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Real-Time Lossless Compression Algorithm for Ultrasound Data Using BL Universal Code

机译:使用BL通用代码的超声数据实时无损压缩算法

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摘要

Software-based ultrasound imaging systems provide high flexibility that allows easy and fast adoption of newly developed algorithms. However, the extremely high data rate required for data transfer from sensors (e.g., transducers) to the ultrasound imaging systems is a major bottleneck in the software-based architecture, especially in the context of real-time imaging. To overcome this limitation, in this paper, we present a Binary cLuster (BL) code, which yields an improved compression ratio compared to the exponential Golomb code. Owing to the real-time encoding/decoding features without overheads, the universal code is a good solution to reduce the data transfer rate for software-based ultrasound imaging. The performance of the proposed method was evaluated using in vitro and in vivo data sets. It was demonstrated that the BL-beta code has a good stable lossless compression performance of 20%~30% while requiring no auxiliary memory or storage.
机译:基于软件的超声成像系统具有很高的灵活性,可以轻松,快速地采用新开发的算法。但是,从传感器(例如,换能器)到超声成像系统的数据传输所需的极高数据速率是基于软件的体系结构中的主要瓶颈,尤其是在实时成像的情况下。为了克服此限制,在本文中,我们提出了一种二进制cLuster(BL)代码,与指数Golomb代码相比,该代码产生了改进的压缩率。由于没有开销的实时编码/解码功能,通用代码是降低基于软件的超声成像的数据传输速率的良好解决方案。使用体外和体内数据集评估了所提出方法的性能。证明了BL-beta码具有20%〜30%的良好稳定的无损压缩性能,而无需辅助存储器或存储。

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