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    • 3. 发明申请
    • METHOD & SYSTEM FOR DETECTING NITROGENOUS MATERIALS VIA GAMMA-RESONANCE ABSORPTION (GRA)
    • 通过γ-共振吸收(GRA)检测氮化物材料的方法和系统
    • WO2008050327A2
    • 2008-05-02
    • PCT/IL2007/001275
    • 2007-10-24
    • SOREQ NUCLEAR RESEARCH CENTERGOLDBERG, MarkVARTSKY, David
    • GOLDBERG, MarkVARTSKY, David
    • G01N23/06G01V5/00
    • G01N23/095G01N2223/1013G01N2223/204G01N2223/643G01N2223/66
    • A method for detecting nitrogenous materials within an object by means of Gamma-Resonance Absorption (GRA), including placing on one side of an object a target containing 13C for bombardment with a proton beam of approximately 1.75 MeV energy, to produce a source of 9.172 MeV gamma-rays for scanning the object, reading from the gamma-ray detector the total and the non-resonant attenuations of the incident photon flux, and deriving from the attenuations the net resonant attenuation and the spatial distribution thereof; wherein scanning the object includes: I. performing a rapid pre-scan to classify the overall gamma-ray-attenuation regime and locate regions of high physical density, in which longer scanning times might be required; II. performing a full scan to identify and locate regions that contain nitrogenous materials; and III. performing a plurality of scans in same or different segments to establish presence of explosives.
    • 通过γ-共振吸收(GRA)检测物体内的含氮物质的方法,包括在物体的一侧放置包含13C的目标用于轰击约1.75MeV的质子束 能量,以产生用于扫描物体的9.172MeV伽马射线源,从伽玛射线探测器读取入射光子通量的总共振和非共振衰减,并且从衰减导出净共振衰减和空间 分发; 其中扫描所述物体包括:I.执行快速预扫描以对整个伽马射线衰减区域进行分类并且定位高物理密度的区域,其中可能需要更长的扫描时间; II。 执行全面扫描以识别和定位含有含氮物质的区域; 和三。 在相同或不同的部分进行多次扫描以确定爆炸物的存在。
    • 6. 发明申请
    • METHOD & SYSTEM FOR DETECTING NITROGENOUS MATERIALS VIA GAMMA-RESONANCE ABSORPTION (GRA)
    • 通过伽马共振吸收(GRA)检测硝酸材料的方法和系统
    • WO2008050327A3
    • 2008-07-03
    • PCT/IL2007001275
    • 2007-10-24
    • SOREQ NUCLEAR RES CTGOLDBERG MARKVARTSKY DAVID
    • GOLDBERG MARKVARTSKY DAVID
    • G01N23/06G01V5/00
    • G01N23/066G01N2223/1013G01N2223/204G01N2223/643G01N2223/66
    • A method for detecting nitrogenous materials within an object by means of Gamma-Resonance Absorption (GRA), including placing on one side of an object a target containing 13C for bombardment with a proton beam of approximately 1.75 MeV energy, to produce a source of 9.172 MeV gamma-rays for scanning the object, reading from the gamma-ray detector the total and the non-resonant attenuations of the incident photon flux, and deriving from the attenuations the net resonant attenuation and the spatial distribution thereof; wherein scanning the object includes: I. performing a rapid pre-scan to classify the overall gamma-ray-attenuation regime and locate regions of high physical density, in which longer scanning times might be required; II. performing a full scan to identify and locate regions that contain nitrogenous materials; and III. performing a plurality of scans in same or different segments to establish presence of explosives.
    • 通过伽马共振吸收(GRA)检测物体内的含氮物质的方法,包括将物体的一侧放置在含有13C的靶上,用约1.75MeV能量的质子束进行轰击以产生9.172的来源 用于扫描物体的MeV伽马射线,从伽马射线检测器读取入射光子通量的总和非共振衰减,并从衰减得出净谐振衰减及其空间分布; 其中扫描对象包括:I.执行快速预扫描以分类总体伽马射线衰减状态并定位高物理密度的区域,其中可能需要更长的扫描时间; II。 执行全面扫描以识别和定位含有含氮材料的区域; 和III。 在相同或不同的段执行多个扫描以建立爆炸物的存在。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR CANCER DETECTION
    • 用于癌症检测的系统和方法
    • WO2004041060A3
    • 2006-02-02
    • PCT/IL0300931
    • 2003-11-06
    • YEDA RES & DEVCOMMISSION SOREQ NUCLEAR RES CBRESKIN AMOSCHECHIK RACHELSHILSTEIN SANAVARTSKY DAVID
    • BRESKIN AMOSCHECHIK RACHELSHILSTEIN SANAVARTSKY DAVID
    • A61B6/00
    • A61B6/485A61B6/00A61B6/4092A61B6/4258A61B6/4488A61B6/481
    • Apparatus for non-invasive in vivo detection of a chemical element in the prostate of a subject, comprising: (a) a probe adapted for being inserted into at least one of the rectum or the urethra of the subject; (b) an irradiation system capable of exciting the chemical element to emit radiation to form emitted radiation; (c) a radiation detector located within the probe, wherein the radiation detector is capable of detecting the emitted radiation and wherein the radiation detector is suitable for mapping the emitted radiation; and (d) a signal recording, processing and displaying system for mapping the level of the chemical element in the prostate of the subject at a plurality of different points in the prostate according to the mapping of the emitted radiation. In one embodiment, the irradiation system is capable of delivering exciting radiation through the probe to the prostate; in another embodiment the emitted radiation comprises fluorescent X-ray radiation.
    • 用于非侵入性体内检测受试者前列腺中的化学元素的装置,包括:(a)适于插入所述受试者的直肠或尿道中的至少一个中的探针; (b)能够激发化学元素发射辐射以形成发射辐射的照射系统; (c)位于所述探针内的辐射探测器,其中所述辐射探测器能够检测所发射的辐射,并且其中所述辐射探测器适于映射所发射的辐射; 以及(d)信号记录,处理和显示系统,用于根据所发射的辐射的映射,在前列腺中的多个不同点处映射受试者前列腺中的化学元素的水平。 在一个实施例中,照射系统能够通过探针将激发的辐射传递给前列腺; 在另一个实施例中,所发射的辐射包括荧光X射线辐射。