会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • RESIDUAL STRESS FEATURES IN ORGAN MODELS
    • 器官模型中的残余应力特征
    • WO2017189499A1
    • 2017-11-02
    • PCT/US2017/029281
    • 2017-04-25
    • APPLIED MEDICAL RESOURCES CORPORATION
    • HOFSTETTER, Gregory, K.
    • G09B23/30
    • Simulated tissue structures and methods of making them are disclosed. An elastic first material is placed in tension. An elastic second material is adhered to the first material while the first material is in tension. The adhered second material and the first material in tension forms a first shape of the simulated tissue structure. Tension on the first material is released. In releasing the tension of the first material, a force is exerted on the adhered second material bring the combination of the first material and the second material into a second shape. The first shape is maintained by a mold or mandrel and the second shape is the desired shape of the simulated tissue structure.
    • 公开了模拟组织结构及其制造方法。 弹性第一材料处于张紧状态。 当第一材料处于拉伸状态时,弹性第二材料粘附到第一材料上。 粘附的第二材料和处于拉伸状态的第一材料形成模拟组织结构的第一形状。 第一种材料的张力被释放。 在释放第一材料的张力时,对粘附的第二材料施加力,使得第一材料和第二材料的组合成为第二形状。 第一种形状由模具或心轴维持,第二种形状是模拟组织结构的所需形状。
    • 3. 发明申请
    • SIMULATED TISSUE STRUCTURES AND METHODS
    • 模拟组织结构和方法
    • WO2016134269A1
    • 2016-08-25
    • PCT/US2016/018697
    • 2016-02-19
    • APPLIED MEDICAL RESOURCES CORPORATION
    • HOFSTETTER, Gregory, K
    • B29C41/20G09B23/34G09B23/28B29L31/00
    • G09B23/281B29C41/20B29L2031/753B29L2031/7532G09B23/28G09B23/30G09B23/34
    • Simulated tissue structures (10) and methods of manufacturing are provided. The simulated tissue structures (10) are particularly useful for placement inside abdominal simulators for practicing laparoscopic surgical techniques. One simulated tissue structure (10) includes a combination of two materials that are attached together wherein one of the materials forms a hollow anatomical structure configured to contain the other material. The two materials are attached in an anatomically advantageous manner such that the inner surface of the outer material closely conforms to the outer surface of the inner material. Another simulated tissue structure includes a plurality of layers wherein at least one layer is applied by printing the layer with at least one stencil to impart one or more functional characteristic to the simulated tissue structure.
    • 提供模拟组织结构(10)和制造方法。 模拟的组织结构(10)对于放置在腹部模拟器中用于实践腹腔镜手术技术特别有用。 一个模拟组织结构(10)包括连接在一起的两种材料的组合,其中一种材料形成构造成容纳其它材料的中空解剖结构。 两种材料以解剖学有利的方式附接,使得外部材料的内表面与内部材料的外表面紧密地一致。 另一个模拟组织结构包括多个层,其中通过用至少一个模板印刷该层来施加至少一个层,以赋予模拟组织结构一个或多个功能特征。
    • 6. 发明申请
    • ADVANCED SURGICAL SIMULATION CONSTRUCTIONS AND METHODS
    • 高级手术模拟结构与方法
    • WO2014134597A1
    • 2014-09-04
    • PCT/US2014/019840
    • 2014-03-03
    • APPLIED MEDICAL RESOURCES CORPORATION
    • HART, Charles, C.BOLANOS, EduardoCHEHAYEB, Sam
    • G09B23/28
    • G09B23/30G09B23/28G09B23/285
    • A surgical simulation system is provided. The system includes at least one simulated body organ placed upon the base of an organ tray and at least one covering layer placed over the simulated body organ. At least one of the simulated body organ and covering layer includes electro-conductive gel that is operably severable under application of electrical current to simulate electrosurgery in a training environment. The training environment comprises a top cover connected to and spaced apart from a base to define an internal cavity that is partially obstructed from direct observation by a practitioner. The tray, simulated body organs and covering layer are placed inside the internal cavity for the practice of laparoscopic surgical procedures.
