Department of Anesthesiology, Taipei Veteran General Hospital, Taipei, Taiwan.
Department of Thoracic Medicine, Chang Gung Memorial Hospital, Chang Gung University, College of Medicine, Taipei, Taiwan.
PLoS One. 2019 Sep 9;14(9):e0221319. doi: 10.1371/journal.pone.0221319. eCollection 2019.
It is increasingly popular to collect as much data as possible in the hospital setting from clinical monitors for research purposes. However, in this setup the data calibration issue is often not discussed and, rather, implicitly assumed, while the clinical monitors might not be designed for the data analysis purpose. We hypothesize that this calibration issue for a secondary analysis may become an important source of artifacts in patient monitor data. We test an off-the-shelf integrated photoplethysmography (PPG) and electrocardiogram (ECG) monitoring device for its ability to yield a reliable pulse transit time (PTT) signal.
This is a retrospective clinical study using two databases: one containing 35 subjects who underwent laparoscopic cholecystectomy, another containing 22 subjects who underwent spontaneous breathing test in the intensive care unit. All data sets include recordings of PPG and ECG using a commonly deployed patient monitor. We calculated the PTT signal offline.
We report a novel constant oscillatory pattern in the PTT signal and identify this pattern as a sawtooth artifact. We apply an approach based on the de-shape method to visualize, quantify and validate this sawtooth artifact.
The PPG and ECG signals not designed for the PTT evaluation may contain unwanted artifacts. The PTT signal should be calibrated before analysis to avoid erroneous interpretation of its physiological meaning.
越来越流行的在医院环境中从临床监护仪收集尽可能多的数据用于研究目的。然而,在这种设置中,数据校准问题通常没有被讨论,而是被隐含地假设,而临床监护仪可能不是为数据分析目的而设计的。我们假设,对于二次分析,这个校准问题可能成为患者监护仪数据中伪影的一个重要来源。我们测试了一款现成的集成光体积描记法(PPG)和心电图(ECG)监测设备,以评估其产生可靠的脉搏传输时间(PTT)信号的能力。
这是一项回顾性临床研究,使用了两个数据库:一个包含 35 名接受腹腔镜胆囊切除术的受试者,另一个包含 22 名在重症监护病房进行自主呼吸试验的受试者。所有数据集均包括使用常用患者监护仪记录的 PPG 和 ECG。我们在线下计算 PTT 信号。
我们报告了 PTT 信号中一种新颖的恒定振荡模式,并将其识别为锯齿伪影。我们应用基于去形方法的方法来可视化、量化和验证这种锯齿伪影。
未设计用于 PTT 评估的 PPG 和 ECG 信号可能包含不需要的伪影。在进行分析之前,PTT 信号应进行校准,以避免对其生理意义的错误解释。