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    • 1. 发明授权
    • Ultrasonic holography detector
    • 超声全息检测仪
    • US06831874B2
    • 2004-12-14
    • US10134000
    • 2002-04-25
    • George F. GarlickJerod O. Shelby
    • George F. GarlickJerod O. Shelby
    • G01N2904
    • G03H3/00Y10S359/901
    • There is disclosed an improved ultrasonic hologram or other ultrasonic imaging process that accurately forms phase and amplitude information of the hologram in a manner that renders the unit relatively insensitive to environment vibrations, and provides long maintenance free functioning lifetime. Specifically, there is disclosed an improved ultrasonic hologram detector component that forms an ultrasonic hologram on the surface of a detection deformable detector material, resulting from the deformation of the surface. The surface deformation is due to the reflection of an ultrasound (ultrasonic) energy profile of the combination of an “object wave” that passes through an object and that of a “reference wave” that is directed to the surface at an off axis angle from the “object wave”.
    • 公开了一种改进的超声全息图或其它超声波成像方法,其以使得单元对环境振动相对不敏​​感的方式精确地形成全息图的相位和振幅信息,并且提供长的免维护功能寿命。 具体地,公开了一种改进的超声全息图检测器部件,其在检测可变形检测器材料的表面上形成超声全息图,这是由于表面的变形引起的。 表面变形是由于穿过物体的“物体波”的组合的超声波(超声波)能量曲线的反射和以离轴角度指向表面的“参考波”的超声波 “对象波”。
    • 3. 发明授权
    • System and method for diagnostic imaging
    • 用于诊断成像的系统和方法
    • US06544186B1
    • 2003-04-08
    • US09988839
    • 2001-11-19
    • Jerod O. ShelbyBarbara A. FechtTodd F. GarlickGeorge F. GarlickVictor I. Neeley
    • Jerod O. ShelbyBarbara A. FechtTodd F. GarlickGeorge F. GarlickVictor I. Neeley
    • A61B814
    • A61B6/0457A61B6/0414A61B6/502A61B8/0825
    • An imaging system and method provides for the automatic leveling of a hologram detector system. A detector system must be precisely oriented in a proper predetermined orientation. The present invention senses the orientation of a plate to which the detector system is mounted and adjusts driver motors to maintain the detector system at a desired predetermined orientation. In an exemplary embodiment, orientation sensors form a feedback loop to a servo controller to control the position of the motors and thus maintain the detector system at the predetermined orientation. In another aspect of the invention, the patient table may be repositioned with respect to the imaging system. The patient is positioned on a table and imaging performed. If an object of interest is detected, the patient table may be independently repositioned in three orthogonal directions such that the object of interest coincides with an axis of rotation of the patient table. In this manner, the object of interest stays within a predetermined focal plane as the patient is rotated such that the object may be viewed from various angles.
    • 成像系统和方法提供全息图检测器系统的自动调平。 检测器系统必须以适当的预定取向精确地定向。 本发明感测安装有检测器系统的板的方向,并且调节驱动器电机以将检测器系统保持在期望的预定取向。 在示例性实施例中,定向传感器形成到伺服控制器的反馈回路,以控制电动机的位置,从而将检测器系统维持在预定方位。 在本发明的另一方面,患者台可以相对于成像系统重新定位。 患者被放置在桌子上并进行成像。 如果检测到感兴趣的对象,则可以在三个正交方向上独立地重新定位患者台,使得感兴趣的对象与患者表的旋转轴线重合。 以这种方式,感兴趣的对象在患者旋转时保持在预定焦平面内,使得可以从各种角度观察对象。
    • 4. 发明授权
    • Detector in ultrasonic holography
    • 超声全息检测仪
    • US06353576B1
    • 2002-03-05
    • US09589863
    • 2000-06-08
    • George F. GarlickJerod O. Shelby
    • George F. GarlickJerod O. Shelby
    • G01N2904
    • G03H3/00Y10S359/901
    • There is disclosed an improved ultrasonic hologram or other ultrasonic imaging process that accurately forms phase and amplitude information of the hologram in a manner that renders the unit relatively insensitive to environment vibrations, and provides long maintenance free functioning lifetime. Specifically, there is disclosed an improved ultrasonic hologram detector component that forms an ultrasonic hologram on the surface of a detection fluid, resulting from the deformation of the surface. The surface deformation is due to the reflection of an ultrasound (ultrasonic) energy profile of the combination of an “object wave” that passes through an object and that of a “reference wave” that is directed to the surface at an off axis angle from the “object wave”.
