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首页> 外文期刊>Journal of medical engineering & technology >Optimization of block size for DCT-based medical image compression.
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Optimization of block size for DCT-based medical image compression.

机译:基于DCT的医学图像压缩的块大小优化。

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摘要

In view of the increasing importance of medical imaging in healthcare and the large amount of image data to be transmitted/stored, the need for development of an efficient medical image compression method, which would preserve the critical diagnostic information at higher compression, is growing. Discrete cosine transform (DCT) is a popular transform used in many practical image/video compression systems because of its high compression performance and good computational efficiency. As the computational burden of full frame DCT would be heavy, the image is usually divided into non-overlapping sub-images, or blocks, for processing. This paper aims to identify the optimum size of the block, in reference to compression of CT, ultrasound and X-ray images. Three conflicting requirements are considered, namely processing time, compression ratio and the quality of the reconstructed image. The quantitative comparison of various block sizes has been carried out on the basis of benefit-to-cost ratio (BCR) and reconstruction quality score (RQS). Experimental results are presented that verify the optimality of the 16 x 16 block size.
机译:鉴于医学成像在医疗保健中的重要性日益增加以及要传输/存储的大量图像数据,对开发有效的医学图像压缩方法的需求日益增长,该方法将关键的诊断信息保存在较高的压缩率中。离散余弦变换(DCT)由于其高压缩性能和良好的计算效率而在许多实际的图像/视频压缩系统中广泛使用。由于全帧DCT的计算负担很重,因此通常将图像分为不重叠的子图像或块以进行处理。本文旨在参考CT,超声和X射线图像的压缩来确定块的最佳尺寸。考虑了三个相互矛盾的要求,即处理时间,压缩率和重建图像的质量。已基于收益成本比(BCR)和重建质量得分(RQS)对各种块大小进行了定量比较。提出的实验结果验证了16 x 16块大小的最佳性。

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