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    • 5. 发明授权
    • Ultrasonic densitometer device and method
    • 超声波密度计装置及方法
    • US5483965A
    • 1996-01-16
    • US397027
    • 1995-03-01
    • Scott A. WienerPhillip J. Rossman
    • Scott A. WienerPhillip J. Rossman
    • A61B8/00A61B8/08G01N29/07G01N29/11G01N29/28G01N29/34
    • A61B8/4281A61B8/0875G01N29/07G01N29/11G01N29/28G01N29/348G01N2291/011G01N2291/015G01N2291/02483G01N2291/106
    • An ultrasound densitometer is disclosed in which ultrasonic transducers are located spaced apart in a water bath into which the heel of a person may be inserted. The transit time of an ultrasonic pulse through the water and heel and the attenuation of the pulse may be measured to evaluate the physical properties of the bone in the heel. A central controller coordinates the ultrasonic measurement with the automatic filling and draining of the water bath to ensure hygienic and repeatable operation. The water may be preheated to reduce patient discomfort and to improve the reduced by preheating water in a separate pre-fill chamber during the previous scan. Gravity feed of the water reduces the complexity of the water handling and provides extremely quiet operation. A toe peg in the water bath, which fits between the patient's toes, and a calf support help to reduce patient motion during the measuring.
    • 公开了一种超声波密度计,其中超声波换能器位于水浴中间隔开的位置,可以将人的脚跟插入其中。 可以测量穿过水和脚跟的超声波脉冲的传播时间和脉冲的衰减,以评估脚后跟骨的物理性质。 中央控制器通过水浴自动灌装和排水来协调超声波测量,以确保卫生和可重复的操作。 可以预热水以减少患者的不适,并且通过在先前扫描期间在单独的预填充腔中预热水来改善减少的水分。 水的重力进料降低了水处理的复杂性,并提供了非常安静的操作。 在水浴中的脚趾钉住适合患者的脚趾和小腿支撑有助于在测量期间减少患者运动。
    • 9. 发明申请
    • Atom Probes, Atom Probe Specimens, and Associated Methods
    • 原子探针,原子探针样品和相关方法
    • US20080308728A1
    • 2008-12-18
    • US12064020
    • 2006-08-15
    • Thomas F. KellyJoseph H. BuntonScott A. Wiener
    • Thomas F. KellyJoseph H. BuntonScott A. Wiener
    • G01N23/00
    • G01N23/22
    • The present invention relates generally to atom probes, atom probe specimens, and associated methods. For example, certain aspects are directed toward methods for analyzing a portion of a specimen that includes selecting a region of interest and moving a portion of material in a border region proximate to the region of interest so that at least a portion of the region of interest protrudes relative to at least a portion of the border region. The method further includes analyzing a portion of the region of interest. Other aspects of the invention are directed toward a method for applying photonic energy in an atom probe process by passing photonic energy through a lens system separated from a photonic device and spaced apart from the photonic device. Yet other aspects of the invention are directed toward a method for reflecting photonic energy off an outer surface of an electrode onto a specimen.
    • 本发明一般涉及原子探针,原子探针试样和相关方法。 例如,某些方面涉及用于分析样本的一部分的方法,所述方法包括选择感兴趣区域并移动靠近感兴趣区域的边界区域中的材料的一部分,使得感兴趣区域的至少一部分 相对于边界区域的至少一部分突出。 该方法还包括分析感兴趣区域的一部分。 本发明的其它方面涉及通过使光子能量通过从光子器件分离并与光子器件间隔开的透镜系统来在原子探测过程中施加光子能量的方法。 本发明的其它方面涉及将光子能量从电极的外表面反射到样本上的方法。
    • 10. 发明授权
    • Ultrasonometer employing distensible membranes
    • 超声波仪采用扩张膜
    • US6027449A
    • 2000-02-22
    • US94073
    • 1998-06-09
    • Richard B. MazessScott A. WienerRichard F. Morris
    • Richard B. MazessScott A. WienerRichard F. Morris
    • A61B8/00A61B8/08
    • A61B8/0875A61B8/4281
    • An ultrasonometer having opposed ultrasonic transducers with bladders containing a coupling fluid, controls the geometry of the bladder so as to provide immobilization of the patient as well as coupling of the ultrasound to the patient member. The coupling fluid may be hermetically enclosed in sealed chambers slideable toward the patient member or may be fixed in position and use a collar distending the membrane outward by compressing other portions of the membrane inward. A rolling diaphragm-type pump allows inflation of the membranes in an alternative embodiment without exposure of the acoustic coupling liquid to outside contamination. Temperature sensors and heaters communicating with the acoustic coupling fluid to reduce error caused by changes in the fluid's temperature.
    • 具有相对的具有包含耦合流体的囊的超声波换能器的超声波仪器控制膀胱的几何形状,以提供患者的固定以及将超声波耦合到患者构件。 联接流体可以气密地封闭在可朝向患者构件滑动的密封室中,或者可以固定在适当位置,并且通过将膜的其它部分向内压缩而使外壳向外扩张。 滚动膜式泵允许在替代实施例中的膜膨胀,而不会将声耦合液体暴露于外部污染物。 与声耦合流体连通的温度传感器和加热器可减少流体温度变化引起的误差。