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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Optimal computed tomography data acquisition techniques and filter selection for detection of small density variations
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Optimal computed tomography data acquisition techniques and filter selection for detection of small density variations

机译:最佳计算机断层扫描数据采集技术和过滤器选择,用于检测微小的密度变化

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摘要

Accurately measuring small relative density variations within the interior of an object using computed tomography requires special considerations. Data acquisition techniques and filtering must be optimized as a whole to obtain optimal results. It is shown that using the filtered back-projection reconstruction algorithm, a combination of oversampling, 360-degree data acquisition, data averaging, and a common reconstruction filter can substantially improve image quality. The effect of each of these techniques on image quality is documented with extensive simulations. Images from reconstructions of data obtained from a computed tomography system are presented and analyzed to support the results of the simulations.
机译:使用计算机断层扫描准确测量物体内部较小的相对密度变化需要特殊考虑。整体上必须优化数据采集技术和过滤以获得最佳结果。结果表明,使用滤波后的反投影重建算法,过采样,360度数据采集,数据平均和通用重建滤波器的组合可以显着提高图像质量。大量的模拟记录了每种技术对图像质量的影响。呈现并分析了从计算机断层摄影系统获得的数据的重建图像,以支持模拟结果。

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