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    • 1. 发明授权
    • Implantable sensor with biocompatible coating for controlling or inhibiting tissue growth
    • 具有生物相容性涂层的植入式传感器,用于控制或抑制组织生长
    • US08696564B2
    • 2014-04-15
    • US10888340
    • 2004-07-09
    • Abhi ChavanJeffrey RossCynthia MorrisseyScott MazarDonald Palme
    • Abhi ChavanJeffrey RossCynthia MorrisseyScott MazarDonald Palme
    • A61B5/04
    • B82Y30/00A61B5/00A61B5/0031B82Y15/00
    • All or a portion of a surface of an implantable sensor is covered with a biocompatible coating formed at least partially of a biomaterial matrix having properties that promote a substantially even growth of tissue cells over the surface of the coating. Additional materials, such as growth factors, agents that recruit endogenous stem cells, and cell adhesion motif arginine, glycine, aspartic acid may be included in the coating. Autologous cells may be added to the coating prior to implantation. The sensor surface may also be textured, by etching or abrading, in order to promote even tissue growth. Alternatively, the sensor surface may be covered with a coating having properties that inhibit the growth of tissue. These coatings may include a biomaterial, a biomaterial matrix having a drug, such as a sirolimus or a steroid, an active component, or a self assembled monolayer.
    • 可植入传感器的表面的全部或一部分被至少部分地由具有促进组织细胞在涂层表面上的基本均匀生长的特性的生物材料基质形成的生物相容性涂层覆盖。 另外的材料,例如生长因子,招募内源性干细胞的药剂,细胞粘附基序精氨酸,甘氨酸,天冬氨酸可以包括在涂层中。 自体细胞可以在植入之前加入到涂层中。 为了促进均匀的组织生长,传感器表面也可以通过蚀刻或研磨进行纹理化。 或者,传感器表面可以被具有抑制组织生长的性质的涂层覆盖。 这些涂层可以包括生物材料,具有药物的生物材料基质,例如西罗莫司或类固醇,活性成分或自组装单层。
    • 2. 发明申请
    • Implantable sensor with biocompatible coating for controlling or inhibiting tissue growth
    • 具有生物相容性涂层的植入式传感器,用于控制或抑制组织生长
    • US20060008500A1
    • 2006-01-12
    • US10888340
    • 2004-07-09
    • Abhi ChavanJeffrey RossCynthia MorrisseyScott MazarDonald Palme
    • Abhi ChavanJeffrey RossCynthia MorrisseyScott MazarDonald Palme
    • A61N1/00A61F2/00
    • B82Y30/00A61B5/00A61B5/0031B82Y15/00
    • All or a portion of a surface of an implantable sensor is covered with a biocompatible coating formed at least partially of a biomaterial matrix having properties that promote a substantially even growth of tissue cells over the surface of the coating. Additional materials, such as growth factors, agents that recruit endogenous stem cells, and cell adhesion motif arginine, glycine, aspartic acid may be included in the coating. Autologous cells may be added to the coating prior to implantation. The sensor surface may also be textured, by etching or abrading, in order to promote even tissue growth. Alternatively, the sensor surface may be covered with a coating having properties that inhibit the growth of tissue. These coatings may include a biomaterial, a biomaterial matrix having a drug, such as a sirolimus or a steroid, an active component, or a self assembled monolayer.
    • 可植入传感器的表面的全部或一部分被至少部分地由具有促进组织细胞在涂层表面上的基本均匀生长的特性的生物材料基质形成的生物相容性涂层覆盖。 另外的材料,例如生长因子,招募内源性干细胞的药剂,细胞粘附基序精氨酸,甘氨酸,天冬氨酸可以包括在涂层中。 自体细胞可以在植入之前加入到涂层中。 为了促进均匀的组织生长,传感器表面也可以通过蚀刻或研磨进行纹理化。 或者,传感器表面可以被具有抑制组织生长的性质的涂层覆盖。 这些涂层可以包括生物材料,具有药物的生物材料基质,例如西罗莫司或类固醇,活性成分或自组装单层。
    • 5. 发明申请
    • Septum attached ventricular support
    • 隔垫附着心室支持
    • US20100317918A1
    • 2010-12-16
    • US12806646
    • 2010-08-18
    • J. Edward ShaplandClif AlfernessDonald PalmeMichael GirardDonald Rohrbaugh
    • J. Edward ShaplandClif AlfernessDonald PalmeMichael GirardDonald Rohrbaugh
    • A61F2/04
    • A61F2/2481
    • A method and device are disclosed for treating congestive heart disease. The material of the device is secured to the heart proximate the septal wall. The material covering the ventricles may or may not have the same tension and or compliance. The device can be constructed as a unitary “jacket” that is slipped over the apex of the heart. Alternately, the device implanted as one, two or more separate components. In one embodiment, the material covers both the left and right ventricles. In another embodiment, the material covers only one ventricle. The device may include at least one adjustment mechanism configured to adjust the tension of the material. Preferably, the device includes a first adjustment mechanism configured to adjust a tension of the material covering the right ventricle and a second adjustment mechanism configured to adjust the tension of the material covering the left ventricle such that the tension of the material covering the left ventricle can be different than the tension of the material covering the right ventricle.
