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CT Image Reconstruction on Intel Larrabee using Half Precision Floating-Point Values

机译:使用半精密浮点值Intel Larrabee的CT图像重建

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Computed tomography is a highly quantitative modality where the data values processed are of a high dynamic range and therefore computing CT images requires high accuracy and high precision during all processing steps. Nevertheless, memory bandwidth is one of the major bottlenecks in today's reconstruction algorithms and it would speed up the reconstruction process to represent a datum with only 16 bit instead of 32 bit. Intel's new Larrabee x86 architecture offers a promising processing of the half precision floating-point value that has the potential to be useful for CT image reconstruction. This study evaluates the image quality of CT image reconstruction based on such half values and compares the results to the standard case of using float values. Our findings are that it is possible to apply half precision data for rawdata and reconstructed volume if some conditions hold.
机译:计算机断层扫描是一种高度定量的模态,其中处理的数据值是高动态范围,因此计算CT图像在所有处理步骤期间需要高精度和高精度。尽管如此,内存带宽是当今重建算法中的主要瓶颈之一,它将加快重建过程,表示只有16位而不是32位的基准。英特尔新的Larrabee X86架构提供了有希望的半精密浮点值的加工,具有对CT图像重建有用的可能性。本研究评估基于这样的一半值的CT图像重建的图像质量,并将结果与​​使用浮点值的标准情况进行比较。我们的调查结果是,如果某些条件保持,则可以为Rawdata应用半精度数据和重建的体积。

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