Bari Vlasta, Cairo Beatrice, Vaini Emanuele, Maria Beatrice De, Tonon Davide, Rossato Gianluca, Faes Luca, Porta Alberto
Annu Int Conf IEEE Eng Med Biol Soc. 2019 Jul;2019:2003-2006. doi: 10.1109/EMBC.2019.8856288.
The coupling and latency between heart period (HP) and systolic arterial pressure (SAP) variability can be investigated along the two arms of the HP-SAP closed loop, namely along the baroreflex feedback from SAP to HP, and along the feedforward pathway from HP to SAP. This study investigates the HP-SAP closed loop variability interactions through cross-correlation function (CCF). Coupling strength and delay between HP and SAP variability series were monitored in 13 subjects prone to develop orthostatic syncope (SYNC, 28±9 yrs, 5 males) and in 13 subjects with no history of postural syncope (noSYNC, age: 27±8 yrs, 5 males). Analysis was carried out at rest in supine position (REST) and during head-up tilt (TILT) at 60 degrees. The null hypothesis of HP-SAP uncoupling was tested through a surrogate analysis associating the HP series of a subject with a SAP sequence of a different one. Results showed that during TILT the coupling strength increased along the baroreflex and latency augmented along the mechanical feedforward pathway exclusively in noSYNC subjects. Finally, closed loop HP-SAP interactions were detected in about one third of subjects and the situation of full uncoupling was rarely found. CCF analysis was found to be a straightforward and easily applicable method to investigate HP-SAP control deserving a direct comparison with more sophisticated signal processing tools assessing causality.
可以沿着心动周期(HP)-收缩期动脉压(SAP)闭环的两个分支来研究HP与SAP变异性之间的耦合和延迟,即沿着从SAP到HP的压力反射反馈以及从HP到SAP的前馈通路。本研究通过互相关函数(CCF)来研究HP-SAP闭环变异性相互作用。在13名易发生直立性晕厥的受试者(SYNC组,28±9岁,5名男性)和13名无姿势性晕厥病史的受试者(noSYNC组,年龄:27±8岁,5名男性)中监测HP和SAP变异性序列之间的耦合强度和延迟。分析在仰卧位静息状态(REST)以及60度头高位倾斜(TILT)期间进行。通过将一名受试者的HP序列与另一名受试者的SAP序列相关联的替代分析来检验HP-SAP解耦的零假设。结果显示,在TILT期间,仅在noSYNC组受试者中,沿着压力反射的耦合强度增加,而沿着机械前馈通路的延迟增加。最后,在约三分之一的受试者中检测到闭环HP-SAP相互作用,而完全解耦的情况很少见。发现CCF分析是一种直接且易于应用的方法,可用于研究HP-SAP控制,值得与评估因果关系的更复杂信号处理工具进行直接比较。