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    • 2. 发明申请
    • METHOD AND APPARATUS FOR ASSESSING MATERIAL PROPERTIES OF SHEET-LIKE MATERIALS
    • 用于评估薄片材料的材料性能的方法和装置
    • WO0014477A9
    • 2000-08-17
    • PCT/US9920980
    • 1999-09-09
    • LOCKHEED MARTIN IDAHO TECH CO
    • TELSCHOW KENNETH LDEASON VANCE A
    • G01N21/45G01N29/24G01N29/50G01N33/34G01B9/02
    • G01N29/2418G01N21/453G01N29/50G01N33/346G01N2291/015G01N2291/0237G01N2291/0423G01N2291/0427
    • Apparatus for producing an indication of a material property of a sheet-like material according to the present invention may comprise an excitation source for vibrating the sheet-like material to produce at least one traveling wave therein. A light source configured to produce an object wavefront and a reference wavefront directs the object wavefront toward the sheet-like material to produce a modulated object wavefront. A modulator operatively associated with the reference wavefront modulates the reference wavefront in synchronization with the traveling wave on the sheet-like material to produce a modulated reference wavefront. A sensing medium positioned to receive the modulated object wavefront and the modulated reference wavefront produces an image of the traveling wave in the sheet-like material, the image of the anti-symmetric traveling wave being related to a displacement amplitude of the anti-symmetric traveling wave over a two-dimensional area of the vibrating sheet-like material. A detector detects the image of the traveling wave in the sheet-like material.
    • 用于产生根据本发明的片状材料的材料性质的指示的装置可以包括用于振动片状材料以在其中产生至少一个行波的激发源。 被配置为产生物体波前和参考波前的光源将物体波前朝向片状材料引导以产生调制对象波前。 与参考波阵面可操作地相关联的调制器与片状材料上的行波同步地调制参考波前,以产生调制的参考波阵面。 定位成接收调制对象波前和调制参考波阵面的感测介质产生片状材料中行波的图像,反对称行波的图像与反对称行进的位移振幅有关 在振动片状材料的二维区域上波动。 检测器检测片状材料中的行波的图像。
    • 3. 发明申请
    • OPTIMAL SEGMENTATION AND PACKAGING PROCESS
    • 优化分割和包装过程
    • WO9939253A3
    • 1999-12-23
    • PCT/US9901948
    • 1999-01-28
    • LOCKHEED MARTIN IDAHO TECH CO
    • KOSTELNIK KEVIN MMESERVEY RICHARD HLANDON MARK D
    • G06Q10/08G06F13/00G06F15/00G06G7/48G21C19/00
    • G06Q10/08Y10S83/923Y10S83/93
    • A process for improving packaging efficiency uses three dimensional, computer simulated models with various optimization algorithms to determine the optimal segmentation process and packaging configurations based on constraints including container limitations. The present invention is applied to a process for decontaminating, decommissioning (D & D), and remediating a nuclear facility involving the segmentation and packaging of contaminated items in waste containers in order to minimize the number of cuts, maximize packaging density, and reduce worker radiation exposure. A three-dimensional, computer simulated, facility model of the contaminated items is created. The contaminated items are differentiated. The optimal location, orientation and sequence of the segmentation and packaging of the contaminated items is determined using the simulated model, the algorithms, and various constraints including container limitations. The cut locations and orientations are transposed to the simulated model. The contaminated items are actually segmented and packaged. The segmentation and packaging may be simulated beforehand. In addition, the contaminated items may be cataloged and recorded.
    • 提高包装效率的过程使用具有各种优化算法的三维计算机模拟模型来基于包括容器限制的约束来确定最佳分割过程和包装配置。 本发明应用于净化,退役(D&D)和修复涉及将废物容器中的污染物品分割和包装的核设施的过程,以最小化切割次数,最大化包装密度并减少工人 辐射暴露。 建立了污染物品的三维计算机模拟设施模型。 受污染的物品是有区别的。 使用模拟模型,算法以及包括容器限制在内的各种约束来确定污染物品的分割和包装的最佳位置,方向和顺序。 切割的位置和方向转换为模拟模型。 受污染的物品实际上是分割和包装的。 预先可以模拟分割和包装。 另外,受污染的物品可以被编目和记录。
    • 4. 发明申请
    • DOSE MASKING FEATURE FOR BNCT RADIOTHERAPY PLANNING
    • 用于BNCT放射治疗计划的剂量掩蔽功能
    • WO9920169A3
    • 1999-07-01
    • PCT/US9822579
    • 1998-10-23
    • LOCKHEED MARTIN IDAHO TECH CO
    • COOK JEREMY LWESSOL DANIEL EWHEELER FLOYD J
    • A61N5/10G06F19/00A61B5/05
    • A61N5/1031A61N5/1042A61N2005/109G16H50/50
    • A system for displaying (8) an accurate model of isodoses to be used in radiotherapy so that appropriate planning can be performed prior to actual treatment on a patient. The nature of the simulation of the radiotherapy planning for BNCT and Fast Neutron Therapy, etc., requires that the doses be computed in the entire volume. The "entire volume" includes the patient and beam geometries as well as the air spaces in between. Isodoses derived from the computed doses will therefore extend into the air regions between the patient and beam geometries and thus depict the unrealistic possibility that radiation deposition occurs in regions containing no physical media. This problem is solved by computing the doses for the entire geometry and then masking the physical and air regions along with the isodose contours (24) superimposed over the patient image (12) at the corresponding plane. The user is thus able to mask out (remove) the contour lines (26) from the unwanted areas of the image (12) by selecting the appropriate contour masking region from the raster image (44).
    • 用于显示(8)用于放射治疗的准确的等剂量模型的系统,以便在对患者进行实际治疗之前进行适当的规划。 BNCT和快速中子治疗等的放射治疗计划模拟的性质要求在整个体积中计算剂量。 “整个体积”包括患者和梁的几何形状以及两者之间的空气间隙。 因此,从计算出的剂量得出的等同物将延伸到患者和血管几何之间的空气区域,因此描绘了在不含物理介质的区域内发生辐射沉积的不切实际的可能性。 通过计算整个几何形状的剂量,然后将物理和空气区域与在相应平面上叠加在患者图像(12)上的等剂量等值线(24)一起被掩盖来解决该问题。 因此,用户能够通过从光栅图像(44)中选择适当的轮廓掩蔽区,来遮蔽(图形)图形(12)的不需要的区域(26)。