Tai S C
Institute of Electrical Engineering, National Cheng-Kung University, Tainan, Taiwan, Republic of China.
Med Biol Eng Comput. 1992 Nov;30(6):584-90. doi: 10.1007/BF02446789.
An ECG sampled at a rate of 360, 500 samples s-1 or more produces a large amount of redundant data that are difficult to store and transmit. A process is therefore required to represent the signals with clinically acceptable fidelity and with the least code bits possible. In the paper, a real-time ECG data compressing algorithm, CORNER, is presented. CORNER is an efficient algorithm which locates significant samples and at the same time encodes the linear segments between them using linear interpolation. The samples selected include, but are not limited to, the samples that are significantly displaced from the encoded signal such that the allowed maximum error is limited to a constant epsilon which is specified by the users. The way in which CORNER computes the displacement of a sample from the encoded signal guarantees that the high activity regions are more accurately coded. The results are compared with those of the well known data compression algorithm, AZTEC, which is also a real-time algorithm. It is found that, under the same bit rate, a considerable improvement of the signal-to-noise ratio (SNR) and root mean square error (RMSerr) can be achieved by employing the proposed CORNER algorithm. An average value of SNR (RMSerr) of 27.0 dB (5.668) can be achieved even at an average bit rate of 0.79 bit sample-1 by employing CORNER, whereas the average value of SNR (RMSerr) achieved by AZTEC under the same bit rate is 16.60 dB (19.368).
以360、500样本/秒或更高的速率采样的心电图会产生大量难以存储和传输的冗余数据。因此,需要一个过程来以临床可接受的保真度和尽可能少的编码比特来表示信号。本文提出了一种实时心电图数据压缩算法CORNER。CORNER是一种高效的算法,它能定位重要样本,同时使用线性插值对它们之间的线性段进行编码。所选样本包括但不限于与编码信号有显著偏差的样本,使得允许的最大误差限制在用户指定的常数ε内。CORNER计算样本相对于编码信号的位移的方式保证了高活动区域能被更准确地编码。将结果与同样是实时算法的著名数据压缩算法AZTEC的结果进行了比较。结果发现,在相同比特率下,采用所提出的CORNER算法可以显著提高信噪比(SNR)和均方根误差(RMSerr)。即使在平均比特率为0.79比特/样本的情况下,采用CORNER算法也能实现27.0 dB(5.668)的平均信噪比(均方根误差),而在相同比特率下AZTEC实现的平均信噪比(均方根误差)为16.60 dB(19.368)。