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    • 31. 发明申请
    • BLENDED COILED CABLE
    • 混合线圈
    • US20100012347A1
    • 2010-01-21
    • US12502276
    • 2009-07-14
    • Paula KaplanAllison KidderJeffrey ZweberScott BrainardJohn Elhard
    • Paula KaplanAllison KidderJeffrey ZweberScott BrainardJohn Elhard
    • H01B7/17H01B5/00H01B7/00H01R43/00
    • H01B7/065A61N1/056Y10T29/49117
    • A cabled lead comprising a first conductor cable having outer strands and a core strand is described. Each of the outer strands and core strand has outer wires that surround a core wire. The outer wires are made of a first material. The core wires have a tube, which may be in the form of a layer, and a core, and the core is disposed in the tube. The tube is made of the first material and the core is made of a second material. The first conductor cable is positioned in a first conductor sheath. The cabled lead has a second conductor cable which may be substantially structurally identical to the first conductor cable and is positioned in a second conductor sheath. The first and second conductor cables are helically coiled to form the cabled lead. In other embodiments, there may be one or more than two conductor cables.
    • 描述了包括具有外股线和芯线的第一导体电缆的电缆引线。 外股线和芯股线中的每一根都具有包围芯线的外线。 外线由第一材料制成。 芯线具有可以是层的形式的管和芯,并且芯设置在管中。 管由第一材料制成,并且芯由第二材料制成。 第一导体电缆定位在第一导体护套中。 电缆引线具有第二导体电缆,其可以与第一导体电缆基本上在结构上相同,并且位于第二导体护套中。 第一和第二导体电缆被螺旋卷绕以形成电缆引线。 在其他实施例中,可以有一根或多于两根的导体电缆。
    • 32. 发明申请
    • Fiber Optic Assisted Medical Lead
    • 光纤辅助医疗铅
    • US20110071358A1
    • 2011-03-24
    • US12955417
    • 2010-11-29
    • John M. SwoyerAllison M. KidderJeffrey ZweberScott BrainardValerie Glazier
    • John M. SwoyerAllison M. KidderJeffrey ZweberScott BrainardValerie Glazier
    • A61B19/00A61B1/07
    • A61B5/0084A61B1/00165A61B5/04A61N1/0509A61N1/0551A61N1/0558A61N1/0573A61N1/0587
    • A medical device for placing a medical lead in the human body using minimally invasive techniques is described. One lead includes a lead body connected to a lead head having an aperture for providing fiber optic access to the interior of a helical electrode. The fiber optic shaft may be disposed within or along-side a drive shaft releasably coupled to the head to rotate the head. The drive shaft and lead body may be delivered using a delivery catheter. The delivery catheter can be advanced though a small incision to the target tissue site, and the site remotely visualized through the fiber optic scope extending through the lead head aperture. Some catheters include a distal mapping electrode readable from the catheter proximal portion or handle. The lead head can be rotated, rotating the helical electrode into the tissue, and the catheter, drive shaft, and fiber optic probe removed. In one use, epicardial pacing leads are placed on the posterior surface of the heart, aided by visualization and mapping to obtain optimal electrode placement and patient outcome.
