Sun Y, Suppappola S, Wrublewski T A
Department of Electrical Engineering, University of Rhode Island, Kingston 02881.
Biomed Instrum Technol. 1992 Nov-Dec;26(6):477-84.
The authors describe the design of a system for real-time detection of QRS complexes in the electrocardiogram based on a single-chip microcontroller (Motorola 68HC811). A systematic analysis of the instrumentation requirements for QRS detection and of the various design techniques is also given. Detection algorithms using different nonlinear transforms for the enhancement of QRS complexes are evaluated by using the ECG database of the American Heart Association. The results show that the nonlinear transform involving multiplication of three adjacent, sign-consistent differences in the time domain gives a good performance and a quick response. When implemented with an appropriate sampling rate, this algorithm is also capable of rejecting pacemaker spikes. The eight-bit single-chip microcontroller provides sufficient throughput and shows a satisfactory performance. Implementation of multiple detection algorithms in the same system improves flexibility and reliability. The low chip count in the design also favors maintainability and cost-effectiveness.
作者描述了一种基于单片机(摩托罗拉68HC811)的心电图QRS复合波实时检测系统的设计。文中还对QRS检测的仪器要求和各种设计技术进行了系统分析。利用美国心脏协会的心电图数据库,对使用不同非线性变换来增强QRS复合波的检测算法进行了评估。结果表明,在时域中对三个相邻、符号一致的差值进行乘法运算的非线性变换具有良好的性能和快速响应。以适当的采样率实现时,该算法也能够抑制起搏器尖峰。八位单片机提供了足够的吞吐量,并表现出令人满意的性能。在同一系统中实现多种检测算法可提高灵活性和可靠性。设计中芯片数量少也有利于可维护性和成本效益。