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    • 1. 发明申请
    • TEMPORARILY IMPLANTABLE GI SENSOR AND STIMULATOR AND RELATED METHODS
    • 临时可植入GI传感器和刺激器及相关方法
    • WO2016065342A1
    • 2016-04-28
    • PCT/US2015/057248
    • 2015-10-23
    • THE FOUNDRY, LLC
    • DEEM, MarkGIFFORD, Hanson, S.
    • A61N1/00
    • A61N1/36007A61N1/0507
    • GI tract treatment and monitoring devices configured for temporary implantation in the GI tract and non-invasive removal via natural body processes are disclosed. Methods of implantation, treatment and monitoring with disclosed devices are also disclosed. Devices include bio-active fixation that allows removal from the body by natural processes after a time that may be engineered in the fixation elements. In some embodiments, devices are configured to be implanted on GI tract tissue and transmurally migrate into the GI tract to be passed from the body. In other embodiments, devices are configured for placement within the GI tract via a delivery tube such as an NJ/NG tube. Embodiments include stimulation devices for treating conditions such as ileus and sensors for monitoring GI leaks and/or biological or chemical markers for various GI tract conditions.
    • 公开了用于临时植入胃肠道的胃肠道治疗和监测装置以及通过自然身体过程的非侵入性去除。 还公开了所公开的装置的植入,处理和监测方法。 装置包括生物活性固定,其允许在可以在固定元件中设计的时间之后通过自然过程从身体移除。 在一些实施例中,装置被配置为植入GI道组织并且透射迁移到胃肠道以从身体通过。 在其他实施例中,装置被配置用于通过诸如NJ / NG管的输送管放置在胃肠道内。 实施例包括用于治疗诸如肠梗阻的病症的刺激装置和用于监测GI泄漏的传感器和/或用于各种胃肠道状况的生物或化学标记物。
    • 3. 发明申请
    • MICROFRACTURE DEVICE AND METHOD
    • MICROFRACTURE设备和方法
    • WO2010148125A1
    • 2010-12-23
    • PCT/US2010/038875
    • 2010-06-16
    • THE FOUNDRY, LLCDEEM, MarkHENDRICKSEN, MichaelGITTINGS, Darin C.
    • DEEM, MarkHENDRICKSEN, MichaelGITTINGS, Darin C.
    • A61B17/3203
    • A61B17/3203A61B18/22A61B2017/003A61B2017/00318A61B2018/2238
    • Devices and methods are provided for performing microfracture surgery on an articular surface in a joint space. A surgical tool comprising an elongated body and a distal probe is provided. The probe is coupled to the elongated body and is adapted to be inserted in the joint space. The probe is positioned over the articular surface. A first and second channel through the subchondral bone into the marrow cavity are created with perforating elements, fluid jets, laser beams, or other channeling methods. The second channel is discrete from the first channel and is separated therefrom by a predetermined distance. The first channel and the second channel may be simultaneously created. In this way, a microfracture procedure is performed faster and with greater precision than existing techniques and with less risk of thermal damage and other complications.
    • 提供了用于在关节空间中的关节表面上进行微创骨折手术的装置和方法。 提供了包括细长主体和远端探针的手术工具。 探针耦合到细长主体并且适于插入关节空间中。 探针位于关节面上方。 通过软骨下骨进入骨髓腔的第一和第二通道用穿孔元件,流体射流,激光束或其它引导方法产生。 第二通道与第一通道离散并且与之隔开预定距离。 可以同时创建第一通道和第二通道。 以这种方式,微裂缝程序比现有技术更快,更精确地执行,并且具有较少的热损伤和其他并发症的风险。