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    • 5. 发明授权
    • Ultrasonic tee probe with two dimensional array transducer
    • 超声波探头采用二维阵列传感器
    • US06679849B2
    • 2004-01-20
    • US10318790
    • 2002-12-13
    • David G. MillerMichael PeszynskiHeather Beck
    • David G. MillerMichael PeszynskiHeather Beck
    • A61B812
    • A61B5/6819A61B8/12A61B8/445A61B8/4483A61B8/4488A61B8/483A61B2562/0204A61B2562/046G01S7/52033G01S7/52036G01S7/52061G01S7/52074G01S7/52079G01S15/8925G01S15/8927
    • A semi-invasive ultrasound imaging system for imaging biological tissue includes a transesophageal probe or a transnasal, transesophageal probe connected to a two-dimensional ultrasound transducer array, a transmit beamformer, a receive beamformer, and an image generator. The two-dimensional transducer array is disposed on a distal portion of the probe's elongated body. The transmit beamformer is connected to the transducer array and is constructed to transmit several ultrasound beams over a selected pattern defined by azimuthal and elevation orientations. The receive beamformer is connected to the transducer array and is constructed to acquire ultrasound data from the echoes reflected over a selected tissue volume. The tissue volume is defined by the azimuthal and elevation orientations and a selected scan range. The receive beamformer is constructed to synthesize image data from the acquired ultrasound data. The image generator is constructed to receive the image data and generate images that are displayed on an image display. Preferably, the image generator is constructed to generate, from the image data, several orthographic projection views over the selected tissue volume.
    • 用于成像生物组织的半侵入式超声成像系统包括连接到二维超声换能器阵列的经食道探针或经鼻,经食管探针,发射波束形成器,接收波束形成器和图像发生器。 二维换能器阵列设置在探头的细长体的远端部分上。 发射波束形成器连接到换能器阵列,并被构造成在由方位和仰角定向的选定图案上传输若干超声波束。 接收波束成形器连接到换能器阵列,并被构造成从在所选择的组织体积上反射的回波获取超声数据。 组织体积由方位角和仰角取向以及选定的扫描范围限定。 接收波束形成器被构造成从所获取的超声数据合成图像数据。 图像生成器被构造为接收图像数据并生成显示在图像显示器上的图像。 优选地,图像生成器被构造为从图像数据生成在所选择的组织体积上的若干正投影视图。
    • 8. 发明授权
    • Autojettison method and apparatus for dual-point suspension systems
    • 双点悬挂系统的自动喷射方法和装置
    • US5499785A
    • 1996-03-19
    • US306745
    • 1994-09-15
    • James P. RobertsJames D. CulpDavid G. MillerMartin R. Sarsfield
    • James P. RobertsJames D. CulpDavid G. MillerMartin R. Sarsfield
    • B64D1/12
    • B64D1/12
    • A method and apparatus for automatically jettisoning cargo carried by a dual-point suspension system when a suspension system failure is detected. Three conditions must be satisfied before a load is jettisoned. The average value of the load and an instantaneous value of the load on a hook must have fallen below a threshold value (zero load condition). A threshold amount of the load must have shifted from one hook to the other (dynamic load split condition). A threshold amount of an initial hook load must have been lost within a short period of time (rapid rate-of-decrease condition). For all three conditions, the threshold amount or value is adaptively set based on the actual load carried by the dual-point suspension. If all three conditions are satisfied for either the forward or the aft hook, the cargo is jettisoned. Additionally, a fourth condition that detects whether a structural limit of a hook has been exceeded is evaluated. If the structural limit has been exceeded, the load is jettisoned.
    • 当检测到悬挂系统故障时,用于自动丢弃由双点悬挂系统承载的货物的方法和装置。 在卸载之前必须满足三个条件。 负载的平均值和挂钩上的负载的瞬时值必须已经低于阈值(零负载条件)。 负载的阈值量必须从一个钩子移动到另一个钩子(动态负载分配条件)。 初始挂钩负载的阈值量必须在短时间内(快速降速条件)下丢失。 对于所有三种情况,阈值或值根据双点悬架的实际载荷进行自适应设定。 如果对于前挂或后钩都满足三个条件,则货物将被丢弃。 此外,评价检测是否已经超过钩的结构限制的第四条件。 如果超过了结构极限,则放电。
    • 9. 发明授权
    • Method and apparatus for treating gases
    • 用于处理气体的方法和装置
    • US4083932A
    • 1978-04-11
    • US760304
    • 1977-01-18
    • John M. MuracoLonnie V. HegeDavid G. Miller
    • John M. MuracoLonnie V. HegeDavid G. Miller
    • B01D47/06B05B7/00B01D53/34
    • B01D47/06B05B7/0075
    • A novel spraying method and apparatus are disclosed for treating a gaseous stream in a gas-liquid contact zone. The apparatus includes a housing surrounding a spray nozzle which is provided with an opening for releasing the spray to a gaseous stream to be treated. The housing is pressurized with gaseous fluid, preferably air. The gaseous fluid leaves the housing through an opening surrounding the spray head or nozzle and forms a cylindrical gas curtain or shroud of gas around the housing opening in which the spray head is mounted. The gas shroud protects the spray nozzle by prohibiting the gas from the gaseous stream being treated from entering the housing and substantially reducing direct contact with the spray nozzle.
    • 公开了一种用于处理气 - 液接触区中的气流的新型喷涂方法和装置。 该装置包括围绕喷嘴的壳体,该喷嘴设置有用于将喷雾释放到要处理的气态物流的开口。 外壳用气体流体,优选空气加压。 气体流体通过围绕喷头或喷嘴的开口离开壳体,并在其上安装喷头的壳体开口周围形成圆柱形气幕或气体罩。 气体罩通过禁止被处理的气体的气体进入壳体并大大减少与喷嘴的直接接触来保护喷嘴。