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    • 4. 发明申请
    • SIMULATED DISSECTABLE TISSUE
    • 模拟不协调的组织
    • WO2017011436A1
    • 2017-01-19
    • PCT/US2016/041852
    • 2016-07-12
    • APPLIED MEDICAL RESOURCES CORPORATION
    • HOFSTETTER, Gregory, K.BLACK, Katie
    • G09B23/30
    • G09B23/34
    • A simulated tissue structure for surgical training is provided. It includes a first layer made of silicone and a second layer made of silicone interconnected by a third layer made of polyester fiber that is embedded in part in the first layer and in part in the second layer to create a mechanical linkage between the first layer and the second layer. Part of the third layer that is adjacent to the first layer and part of the third layer that is adjacent to the second layer includes fiber strands coated in silicone. An inclusion that mimics an anatomical structure is located between the first layer and the second layer. The third layer of polyester fibers provides a realistic dissection plane for the practice of the surgical excision of the inclusion.
    • 提供了一种用于外科手术训练的模拟组织结构。 它包括由硅树脂制成的第一层和通过由聚酯纤维制成的第三层互连的硅树脂制成的第二层,所述第三层部分地嵌入在第一层中,部分地嵌入在第二层中,以在第一层和第二层之间形成机械连接 第二层。 与第一层相邻的第三层的一部分和与第二层相邻的第三层的一部分包括涂覆在硅树脂中的纤维线。 模仿解剖结构的夹杂物位于第一层和第二层之间。 第三层聚酯纤维提供了一种实用的切割平面,用于外科手术切除夹杂物。
    • 5. 发明申请
    • HYSTERECTOMY MODEL
    • HYSTERECTOMY模型
    • WO2016201085A1
    • 2016-12-15
    • PCT/US2016/036664
    • 2016-06-09
    • APPLIED MEDICAL RESOURCES CORPORATION
    • BLACK, KatieHOFSTETTER, Gregory, K.FELSINGER, Natasha
    • G09B23/28G09B23/34
    • G09B23/281G09B23/285
    • A surgical simulator for surgical training is provided. The simulator includes a frame defining an enclosure and a simulated tissue model located inside an enclosure. The simulated tissue model is adapted for practicing hysterectomies and includes at least a simulated uterus and a simulated vagina. The simulated tissue model is suspending inside the enclosure with two planar sheets of silicone such that the tissue model is located between the two sheets each of which form a fold and are in turn connected to the frame. The frame may be shaped like a cylinder and located inside a cavity of a larger laparoscopic trainer having a penetrable simulated abdominal wall. The tissue model is interchangeable and accessible laterally through an aperture provided in a support leg of the trainer.
    • 提供了一种用于外科手术的手术模拟器。 模拟器包括限定外壳的框架和位于外壳内的模拟组织模型。 模拟组织模型适用于实施子宫切除术,并且至少包括模拟子宫和模拟阴道。 模拟的组织模型在两个平面硅胶板之间悬挂在外壳内,使得组织模型位于两个薄片之间,每个薄片形成折叠,并且又连接到框架。 框架可以形状像圆柱体并且位于具有可穿透的模拟腹壁的较大腹腔镜训练器的腔内。 组织模型是可互换的并且通过设置在训练器的支撑腿中的孔横向地接近。
    • 8. 发明申请
    • HIGHLY RESPONSIVE INSTRUMENT SEAL
    • 高度响应的仪器密封
    • WO2016007650A1
    • 2016-01-14
    • PCT/US2015/039582
    • 2015-07-08
    • APPLIED MEDICAL RESOURCES CORPORATION
    • HART, Charles, C.ALBRECHT, Jeremy, J.
    • A61B17/34
    • A61B17/3423A61B17/0218A61B17/3462A61B2017/3441A61B2017/3464A61M39/06
    • A surgical access port (10) for passage through body tissue to provide access to an underlying tissue site is provided. The access port has a working channel (13) dimensioned for receiving a surgical instrument and a seal assembly for providing a substantial seal before, during and after insertion of a surgical instrument. The seal assembly includes an instrument seal (22) and a zero seal (24). The instrument seal (22) includes a proximal base that is interconnected to a distal instrument engaging portion by an elongate supporting portion. The engaging portion has a lateral dimension larger than the lateral dimension of the supporting portion forming a bulbous, mushroom-like head. The lateral dimension of the engaging portion decreases toward a distal opening of the instrument seal such that the distal end of the engaging portion is substantially perpendicular to the seal axis. The supporting portion closely conforms to an inserted instrument and serves to align the distal end of the seal.
    • 提供了用于穿过身体组织以提供对下面的组织部位的通路的外科进入口(10)。 进入端口具有用于接收外科器械的工作通道(13)和用于在插入外科器械之前,期间和之后提供实质密封的密封组件。 密封组件包括仪器密封件(22)和零密封件(24)。 仪器密封件(22)包括通过细长支撑部分与远侧器械接合部分互连的近端基座。 接合部分的横向尺寸大于形成球形蘑菇状头部的支撑部分的横向尺寸。 接合部分的横向尺寸朝向仪器密封件的远端开口减小,使得接合部分的远端基本上垂直于密封轴线。 支撑部分与插入的器具紧密地一致并用于对准密封件的远端。