    • 描述了使用微创技术将医用铅放置在人体内的医疗装置。 一个引线包括连接到具有用于提供到螺旋电极的内部的光纤访问的孔的引导头的引线体。 光纤轴可以设置在可释放地联接到头部的驱动轴内或侧面,以旋转头部。 驱动轴和引线体可以使用输送导管输送。 输送导管可以通过小切口前进到目标组织部位,并且通过穿过引导头孔的光纤镜片远程可视化部位。 一些导管包括可从导管近端部分或手柄读取的远端映射电极。 引导头可以旋转,将螺旋电极旋转到组织中,导管,驱动轴和光纤探针被移除。 在一次使用中,通过可视化和映射辅助,将心外膜起搏引线放置在心脏的后表面上,以获得最佳电极放置和患者结果。
    • 33. 发明授权
    • Fiber optic assisted medical lead
    • 光纤辅助医疗铅
    • US07844348B2
    • 2010-11-30
    • US11463286
    • 2006-08-08
    • John M. SwoyerAllison M. KidderJeffrey SweberScott BrainardValerie Glazier
    • John M. SwoyerAllison M. KidderJeffrey SweberScott BrainardValerie Glazier
    • A61N1/05
    • A61B5/0084A61B1/00165A61B5/04A61N1/0509A61N1/0551A61N1/0558A61N1/0573A61N1/0587
    • Devices and methods for placing medical leads using minimally invasive techniques. One lead includes a lead body connected to a lead head having an aperture for providing fiber optic access to the interior of a helical electrode. The fiber optic shaft may be disposed within or along-side a drive shaft releasably coupled to the head to rotate the head. The drive shaft and lead body may be delivered using a delivery catheter. The delivery catheter can be advanced though a small incision to the target tissue site, and the site remotely visualized through the fiber optic scope extending through the lead head aperture. Some catheters include a distal mapping electrode readable from the catheter proximal portion or handle. The lead head can be rotated, rotating the helical electrode into the tissue, and the catheter, drive shaft, and fiber optic probe removed. In one use, epicardial pacing leads are placed on the posterior surface of the heart, aided by visualization and mapping to obtain optimal electrode placement and patient outcome.
    • 使用微创技术放置医疗线的设备和方法。 一个引线包括连接到具有用于提供到螺旋电极的内部的光纤访问的孔的引导头的引线体。 光纤轴可以设置在可释放地联接到头部的驱动轴内或侧面,以旋转头部。 驱动轴和引线体可以使用输送导管输送。 输送导管可以通过小切口前进到目标组织部位,并且通过穿过引导头孔的光纤镜片远程可视化部位。 一些导管包括可从导管近端部分或手柄读取的远端映射电极。 引导头可以旋转,将螺旋电极旋转到组织中,导管,驱动轴和光纤探针被移除。 在一次使用中,通过可视化和映射辅助,将心外膜起搏引线放置在心脏的后表面上,以获得最佳电极放置和患者结果。
    • 34. 发明申请
    • FIBER OPTIC ASSISTED MEDICAL LEAD
    • 光纤辅助医疗铅
    • US20070038052A1
    • 2007-02-15
    • US11463286
    • 2006-08-08
    • John SwoyerAllison KidderJeffrey ZweberScott BrainardValerie Glazier
    • John SwoyerAllison KidderJeffrey ZweberScott BrainardValerie Glazier
    • A61B5/05
    • A61B5/0084A61B1/00165A61B5/04A61N1/0509A61N1/0551A61N1/0558A61N1/0573A61N1/0587
    • Devices and methods for placing medical leads using minimally invasive techniques. One lead includes a lead body connected to a lead head having an aperture for providing fiber optic access to the interior of a helical electrode. The fiber optic shaft may be disposed within or along-side a drive shaft releasably coupled to the head to rotate the head. The drive shaft and lead body may be delivered using a delivery catheter. The delivery catheter can be advanced though a small incision to the target tissue site, and the site remotely visualized through the fiber optic scope extending through the lead head aperture. Some catheters include a distal mapping electrode readable from the catheter proximal portion or handle. The lead head can be rotated, rotating the helical electrode into the tissue, and the catheter, drive shaft, and fiber optic probe removed. In one use, epicardial pacing leads are placed on the posterior surface of the heart, aided by visualization and mapping to obtain optimal electrode placement and patient outcome.
    • 使用微创技术放置医疗线的设备和方法。 一个引线包括连接到具有用于提供到螺旋电极的内部的光纤访问的孔的引导头的引线体。 光纤轴可以设置在可释放地联接到头部的驱动轴内或侧面,以旋转头部。 驱动轴和引线体可以使用输送导管输送。 输送导管可以通过小切口前进到目标组织部位,并且通过穿过引导头孔的光纤镜片远程可视化部位。 一些导管包括可从导管近端部分或手柄读取的远端映射电极。 引导头可以旋转,将螺旋电极旋转到组织中,导管,驱动轴和光纤探针被移除。 在一次使用中,通过可视化和映射辅助,将心外膜起搏引线放置在心脏的后表面上,以获得最佳电极放置和患者结果。