High-Quality 3D Medical Imaging by Wavelet Filters with Reduced Coefficients Bit-Width

N. Chervyakov, P. Lyakhov, N. Nagornov, M. Valueva
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Abstract

The problem of the quantization noise effect in coefficients of discrete wavelet transform (DWT) filters for 3D medical imaging is analyzed in this paper. We proposed the coefficients quantizing method which allows reducing hardware implementation costs. We derived formulas for determining the minimum wavelet coefficients bit-width that provide high quality in terms of the peak signal-to-noise ratio of 3D medical image processing using DWT. The experiments with 3D tomographic images confirmed the accuracy of theoretical analysis results. All data are presented in the fixed-point format which allows the possibility for the efficient implementation of image denoising and compression on modern devices such as field-programmable gate arrays and application-specific integrated circuits.
基于降系数位宽小波滤波器的高质量三维医学成像
分析了三维医学成像中离散小波变换(DWT)滤波器系数的量化噪声效应问题。提出了降低硬件实现成本的系数量化方法。我们推导了确定最小小波系数位宽度的公式,这些小波系数位宽度在使用DWT处理3D医学图像的峰值信噪比方面提供了高质量。三维层析成像实验证实了理论分析结果的准确性。所有数据都以定点格式呈现,这使得在现场可编程门阵列和特定应用集成电路等现代设备上有效实现图像去噪和压缩成为可能。
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