192703(B2) 申请公布日期 2015.11.24
申请号 US201514662199 申请日期 2015.03.18
申请人 发明人 Mirhoseini Mahmood;Mirhoseini Mary Cayton;Manasheri Aria
分类号 A61N1/362;A61M1/10;A61M1/12;A61F2/24 主分类号 A61N1/362
代理机构 Patent 360 代理人 Choobin Barry;Patent 360
主权项 1. A cardiac jacket for augmenting expansion and contraction of a heart, comprising a polymeric layer configured to fit about a portion of the heart and a plurality of hexagonal shaped contractile cells incorporated within or secured to the polymeric layer, each of the contractile cells having a. a nucleus comprising a periphery defined at least in part by a first electrically conductive coil b. an inner core comprising a periphery defined by a second electrically conductive coil spaced outwardly from the first electrically conductive coil and c. an outer core comprising a periphery defined at least in part by a third electrically conductive coil wherein the contractile cells are configured to pass electrical current through the first electrically conductive coil in a first current direction to generate a first magnetic field in a first magnetic direction and to pass electrical current through the second electrically conductive coil in the same first current direction as the first electrically conductive coil to generate a second magnetic field in the same magnetic direction as the first magnetic field and to pass electrical current through the second electrically conductive coil in a second current direction opposite to the first current direction to generate a second magnetic field in a second magnetic direction opposite to the first magnetic direction.
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