Kazmi Syed Zaki Hassan, Zhang Henggui, Aziz Wajid, Monfredi Oliver, Abbas Syed Ali, Shah Saeed Arif, Kazmi Syeda Sobia Hassan, Butt Wasi Haider
School of Physics & Astronomy, University of Manchester, Manchester, United Kingdom.
Department of CS&IT, University of Azad Jammu and Kashmir, Muzaffarabad, Pakistan.
PLoS One. 2016 Jun 23;11(6):e0157557. doi: 10.1371/journal.pone.0157557. eCollection 2016.
The dynamical fluctuations in the rhythms of biological systems provide valuable information about the underlying functioning of these systems. During the past few decades analysis of cardiac function based on the heart rate variability (HRV; variation in R wave to R wave intervals) has attracted great attention, resulting in more than 17000-publications (PubMed list). However, it is still controversial about the underling mechanisms of HRV. In this study, we performed both linear (time domain and frequency domain) and nonlinear analysis of HRV data acquired from humans and animals to identify the relationship between HRV and heart rate (HR). The HRV data consists of the following groups: (a) human normal sinus rhythm (n = 72); (b) human congestive heart failure (n = 44); (c) rabbit sinoatrial node cells (SANC; n = 67); (d) conscious rat (n = 11). In both human and animal data at variant pathological conditions, both linear and nonlinear analysis techniques showed an inverse correlation between HRV and HR, supporting the concept that HRV is dependent on HR, and therefore, HRV cannot be used in an ordinary manner to analyse autonomic nerve activity of a heart.
生物系统节律中的动态波动为这些系统的潜在功能提供了有价值的信息。在过去几十年中,基于心率变异性(HRV;R波到R波间期的变化)对心脏功能进行分析受到了极大关注,产生了超过17000篇出版物(PubMed列表)。然而,关于HRV的潜在机制仍存在争议。在本研究中,我们对从人类和动物获取的HRV数据进行了线性(时域和频域)和非线性分析,以确定HRV与心率(HR)之间的关系。HRV数据包括以下几组:(a)人类正常窦性心律(n = 72);(b)人类充血性心力衰竭(n = 44);(c)兔窦房结细胞(SANC;n = 67);(d)清醒大鼠(n = 11)。在人类和动物处于不同病理状态的数据中,线性和非线性分析技术均显示HRV与HR呈负相关,支持了HRV依赖于HR的概念,因此,HRV不能以常规方式用于分析心脏的自主神经活动。