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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Real-time identification and archiving of micro-embolic Doppler signals using a knowledge-based DSP system.
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Real-time identification and archiving of micro-embolic Doppler signals using a knowledge-based DSP system.

机译:使用基于知识的DSP系统对微血栓多普勒信号进行实时识别和存档。

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摘要

Identification of micro-emboli in the cerebral circulation using transcranial Doppler ultrasound provides valuable clinical information, but, currently, embolic signal detection and analysis are significantly limited because they mainly rely on costly off-line analysis by human experts. In this study, a reliable, high-resolution, real-time automated system for the detection and archiving of embolic signals was designed and implemented using expert system theory and modern DSP technology. Preliminary tests were conducted to evaluate the functions and the performance of the system using data from ten carotid endarterectomy patients and two normal volunteers. Using the widely accepted 7 dB threshold for human reliability and a human expert, majority-decision gold standard, the real-time system reached sensitivity and specificity of 93.6% and 99.3%, respectively, which were close to the results obtained by three human experts under ideal laboratory conditions (90.1% and 99.8%, 98.4% and 99.9%, 98.9 and 99.9%). The new system has the potential to be used either as a bedside monitoring and signal acquisition device, or as a laboratory investigation tool.
机译:使用经颅多普勒超声在脑循环中鉴定微栓子可提供有价值的临床信息,但是目前,栓子信号的检测和分析受到很大限制,因为它们主要依靠人类专家进行的昂贵的离线分析。在这项研究中,使用专家系统理论和现代DSP技术设计并实现了一种可靠的高分辨率实时自动化系统,用于栓塞信号的检测和存档。使用来自十名颈动脉内膜切除术患者和两名正常志愿者的数据进行了初步测试,以评估系统的功能和性能。使用公认的人类可靠度7 dB阈值和人类专家多数决定金标准,该实时系统的灵敏度和特异性分别达到93.6%和99.3%,接近三位人类专家的结果。在理想的实验室条件下(90.1%和99.8%,98.4%和99.9%,98.9和99.9%)。新系统有可能被用作床头监测和信号采集设备,或用作实验室调查工具。

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