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Effects of image resolution and noise on estimating the fractal dimension of tissue specimens

机译:图像分辨率和噪声对估计组织标本的分形维数的影响

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OBJECTIVE: To investigate the effects of imaging system noise and resolution on the ability to estimate and distinguish relative differences in the fractal dimension of tissue specimens. STUDY DESIGN: Mathematically derived test images of known fractal dimension mimicking the complexity of epithelial morphology were created. The box-counting method was used to compute fractal dimension. To study the effects of resolution on fractal dimension, the test images were convolved with Gaussian point spread functions (PSF), and effects of noise were studied by adding Poisson and Gaussian noise. Application of these findings was illustrated by measuring the resolution and noise for a typical optical microscope and digital camera (OMDC) system. RESULTS: Poor spatial resolution reduces the fractal dimension and has an increased adverse effect on higher dimensions. Fractal dimension can be estimated within 7% of the true dimension, and relative differences of 0.1 between dimensions are distinguishable provided the PSF of an imaging system has a full-width-at-half- maximum ≤4 pixels and the contrast-to-noise ratio >15. These conditions were satisfied by our OMDC. CONCLUSION: Effects of noise and resolution from a typical OMDC system do not significantly inhibit the ability to estimate and distinguish relative differences in the fractal dimension of tissue specimens.
机译:目的:研究成像系统的噪声和分辨率对估计和区分组织标本的分形维数相对差异的能力的影响。研究设计:创建可模拟上皮形态复杂性的已知分形维数的数学衍生测试图像。盒计数法用于计算分形维数。为了研究分辨率对分形维数的影响,将测试图像与高斯点扩展函数(PSF)进行卷积,并通过添加泊松和高斯噪声来研究噪声的影响。通过测量典型光学显微镜和数码相机(OMDC)系统的分辨率和噪声来说明这些发现的应用。结果:较差的空间分辨率降低了分形维数,并且对高维数的不利影响增加。分形维数可估计为真实维数的7%之内,并且如果成像系统的PSF的半角全宽最大≤4个像素且对比度与噪声的比值可以区分,则维之间的相对差异为0.1。比> 15。我们的OMDC满足了这些条件。结论:典型OMDC系统的噪声和分辨率影响并未显着抑制估计和区分组织标本的分形维数的相对差异的能力。

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