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An FPGA-based system for real-time electrocardiographic detection of STEMI

机译:基于FPGA的STEMI实时心电图检测系统

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Computerized interpretation of the electrocardiogram (ECG) is increasingly used to assist clinician experts to reduce times to reperfusion for patients suspected of ST-segment elevation myocardial infarction (STEMI). In this context, we have developed a system based on Field Programmable Gate Array (FPGA) for automatic detection of STEMI, using the MicroBlaze soft processor from Xilinx. More particularly, this work aims the implementation of an efficient knowledge-based 4-step algorithm for STEMI diagnosis, using the 12-lead ECG. We have used the Nexys 3 board from Digilent as development tool, and different ECG databases from Physiobank, containing the conventional 12-lead ECG. The implementation performance was tested mainly with 8 records of 12-lead ECG, i.e. 96 ECG signals, providing a sensitivity of 62.5%, with a QRS detection reaching an accuracy of 99.41%. The implementation occupied 97% of the slices of the used FPGA, namely the Spartan 6 XC6SLX16 from Xilinx. To our knowledge, this successful FPGA-based implementation for STEMI detection is novel and authentic.
机译:心电图(ECG)的计算机化解释越来越多地用于帮助临床专家减少疑似ST段抬高型心肌梗塞(STEMI)患者的再灌注时间。在这种情况下,我们使用Xilinx的MicroBlaze软处理器开发了基于现场可编程门阵列(FPGA)的系统,用于自动检测STEMI。更具体地说,这项工作旨在使用12导联心电图实现基于效率的基于知识的4步STEMI诊断算法。我们已使用Digilent的Nexys 3开发板作为开发工具,并使用了Physiobank的不同ECG数据库,其中包含常规的12导联ECG。主要对8项12导联心电图记录的执行性能进行了测试,即96个心电图信号,提供了62.5%的灵敏度,QRS检测达到了99.41%的准确性。该实现占用了所用FPGA的97%的切片,即Xilinx的Spartan 6 XC6SLX16。据我们所知,这种成功的基于FPGA的STEMI检测实现是新颖而可靠的。

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