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    • 6. 发明授权
    • Microdroplet-based 3-D volumetric displays utilizing emitted and moving droplet projection screens
    • 基于微滴的3-D体积显示器利用发射和移动的液滴投影屏幕
    • US08289274B2
    • 2012-10-16
    • US12082064
    • 2008-04-08
    • John W. SliwaCarol A. Tosaya
    • John W. SliwaCarol A. Tosaya
    • G09G3/34
    • G09G3/34G02B27/2271G03B21/562G03B21/608G03B25/00H04N13/393
    • Volumetric three-dimensional (3-D) graphical or computer displays are disclosed herein that are capable of presenting objects, data, scenes or other visual information in a realistic or solid-like manner, allowing for an unaided observer to observe such static or moving objects from multiple perspectives with natural depth-cues and superior image quality. We utilize in this refined approach moving-screens formed from particulate-arrays and we preferably optically project multiple image sub-slices on each such flying-screen as it passes through the image-volume thereby minimizing particulate mass-flow since only once screen per image-volume is needed to present the several or many necessary slices of each volumetric frame.
    • 本文公开了体积三维(3-D)图形或计算机显示器,其能够以逼真或实体的方式呈现对象,数据,场景或其他视觉信息,允许无人看管者观察这样的静态或移动 具有自然深度线索和卓越图像质量的多个视角的物体。 我们利用这种精致的方法,从颗粒阵列形成的移动屏幕,我们优选在每个这样的飞行屏幕上通过图像体积光学投影多个图像子切片,从而最小化颗粒质量流量,因为每个图像只有一次屏幕 - 需要体积来呈现每个体积框架的几个或许多必要的切片。
    • 9. 发明授权
    • Method of manufacturing an ultrasound transducer
    • 制造超声波换能器的方法
    • US07877854B2
    • 2011-02-01
    • US11958862
    • 2007-12-18
    • John W. SliwaJohn P. GoetzZhenyi Ma
    • John W. SliwaJohn P. GoetzZhenyi Ma
    • H04R31/00
    • G10K11/30Y10T29/49005Y10T29/49007Y10T29/4908Y10T29/49172Y10T29/49194
    • A focused ultrasound transducer includes a first ultrasonic emitter and at least one metallic ultrasonic lens acoustically coupled thereto. The emitter generates ultrasonic energy that propagates along a beam path projecting therefrom. The at least one metallic ultrasonic lens is positioned at least partially in the beam path so that it can direct (e.g., focus, defocus, and/or collimate) in at least one direction (or along at least one plane) at least some of the ultrasonic energy propagating from the emitter. The metallic lens may be formed by extrusion, by molding (e.g., diecast molding or thermoforming), or by sintering (e.g., powder metallurgy). The metallic lens also advantageously functions as a heat sink, improving thermal performance of the ultrasound transducer.
    • 聚焦超声波换能器包括第一超声波发射器和声耦合到其上的至少一个金属超声波透镜。 发射器产生沿着从其突出的光束路径传播的超声波能量。 至少一个金属超声波透镜至少部分地定位在光束路径中,使得其可以在至少一个方向(或沿着至少一个平面)上引导(例如,聚焦,散焦和/或准直)至少一个 超声能量从发射器传播。 金属透镜可以通过挤出,模制(例如,压铸模塑或热成型)或通过烧结(例如粉末冶金)形成。 金属透镜还有利地用作散热器,从而改善超声换能器的热性能。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR MEASURING FORCE AND TORQUE APPLIED TO A CATHETER ELECTRODE TIP
    • 用于测量导体电极尖端的力和扭矩的系统和方法
    • US20100168620A1
    • 2010-07-01
    • US12347607
    • 2008-12-31
    • Gleb V. KlimovitchJohn W. Sliwa
    • Gleb V. KlimovitchJohn W. Sliwa
    • A61B5/00
    • A61B5/6885A61B5/042A61B8/12A61B18/02A61B18/1492A61B18/24A61B2090/065A61B2218/002A61N1/05A61N7/022
    • A contact sensing assembly including a catheter including an electrode having a base portion mounted adjacent a head portion of the catheter body. A sensor is disposed adjacent the base portion for measuring compression or tensile forces applied to an electrode tip portion, and includes a predetermined sensitivity. The base and head portions include predetermined rigidity so that forces applied to the electrode tip portion are determinable as a function of the sensitivity and a sensor output. A contact sensing assembly also includes an electrode pipe operatively connected to the catheter body for movement and bending with the catheter body, and an electrode wire disposed in the electrode pipe and including isolation. A change in capacitance resulting from movement of the electrode wire toward the electrode pipe or contact of the electrode wire with the electrode pipe during bending of the catheter correlates to a force applied to the catheter.
    • 一种接触检测组件,包括导管,其包括具有邻近导管主体的头部安装的基部的电极。 传感器邻近基部设置,用于测量施加到电极末端部分的压缩或拉伸力,并且包括预定的灵敏度。 基部和头部包括预定的刚度,使得施加到电极尖端部分的力可以作为灵敏度和传感器输出的函数来确定。 接触检测组件还包括可操作地连接到导管主体的电极管,用于与导管主体一起移动和弯曲,以及设置在电极管中并包括隔离的电极线。 在导管弯曲期间由电极线向电极管的移动或电极线与电极管的接触的电容变化与施加于导管的力相关。