    • 提供了一种手术模拟系统。 该系统包括放置在器官托盘的基部上的至少一个模拟身体器官和放置在模拟身体器官上的至少一个覆盖层。 模拟的身体器官和覆盖层中的至少一个包括在施加电流下可操作地分离以在训练环境中模拟电外科手术的导电凝胶。 训练环境包括连接到基座并与基座间隔开的顶盖,以限定被从业者直接观察部分阻碍的内部空腔。 托盘,模拟的身体器官和覆盖层放置在内腔内用于腹腔镜手术的实践。
    • 7. 发明申请
    • SURGICAL TRAINING MODEL FOR TRANSLUMINAL LAPAROSCOPIC PROCEDURES
    • 腰椎间盘手术手术训练模型
    • WO2014052808A1
    • 2014-04-03
    • PCT/US2013/062269
    • 2013-09-27
    • APPLIED MEDICAL RESOURCES CORPORATION
    • POULSEN, NikolaiBRESLIN, TracyDEMARCHI, Jacqueline
    • G09B23/28G09B23/30
    • G09B23/285G09B23/30
    • A model for practicing laparoscopic surgical skills is provided. The model comprises a body having an elongate lumen and a plurality of eyelets connected to an inner surface of the lumen. The plurality of eyelets defines at least one pathway for practicing the passing of at least one needle and suture through the eyelets. The model further includes a staging area with removable objects having apertures configured to be placed onto hook-like eyelets. The model provides a platform for practicing hand-to- hand transfer, depth perception among other skills required in laparoscopic procedures within a confined tubular space. The model may be placed inside a laparoscopic trainer in which the practice is performed in a simulated laparoscopic environment and observed on a video display.
    • 提供了一种实践腹腔镜手术技巧的模型。 该模型包括具有细长内腔和连接到内腔内表面的多个孔眼的主体。 多个孔眼限定了用于实践至少一个针的通过并缝合穿过孔眼的至少一个通路。 该模型还包括具有可拆卸物体的分段区域,其具有被配置成放置在钩状孔眼上的孔。 该模型提供了一个平台,用于在密闭的管状空间内进行手动传递,深度感知以及腹腔镜手术所需的其他技能。 该模型可以放置在腹腔镜训练器中,其中练习在模拟的腹腔镜环境中进行并在视频显示器上观察。
    • 8. 发明申请
    • LASER MICRODISSECTION APPARATUS AND METHOD
    • 激光显微镜装置及方法
    • WO2006031574A2
    • 2006-03-23
    • PCT/US2005/031897
    • 2005-09-08
    • ARCTURUS BIOSCIENCE, INC.DONOVAN, Brian, W.BAER, Thomas, M.
    • DONOVAN, Brian, W.BAER, Thomas, M.
    • G01N1/00
    • G01N1/28G01N1/2813G01N1/286G01N1/30G01N1/44G01N2001/2826G01N2001/2833G01N2001/284G01N2001/2886Y10T156/10Y10T156/1054
    • Systems and methods for automated laser microdissection are disclosed. In one variation, targeted biological material is manually or automatically selected and a transfer film is placed in juxtaposition to the location of an interior of a cut path. In another variation, a sample of biological material is mounted onto a polymer membrane which is then placed onto a substrate. Targeted biological material is manually or automatically selected and a transfer film is placed in juxtaposition with the targeted biological material on the side of the biological material. In yet another variation, a sample of biological material is mounted onto a polymer membrane which is then inverted onto a substrate. Targeted biological material is manually or automatically selected and a transfer film is placed in juxtaposition with the targeted biological material on the side of the polymer membrane. Then, an UV laser cuts along a cut path around the targeted portions of biological material in a closed cut path or a substantially closed cut path defining an interior and an exterior portion of the tissue sample. In a substantially closed cut path, bridges are left spanning the interior of the cut path and the exterior of the cut path. An IR laser activates at least a portion of the transfer film such that the transfer film in the vicinity of targeted portion adheres to the biological material interior to the cut path. The transfer film is then removed separating the targeted portions of biological material which are adhered to the transfer film from the remaining portion of the tissue sample.
    • 公开了用于自动激光显微切割的系统和方法。 在一个变型中,手动或自动选择目标生物材料,并且将转移膜并排放置在切割路径的内部的位置。 在另一个变体中,将生物材料样品安装在聚合物膜上,然后将其放置在基底上。 手动或自动选择靶向生物材料,并将转移膜与生物材料侧面上的靶向生物材料并置放置。 在另一个变体中,将生物材料样品安装在聚合物膜上,然后将其反转到基底上。 手动或自动选择目标生物材料,并将转移膜与聚合物膜侧面上的目标生物材料并置放置。 然后,UV激光沿着围绕生物材料的目标部分的切割路径切割成闭合切割路径或限定组织样本的内部和外部部分的基本封闭的切割路径。 在基本封闭的切割路径中,跨越切割路径的内部和切割路径的外部。 红外激光激活转印膜的至少一部分,使得目标部分附近的转印膜附着在生物材料内部至切割路径。 然后除去转移膜,从生物材料的目标部分分离出粘附到转移膜上的剩余部分的组织样品。