Beckman Inst., Illinois Univ., Urbana, IL.
IEEE Trans Med Imaging. 1996;15(5):639-47. doi: 10.1109/42.538941.
Presents a new interframe coding method for medical images, in particular magnetic resonance (MR) images. Until now, attempts in using interframe redundancies for coding MR images have been unsuccessful. The authors believe that the main reason for this is twofold: unsuitable interframe estimation models and the thermal noise inherent in magnetic resonance imaging (MRI). The interframe model used here is a continuous affine mapping based on (and optimized by) deforming triangles. The inherent noise of MRI is dealt with by using a median filter within the estimation loop. The residue frames are quantized with a zero-tree wavelet coder, which includes arithmetic entropy coding. This particular method of quantization allows for progressive transmission, which aside from avoiding buffer control problems is very attractive in medical imaging applications.
提出一种新的医学图像(特别是磁共振(MR)图像)帧间编码方法。到目前为止,利用帧间冗余进行 MR 图像编码的尝试都没有成功。作者认为,造成这种情况的主要原因有两个:不合适的帧间估计模型和磁共振成像(MRI)固有的热噪声。这里使用的帧间模型是基于(并通过变形三角形进行优化)的连续仿射映射。在估计循环中使用中值滤波器处理 MRI 的固有噪声。残差帧使用零树小波编码器进行量化,其中包括算术熵编码。这种特殊的量化方法允许渐进式传输,除了避免缓冲区控制问题外,在医学成像应用中非常有吸引力。