    • 公开了一种改进的超声全息图或其它超声波成像方法,其以使得单元对环境振动相对不敏​​感的方式精确地形成全息图的相位和振幅信息,并且提供长的免维护功能寿命。 具体地,公开了一种改进的超声全息图检测器部件,其在检测流体的表面上形成超声全息图,这是由于表面的变形引起的。 表面变形是由于穿过物体的“物体波”的组合的超声波(超声波)能量曲线的反射和以离轴角度指向表面的“参考波”的超声波 “对象波”。
    • 5. 发明授权
    • System, method and apparatus for direct imaging in ultrasonic holography
    • 超声全息直接成像的系统,方法和装置
    • US07259897B2
    • 2007-08-21
    • US11274050
    • 2005-11-15
    • George F. GarlickTodd F. Garlick
    • George F. GarlickTodd F. Garlick
    • G03H1/00
    • G01N29/0663G01N29/2462G01N29/30G01N2291/0421G01N2291/0422G01N2291/044G03H3/00Y10S359/901
    • An acoustical holographic imaging method and apparatus for introducing a reference wave into a hologram surface such that the reference wave does not interfere with an object placed adjacent to or in close proximity to the hologram surface. More particularly, the ultrasonic holographic imaging system may use a reference wave introduced on the side of a thin (3 element) detector that acts as a wave guide; to introduce the reference wave to a liquid-to-gas interface or alternatively, from the topside of the detecting surface through a liquid-to-liquid interface. The system eliminates the acoustic lens system, thereby reducing the size and cost of the system. Further, an object may be placed at the detecting surface, increasing the depth of field of the resultant image and reducing the energy needed from the object source. The system may additionally utilize multiple reference sources.
    • 一种用于将参考波引入全息图表面的声全息成像方法和装置,使得参考波不会干扰与全息图表面相邻或非常靠近的物体。 更具体地,超声全息成像系统可以使用引入在作为波导的薄(3元件)检测器侧的参考波; 以将参考波引入到液体 - 气体界面中,或者可选地,通过液 - 液界面从检测表面的顶侧引入。 该系统消除了声透镜系统,从而减小了系统的尺寸和成本。 此外,物体可以被放置在检测表面处,从而增加所得到的图像的景深,并减少从物体源所需的能量。 系统可以另外使用多个参考源。
    • 7. 发明授权
    • Solid ultrasonic lens
    • 实心超声波镜头
    • US5235553A
    • 1993-08-10
    • US796464
    • 1991-11-22
    • George F. GarlickVictor I. Neeley
    • George F. GarlickVictor I. Neeley
    • G10K11/30
    • G10K11/30
    • A preferred embodiment of a large diameter solid ultrasonic imaging transducer is illustrated in FIG. 5 with alternate embodiments illustrated in FIGS. 6-9. The large diameter solid ultrasonic imaging lens 100 has a diameter preferably greater than six inches with a focal length-to-diameter ratio of between 1 and 2. The lens 100 has concave surfaces 108 and 110, and is composed of a homogenous material that has an ultrasonic impedance of less than twice that of water and has a density less than the water. Preferably, the velocity of the ultrasonic sound through homogenous plastic material is less than twice that of water. One or both of the concave surfaces 108 and 110 have surfaces that are without a constant radius and curvature, but however are composed of separate radius of curvatures for each small increment of lens surface to properly focus the ultrasound at a desired focal length "L".An alternate embodiment is illustrated in FIG. 6 which has two exterior solid rigid lens elements that are of a concaval-convex nature forming a liquid lens 126 therebetween that has a double convex arrangement for accurately focusing the ultrasound rays to the desired focal length. Preferably, the solid lens surfaces are coated with a one-quarter wave length reflection reduction layer for reducing even further any ultrasonic reflection or energy loss.
    • 图2中示出了大直径固体超声波成像换能器的优选实施例。 图5中示出了替代实施例。 6-9。 大直径固体超声波成像透镜100的直径优选大于6英寸,焦距与直径之比在1和2之间。透镜100具有凹面108和110,并且由具有 超声阻抗小于水的两倍,密度小于水。 优选地,超声波通过均质塑料材料的速度小于水的两倍。 凹表面108和110中的一个或两个具有不具有恒定半径和曲率的表面,但是由透镜表面的每个小增量的单独的曲率半径组成,以将超声波适当地聚焦在期望的焦距“L” 。 图5中示出了替代实施例。 6具有两个具有凹凸性质的外部固体刚性透镜元件,在其间形成液体透镜126,其具有用于将超声波精确聚焦到期望焦距的双凸起布置。 优选地,实心透镜表面涂覆有四分之一波长反射减少层,以进一步减少任何超声波反射或能量损失。