Bharath Anil Anthony, Ng Jeffrey
Department of Bioengineering, Imperial College, London SW7 2AZ, UK.
IEEE Trans Image Process. 2005 Jul;14(7):948-59. doi: 10.1109/tip.2005.849295.
This work addresses the design of a novel complex steerable wavelet construction, the generation of transform-space feature measurements associated with corner and edge presence and orientation properties, and the application of these measurements directly to image denoising. The decomposition uses pairs of bandpass filters that display symmetry and antisymmetry about a steerable axis of orientation. While the angular characterization of the bandpass filters is similar to those previously described, the radial characteristic is new, as is the manner of constructing the interpolation functions for steering. The complex filters have been engineered into a multirate system, providing a synthesis and analysis subband filtering system with good reconstruction properties. Although the performance of our proposed denoising strategy is currently below that of recently reported state-of-the-art techniques in denoising, it does compare favorably with wavelet coring approaches employing global thresholds and with an "Oracle" shrinkage technique, and presents a very promising avenue for exploring structure-based denoising in the wavelet domain.
这项工作涉及一种新型复杂可控小波结构的设计、与角点和边缘的存在及方向特性相关的变换空间特征测量的生成,以及这些测量在图像去噪中的直接应用。分解使用了一对带通滤波器,它们关于一个可控方向轴显示出对称性和反对称性。虽然带通滤波器的角度特性与之前描述的类似,但其径向特性是新的,用于控制的插值函数的构建方式也是新的。复数滤波器已被设计成一个多速率系统,提供了一个具有良好重构特性的合成与分析子带滤波系统。尽管我们提出的去噪策略目前的性能低于最近报道的去噪领域的先进技术,但它确实优于采用全局阈值的小波收缩方法和“神谕”收缩技术,并且为探索小波域中基于结构的去噪提供了一个非常有前景的途径。