首页> 外文会议>2010 IEEE Nuclear Science Symposium : Conference Record >Noninvasive method for determining the three-dimensional density distribution in an inspected object employing modulation of compton-scattered gamma signals
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Noninvasive method for determining the three-dimensional density distribution in an inspected object employing modulation of compton-scattered gamma signals

机译:利用康普顿散射伽马信号调制确定被检物体中三维密度分布的无创方法

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A noninvasive measurement of the three-dimensional density distribution within an object is accomplished using a spectrometer to detect Compton-scattered photons from the inspected object that is irradiated by mono-energetic gammas from an isotopic source. This analysis describes the use of sets of virtual isogonic arcs and shells that, based on the Compton Scattering Law, represent the loci of scattering points having a common value of energy of scattered gammas-and that engulf the inspected object. A single-frequency electronic modulation on the voltage set points for each of the multi-channel analyzer energy bins allows modulation of these virtual isogonic surfaces within the inspected object to encode the scattered gamma flux from each voxel. Decoding of the detected gamma data is accomplished by multiplying it by electronic signals having frequencies identical to the voxel modulation frequencies. This is followed by integration and solution of a set of linear algebraic equations to produce an image of the density field.
机译:使用分光计对来自被检查物体的康普顿散射光子进行检测,该无损测量是对物体内部三维密度分布的无创测量,该光子是由来自同位素源的单能伽马射线辐照的。此分析描述了基于康普顿散射定律的虚拟等距弧和壳集的使用,这些弧和壳代表了具有共同的散射伽马能量值的散射点的轨迹,并吞没了被检查物体。对每个多通道分析仪能量仓的电压设置点进行单频电子调制,可以对被检查对象内的这些虚拟等张面进行调制,以对来自每个体素的散射伽马通量进行编码。通过将检测到的伽马数据乘以频率与体素调制频率相同的电子信号来完成对它的解码。接下来是一组线性代数方程的积分和求解,以产生密度场的图像。

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