Senapati Ranjan K, Prasad P M K, Swain Gandharba, Shankar T N
Department of ECE, K L University, Vaddeswaram, Guntur, Andhra Pradesh 522502 India.
GMR Institute of Technology, Rajam, Srikakulam, 532127 India.
Springerplus. 2016 Dec 20;5(1):2100. doi: 10.1186/s40064-016-3784-y. eCollection 2016.
This paper presents a listless variant of a modified three-dimensional (3D)-block coding algorithm suitable for medical image compression. A higher degree of correlation is achieved by using a 3D hybrid transform. The 3D hybrid transform is performed by a wavelet transform in the spatial dimension and a Karhunen-Loueve transform in the spectral dimension. The 3D transformed coefficients are arranged in a one-dimensional (1D) fashion, as in the hierarchical nature of the wavelet-coefficient distribution strategy. A novel listless block coding algorithm is applied to the mapped 1D coefficients which encode in an ordered-bit-plane fashion. The algorithm originates from the most significant bit plane and terminates at the least significant bit plane to generate an embedded bit stream, as in 3D-SPIHT. The proposed algorithm is called 3D hierarchical listless block (3D-HLCK), which exhibits better compression performance than that exhibited by 3D-SPIHT. Further, it is highly competitive with some of the state-of-the-art 3D wavelet coders for a wide range of bit rates for magnetic resonance, digital imaging and communication in medicine and angiogram images. 3D-HLCK provides rate and resolution scalability similar to those provided by 3D-SPIHT and 3D-SPECK. In addition, a significant memory reduction is achieved owing to the listless nature of 3D-HLCK.
本文提出了一种适用于医学图像压缩的改进型三维(3D)块编码算法的无表变体。通过使用三维混合变换实现了更高程度的相关性。三维混合变换在空间维度上由小波变换执行,在频谱维度上由卡尔胡宁-洛伊夫变换执行。如在小波系数分布策略的分层性质中一样,三维变换系数以一维(1D)方式排列。一种新颖的无表块编码算法应用于映射后的一维系数,该算法以有序比特平面方式进行编码。该算法从最高有效比特平面开始,在最低有效比特平面结束以生成嵌入式比特流,如同在3D - SPIHT中一样。所提出的算法称为三维分层无表块(3D - HLCK),其压缩性能优于3D - SPIHT。此外,在磁共振、医学数字成像和通信以及血管造影图像的广泛比特率范围内,它与一些最先进的三维小波编码器具有高度竞争力。3D - HLCK提供了与3D - SPIHT和3D - SPECK类似的速率和分辨率可扩展性。此外,由于3D - HLCK的无表特性,显著减少了内存占用。