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首页> 外文期刊>British Journal of Radiology >Validation of correction methods for the non-linear response of digital radiography systems.
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Validation of correction methods for the non-linear response of digital radiography systems.

机译:数字射线照相系统非线性响应校正方法的验证。

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摘要

Standard deviation is used as a measure of noise in digital images for quality control. For systems that have a non-linear response between pixel value and air kerma, the standard deviation of the pixel values will not be meaningful unless the image data is linearized using the response function of the system. Two methods are compared for estimating standard deviation without linearizing the image data. Method A estimates the true standard deviation by subtracting the corrected mean pixel value from the corrected sum of the mean pixel value and pixel standard deviation. Method B divides the pixel standard deviation by the point gradient of the response curve. The methods were tested using a range of digital radiographical systems with different response functions between pixel values and air kerma. The aim of this work was to measure the standard deviation and compare the accuracy of the two methods over a wide range of exposures. Both methods are easy to apply and require only basic software. Method A is considered satisfactory for routine quality assurance, as the error is generally <1%; however, the errors increase with reducing air kerma. Method B normally produces errors <0.2%. At low air kerma, the measured errors are up to 8% and 2% for Methods A and B, respectively. Method B is robust over a wide range of air kerma and is easily implemented.
机译:标准偏差用作质量控制中数字图像中噪声的度量。对于在像素值和空气比释动能之间具有非线性响应的系统,除非使用系统的响应函数将图像数据线性化,否则像素值的标准偏差将无意义。比较了两种估计标准偏差而不线性化图像数据的方法。方法A通过从平均像素值和像素标准偏差的校正后的总和中减去校正后的平均像素值来估计真实标准偏差。方法B将像素标准偏差除以响应曲线的点梯度。使用一系列数字射线照相系统测试了这些方法,这些系统在像素值和空气比释动能之间具有不同的响应函数。这项工作的目的是测量标准偏差并比较两种方法在宽范围曝光下的准确性。两种方法都易于应用,只需要基本软件。方法A被认为对于常规质量保证是令人满意的,因为误差通常小于1%。但是,随着空气比释动能的降低,误差会增加。方法B通常会产生<0.2%的误差。在较低的空气比释动能下,方法A和方法B的测量误差分别高达8%和2%。方法B在宽范围的空气比释动能方面具有鲁棒性,并且易于实施。

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