Faculty of Medical Sciences and Technologies, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Biomedical Signal and Image Processing Laboratory (BiSIPL), School of Electrical Engineering, Sharif University of Technology, Tehran, Iran.
Ann Biomed Eng. 2021 Sep;49(9):2159-2169. doi: 10.1007/s10439-021-02732-z. Epub 2021 Feb 26.
Apnea-bradycardia (AB) is a common complication in prematurely born infants, which is associated with reduced survival and neurodevelopmental outcomes. Thus, early detection or predication of AB episodes is critical for initiating preventive interventions. To develop automatic real-time operating systems for early detection of AB, recent advances in signal processing can be employed. Hidden Markov Models (HMM) are probabilistic models with the ability of learning different dynamics of the real time-series such as clinical recordings. In this study, a hierarchy of HMMs named as layered HMM was presented to detect AB episodes from pre-processed single-channel Electrocardiography (ECG). For training the hierarchical structure, RR interval, and width of QRS complex were extracted from ECG as observations. The recordings of 32 premature infants with median 31.2 (29.7, 31.9) weeks of gestation were used for this study. The performance of the proposed layered HMM was evaluated in detecting AB. The best average accuracy of 97.14 ± 0.31% with detection delay of - 5.05 ± 0.41 s was achieved. The results show that layered structure can improve the performance of the detection system in early detecting of AB episodes. Such system can be incorporated for more robust long-term monitoring of preterm infants.
呼吸暂停-心动过缓(AB)是早产儿的常见并发症,与存活率和神经发育结局降低有关。因此,AB 发作的早期检测或预测对于启动预防干预至关重要。为了开发用于 AB 早期检测的自动实时操作系统,可以利用信号处理的最新进展。隐马尔可夫模型(HMM)是具有学习实时序列不同动态能力的概率模型,例如临床记录。在这项研究中,提出了一种名为分层 HMM 的 HMM 层次结构,用于从预处理的单通道心电图(ECG)中检测 AB 发作。为了训练分层结构,从 ECG 中提取 RR 间隔和 QRS 复合体的宽度作为观察值。这项研究使用了 32 名胎龄中位数为 31.2(29.7,31.9)周的早产儿的记录。评估了所提出的分层 HMM 在检测 AB 中的性能。最佳平均准确率为 97.14±0.31%,检测延迟为-5.05±0.41 s。结果表明,分层结构可以提高检测系统在 AB 发作早期检测中的性能。这样的系统可以被纳入更稳健的早产儿长期监测中。