Department of Information Engineering, Research Centre E. Piaggio, University of Pisa, Via G. Caruso 16, Pisa, Italy.
BSICoS Group, Aragón Institute of Engineering Research (I3A), IIS Aragón, University of Zaragoza, Zaragoza, Spain.
Med Biol Eng Comput. 2020 May;58(5):1099-1112. doi: 10.1007/s11517-019-02095-7. Epub 2020 Mar 11.
The application of Poincaré plot analysis to characterize inter-beat interval dynamics has been successfully proposed in the scientific literature for the assessment of humans' physiological states and related aberrations. In this study, we proposed novel descriptors to trace the evolution of Poincaré plot shape over the lags. Their reliability in ultra-short cardiovascular series analysis was validated on synthetic inter-beat series generated through a physiologically plausible integral pulse frequency modulation model. Furthermore, we used the proposed approach for the investigation of the direct relationship between autonomic nervous system (ANS) dynamics and hedonic olfactory elicitation, in a group of 30 healthy subjects. Participants with a similar olfactory threshold were selected, and were asked to score 5-s stimuli in terms of arousal and valence levels according to the Russell's circumflex model of affect. Their ANS response was investigated in 35-s windows after the elicitation. Experimental results showed a gender-specific, high discriminant power of the proposed approach, discerning between pleasant and unpleasant odorants with an accuracy of 83.33% and 73.33% for men and for women, respectively. Graphical Abstract Olfaction plays a crucial role in our life and is strictly related to the Autonomic Nervous System (ANS) activity, which can be monitored studying Heart Rate Variability. We used the Lagged Poincare Plot approach to recognize gender-specific ANS response in 35-second windows after the elicitation through pleasant/unpleasant odorants.
Poincaré 图分析在描述心动间隔动力学方面的应用已在科学文献中成功提出,用于评估人类的生理状态和相关异常。在这项研究中,我们提出了新的描述符来跟踪滞后时 Poincaré 图形状的演变。它们在超短心血管系列分析中的可靠性已通过基于生理上合理的积分脉冲频率调制模型生成的合成心动间隔系列得到验证。此外,我们使用所提出的方法研究了自主神经系统 (ANS) 动力学与愉悦嗅觉诱发之间的直接关系,涉及 30 名健康受试者。选择具有相似嗅觉阈值的参与者,并根据 Russell 的情感循环模型,根据唤醒和愉悦水平对 5 秒刺激进行评分。在诱发后 35 秒的窗口中研究了他们的 ANS 反应。实验结果显示,所提出的方法具有性别特异性的高判别能力,能够区分令人愉悦和不愉快的气味,男性和女性的准确率分别为 83.33%和 73.33%。