Sisini Francesco, Toro Eleuterio, Gambaccini Mauro, Zamboni Paolo
Department of Physics and Earth Sciences, University of Ferrara, Via Saragat 1, Ferrara, Italy; Vascular Diseases Center, University of Ferrara, Via Aldo Moro 8, Cona, 44124 Ferrara, Italy.
Laboratory of Applied Mathematics, DICAM, University of Trento, Via Mesiano 77, 38100 Trento, Italy.
Behav Neurol. 2015;2015:170756. doi: 10.1155/2015/170756. Epub 2015 Dec 9.
The jugular venous pulse (JVP) provides valuable information about cardiac haemodynamics and filling pressures and is an indirect estimate of the central venous pressure (CVP). Recently it has been proven that JVP can be obtained by measuring the cross-sectional area (CSA) of the IJV on each sonogram of an ultrasound B-mode sonogram sequence. It has also been proven that during its pulsation the IJV is distended and hence that the pressure gradient drives the IJV haemodynamics. If this is true, then it will imply the following: (i) the blood velocity in the IJV is a periodic function of the time with period equal to the cardiac period and (ii) the instantaneous blood velocity is given by a time function that can be derived from a flow-dynamics theory that uses the instantaneous pressure gradient as a parameter. The aim of the present study is to confirm the hypothesis that JVP regulates the IJV blood flow and that pressure waves are transmitted from the heart toward the brain through the IJV wall.
颈静脉搏动(JVP)提供了有关心脏血流动力学和充盈压力的有价值信息,并且是对中心静脉压(CVP)的间接估计。最近已证明,通过在超声B型超声序列的每个超声图上测量颈内静脉(IJV)的横截面积(CSA)可以获得JVP。还已证明,在其搏动期间IJV会扩张,因此压力梯度驱动IJV血流动力学。如果这是真的,那么将意味着以下几点:(i)IJV中的血流速度是时间的周期函数,其周期等于心动周期;(ii)瞬时血流速度由一个时间函数给出,该函数可以从使用瞬时压力梯度作为参数的流体动力学理论推导得出。本研究的目的是证实以下假设:JVP调节IJV血流,并且压力波通过IJV壁从心脏向大脑传播。