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    • 5. 发明申请
    • MIXED SIMULATOR AND USES THEREOF
    • 混合模拟器及其用途
    • WO2009049282A2
    • 2009-04-16
    • PCT/US2008/079687
    • 2008-10-13
    • UNIVERSITY OF FLORIDA RESEARCH FOUNDATION, INC.QUARLES, John, P.LOK, BenjaminFISHWICK, Paul, AnthonyLAMPOTANG, Samsun
    • QUARLES, John, P.LOK, BenjaminFISHWICK, Paul, AnthonyLAMPOTANG, Samsun
    • G09B23/28
    • G09B9/00G09B23/28G09B23/30
    • The subject invention provides mixed simulator systems that combine the advantages of both physical objects/simulations and virtual representations. In-context integration of virtual representations with physical simulations or objects can facilitate education and training. Two modes of mixed simulation are provided. In the first mode, a virtual representation is combined with a physical simulation or object by using a tracked display capable of displaying an appropriate dynamic virtual representation as a user moves around the physical simulation or object. In the second mode, a virtual representation is combined with a physical simulation or object by projecting the virtual representation directly onto the physical object or simulation. In further embodiments, user action and interaction can be tracked and incorporated within the mixed simulator system to provide a mixed reality after-action review. The subject mixed simulators can be used in many applications including, but not limited to healthcare, education, military, vocational schools, and industry.
    • 本发明提供了结合了物理对象/仿真和虚拟表示的优点的混合模拟器系统。 虚拟表示与物理模拟或对象的上下文整合可以促进教育和培训。 提供了两种混合模拟模式。 在第一模式中,当用户在物理模拟或物体周围移动时,通过使用能够显示适当的动态虚拟表示的追踪显示器将虚拟表示与物理仿真或对象组合。 在第二种模式中,通过将虚拟表示直接投影到物理对象或模拟上,虚拟表示与物理模拟或对象相结合。 在进一步的实施例中,可以追踪用户动作和交互并将其并入混合模拟器系统内以提供混合现实后动作审查。 主题混合模拟器可用于许多应用,包括但不限于医疗保健,教育,军事,职业学校和工业。
    • 7. 发明申请
    • IMAGING SCOPE
    • 成像范围
    • WO2005094927A2
    • 2005-10-13
    • PCT/US2005/009697
    • 2005-03-24
    • UNIVERSITY OF FLORIDAGRAVENSTEIN, DietrichLAMPOTANG, SamsunMELKER, Richard, J.
    • GRAVENSTEIN, DietrichLAMPOTANG, SamsunMELKER, Richard, J.
    • A61M16/04
    • A61B1/2676A61B1/00167A61B1/0017A61B1/042A61B1/07A61B5/064
    • Disclosed is an intubation imaging stylet for intubating a patient by use in a tube/imaging stylet combination, said imaging stylet comprising: a malleable stylet having a longitudinal axis and a proximal end and a distal end; a flexible image guide having a longitudinal axis and a proximal end and a distal end, said image guide being connected to said stylet such that a portion of said image guide runs parallel to a portion of said stylet along the longitudinal axis of said stylet and such that the distal end of said image guide is co-extensive with the distal end of said stylet; and at least one flexible illumination fiber having a proximal end and a distal end, said illumination fiber being connected to said stylet such that a portion of said illumination fiber runs parallel to a portion of said stylet along the longitudinal axis of said stylet and such that the distal end of said illumination fiber is co-extensive with the distal end of said stylet; such that in use, said imaging stylet is disposed within a tube for intubating a patient thereby forming an imaging stylet/tube combination which in use is held by gripping the tube in a pen-like fashion. The imaging stylet/tube combination is thus in use held in one hand, freeing the other hand of the user for other tasks if necessary, as well as permitting intubation in the conventional manner. To facilitate this, the center of gravity of the imaging stylet/tube combination is located in essentially the same location along the tube as with a conventional stylet/tube combination.
    • 所述成像管心针包括:具有纵向轴线和近端以及远端的可锻通管丝;其中,所述管状成像管心针具有纵向轴线, 柔性图像引导件,其具有纵向轴线以及近端和远端,所述图像引导件连接到所述探针,使得所述图像引导件的一部分沿着所述探针的纵向轴线平行于所述探针的一部分延伸,并且这样的 所述图像引导件的远端与所述探针的远端共同延伸; 以及具有近端和远端的至少一个柔性照明光纤,所述照明光纤连接到所述探针,使得所述照明光纤的一部分沿着所述探针的纵向轴线平行于所述探针的一部分延伸,并且使得 所述照明光纤的远端与所述探针的远端共同延伸; 使得在使用中,所述成像管心针设置在用于对患者进行插管的管内,从而形成成像管心针/管组合,所述成像管心针/管组合在使用时通过以笔状方式夹持管来保持。 因此,成像管心针/管组合被一只手握住使用,如果需要则释放使用者的另一只手以进行其他任务,并允许以常规方式进行插管。 为了促进这一点,成像管心针/管组合的重心位于沿着管的基本上相同的位置,如同传统的管心针/管组合。
    • 9. 发明申请
    • GUIDED ORTHODONTIC BRACKET APPLICATION
    • 引导正交支架应用
    • WO2016210402A1
    • 2016-12-29
    • PCT/US2016/039516
    • 2016-06-27
    • UNIVERSITY OF FLORIDA RESEARCH FOUNDATION, INC.
    • GRAVENSTEIN, NikolausDOLCE, CalogeroLAMPOTANG, SamsunLIZDAS, David, Erik
    • A61C7/14A61C19/04A61C7/00G06F19/00
    • A61C7/002A61C7/146A61C7/28G06F19/00G16H20/40
    • A computer-implemented method and system for guiding the placement of orthodontic brackets are provided. The system can include an at least one indexing tool designed to conform to at least a portion of a patient's teeth or alveolar process. The system can receive signals from a sensor at the indexing tool as well as signals from a sensor at a bracket positioning tool in order to track spatial location -and/or orientation of one or more brackets relative to the surface of the patient's actual or modeled teeth. A method for guiding the placement of orthodontic brackets involves detecting the location and/or orientation of a bracket with respect to at least one tooth of a patient and notifying the orthodontist that the actual bracket position and/or orientation meets specified criteria with respect to planned placement coordinates for the bracket. The method can further include collecting the planned placement coordinates for each bracket tooth combo during a planning phase.
    • 提供了一种用于指导正畸托架放置的计算机实现的方法和系统。 该系统可以包括设计成符合患者牙齿或肺泡过程的至少一部分的至少一个分度工具。 该系统可以在分度工具处接收来自传感器的信号以及来自支架定位工具处的传感器的信号,以便跟踪一个或多个支架相对于患者的实际或建模表面的空间位置和/或取向 牙齿。 用于引导正畸托架放置的方法包括检测支架相对于患者的至少一个牙齿的位置和/或方位,并通知正畸医生实际支架位置和/或方位符合规划的指定标准 支架的放置坐标。 该方法还可以包括在规划阶段收集每个支架齿组合的计划放置坐标。