    • 公开了治疗充血性心脏病的方法和装置。 该装置的材料固定在靠近隔壁的心脏上。 覆盖心室的材料可能具有或不具有相同的张力和/或顺应性。 该装置可以被构造成整体的“夹克”,其被滑过心脏的顶点。 或者,该装置作为一个,两个或更多个分离的部件植入。 在一个实施例中,材料覆盖左心室和右心室。 在另一个实施例中,材料仅覆盖一个心室。 该装置可以包括被配置为调节材料张力的至少一个调节机构。 优选地,该装置包括被配置为调节覆盖右心室的材料的张力的第一调节机构和被配置为调节覆盖左心室的材料的张力的第二调节机构,使得覆盖左心室的材料的张力可以 与覆盖右心室的材料的张力不同。
    • 7. 发明申请
    • SEPTUM ATTACHED VENTRICULAR SUPPORT
    • SEPTUM附着的心脏支持
    • US20070208211A1
    • 2007-09-06
    • US11745260
    • 2007-05-07
    • James ShaplandClifton AlfernessDonald PalmeMichael GirardDonald Rohrbaugh
    • James ShaplandClifton AlfernessDonald PalmeMichael GirardDonald Rohrbaugh
    • A61B17/00
    • A61F2/2481
    • A method and device are disclosed for treating congestive heart disease. The material of the device is secured to the heart proximate the septal wall. The material covering the ventricles may or may not have the same tension and or compliance. The device can be constructed as a unitary “jacket” that is slipped over the apex of the heart. Alternately, the device implanted as one, two or more separate components. In one embodiment, the material covers both the left and right ventricles. In another embodiment, the material covers only one ventricle. The device may include at least one adjustment mechanism configured to adjust the tension of the material. Preferably, the device includes a first adjustment mechanism configured to adjust a tension of the material covering the right ventricle and a second adjustment mechanism configured to adjust the tension of the material covering the left ventricle such that the tension of the material covering the left ventricle can be different than the tension of the material covering the right ventricle.
    • 公开了治疗充血性心脏病的方法和装置。 该装置的材料固定在靠近隔壁的心脏上。 覆盖心室的材料可能具有或不具有相同的张力和/或顺应性。 该装置可以被构造成整体的“夹克”,其被滑过心脏的顶点。 或者,该装置作为一个,两个或更多个分离的部件植入。 在一个实施例中,材料覆盖左心室和右心室。 在另一个实施例中,材料仅覆盖一个心室。 该装置可以包括被配置为调节材料张力的至少一个调节机构。 优选地,该装置包括被配置为调节覆盖右心室的材料的张力的第一调节机构和被配置为调节覆盖左心室的材料的张力的第二调节机构,使得覆盖左心室的材料的张力可以 与覆盖右心室的材料的张力不同。
    • 8. 发明申请
    • Septum attached ventricular support
    • 隔垫附着心室支持
    • US20060149122A1
    • 2006-07-06
    • US11338571
    • 2006-01-24
    • Edward ShaplandClif AlfernessDonald PalmeMichael GirardDonald Rohrbaugh
    • Edward ShaplandClif AlfernessDonald PalmeMichael GirardDonald Rohrbaugh
    • A61F2/00
    • A61F2/2481
    • A method and device are disclosed for treating congestive heart disease. The material of the device is secured to the heart proximate the septal wall. The material covering the ventricles may or may not have the same tension and or compliance. The device can be constructed as a unitary “jacket” that is slipped over the apex of the heart. Alternately, the device implanted as one, two or more separate components. In one embodiment, the material covers both the left and right ventricles. In another embodiment, the material covers only one ventricle. The device may include at least one adjustment mechanism configured to adjust the tension of the material. Preferably, the device includes a first adjustment mechanism configured to adjust a tension of the material covering the right ventricle and a second adjustment mechanism configured to adjust the tension of the material covering the left ventricle such that the tension of the material covering the left ventricle can be different than the tension of the material covering the right ventricle.
    • 公开了治疗充血性心脏病的方法和装置。 该装置的材料固定在靠近隔壁的心脏上。 覆盖心室的材料可能具有或不具有相同的张力和/或顺应性。 该装置可以被构造成整体的“夹克”,其被滑过心脏的顶点。 或者,该装置作为一个,两个或更多个分离的部件植入。 在一个实施例中,材料覆盖左心室和右心室。 在另一个实施例中,材料仅覆盖一个心室。 该装置可以包括被配置为调节材料张力的至少一个调节机构。 优选地,该装置包括被配置为调节覆盖右心室的材料的张力的第一调节机构和被配置为调节覆盖左心室的材料的张力的第二调节机构,使得覆盖左心室的材料的张力可以 与覆盖右心室的材料的张力不同。