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首页> 外文期刊>Journal of clinical monitoring and computing >Evaluation of filtering methods for acquiring radial intra-artery blood pressure waveforms.
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Evaluation of filtering methods for acquiring radial intra-artery blood pressure waveforms.

机译:评估获取放射状动脉内血压波形的滤波方法。

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The methods for evaluating noninvasive blood pressure (NIBP) monitors using an intra-arterial reference are detailed in the ANSI/AAMI/ISO 81060-2:2009 standard. In a recent study, GE Healthcare obtained invasive radial arterial blood pressure waveforms. The work presented here describes the development of filtering strategies for obtaining high fidelity intra-arterial pressure waveforms for NIBP accuracy testing using the 81060-2 standard. The natural frequency and damping factor of each subject-catheter-transducer system was computed from fast-flush transients. These parameters were used to construct filters for removing or reducing resonance artifacts. Additionally, new optimal damping factors were evaluated for designing compensation filters. Theoretical measurement systems using actual damping factors (< 0.4) and natural frequencies were found capable of generating significant systolic resonance artifacts (≥ 8 mmHg). Typical filters that may be standardly available in monitoring equipment were observed to be potentially inadequate in removing resonance artifact. Filters with particular optimal damping factors (0.6-0.7) were effective in removing resonance artifact. Clinicians need to understand that resonance artifacts potentially exist in intra-arterial waveforms and that the adjustments of monitoring systems may not be adequate. Optimal filters for obtaining intra-arterial waveforms should take into account the damping factor and natural frequency of the measuring system. In research and device evaluation studies it is necessary that optimal filtering be done to minimize the effects of under-damping.
机译:ANSI / AAMI / ISO 81060-2:2009标准中详细介绍了使用动脉内参考评估无创血压(NIBP)监护仪的方法。在最近的一项研究中,GE Healthcare获得了侵入性radial动脉血压波形。此处介绍的工作描述了使用81060-2标准获得用于NIBP准确性测试的高保真动脉内压波形的滤波策略的发展。根据快速冲洗瞬态来计算每个主题-导管-换能器系统的固有频率和阻尼因子。这些参数用于构造用于去除或减少共振伪像的滤波器。另外,评估了用于设计补偿滤波器的新的最佳阻尼系数。发现使用实际阻尼系数(<0.4)和固有频率的理论测量系统能够产生明显的收缩期共振伪影(≥8 mmHg)。可以观察到,通常可以在监测设备中使用的典型滤波器在消除共振伪影方面可能不足够。具有最佳阻尼系数(0.6-0.7)的滤波器可有效消除共振伪影。临床医生需要了解,动脉内波形中可能存在共振伪影,并且监视系统的调整可能不够充分。用于获得动脉内波形的最佳滤波器应考虑阻尼系数和测量系统的固有频率。在研究和设备评估研究中,有必要进行最佳滤波以最小化欠阻尼的影响。

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