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An R-peak detection method based on peaks of Shannon energy envelope

机译:基于香农能量包络峰的R峰检测方法

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In a real-time electrocardiogram (ECG) monitoring system, to detect the R-peak in each beat with low delay, high accuracy and high speed is an important and fundamental task. Aiming at satisfying these requirements, a novel R-peak detection algorithm based on Shannon energy envelope (PSEE) is introduced. It extracts Shannon energy envelope (SEE) from ECG firstly, then finds out the R-peaks after SEE by three new introduced sub-processes: peak detection, false-R detection and false-noise detection. Owing to these sub-processes, the whole schema can deal with long pause or asystole case, and avoid segmenting ECG. Moreover, by splitting the calculation into every sampling time slot, the delay is guaranteed. The new method has been evaluated with all records in MIT-BIH with 99.83% detection rate of R-peaks and about 1.77 μs computation time for each sample and with 251 records in Chinese Cardiovascular Disease Database with total accuracy 99.78%. Therefore, it not only satisfies real-time requirements but also improves the detection accuracy rate.
机译:在实时心电图(ECG)监视系统中,以低延迟,高精度和高速度检测每个心跳中的R峰是一项重要而基本的任务。为了满足这些要求,提出了一种基于香农能量包络(PSEE)的新型R峰值检测算法。它首先从ECG中提取香农能量包络(SEE),然后通过三个新引入的子过程找出SEE之后的R峰:峰值检测,假R检测和假噪声检测。由于这些子流程,整个架构可以处理长时间停顿或停搏的情况,并避免分割ECG。此外,通过将计算分为每个采样时隙,可以保证延迟。该新方法已经在MIT-BIH中进行了所有记录的评估,R峰的检测率为99.83%,每个样品的计算时间约为1.77μs,并且在中国心血管疾病数据库中有251条记录,总准确性为99.78%。因此,它不仅满足实时性要求,而且提高了检测准确率。

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