Dexter F, Yang T, Levy M N
Department of Anesthesia, University of Iowa Hospitals, Iowa City 52242.
J Theor Biol. 1992 Dec 21;159(4):507-11. doi: 10.1016/s0022-5193(05)80694-0.
Vagal stimulation at precise times in successive cardiac cycles can elicit sinus arrhythmias. Two mechanisms have been identified that can, but do not necessarily, cause these vagally induced sinus arrhythmias. First, changes in cycle length elicited by a given concentration of acetylcholine (ACh) depend on the phase of the pacemaker cell action potential when the ACh binds to muscarinic receptors. Second, acetylcholinesterase degrades ACh rapidly enough for the mean concentration of ACh per cardiac cycle to vary from cycle to cycle. We used a mathematical model of the underlying cellular physiology, to examine whether these mechanisms are responsible for arrhythmogenesis. Computer simulation showed that both mechanisms contribute to the vagally induced sinus arrhythmias.
在连续心动周期的精确时间进行迷走神经刺激可引发窦性心律失常。已确定两种机制,它们能够(但不一定)导致这些由迷走神经引起的窦性心律失常。首先,给定浓度的乙酰胆碱(ACh)引发的心动周期长度变化取决于ACh与毒蕈碱受体结合时起搏细胞动作电位的相位。其次,乙酰胆碱酯酶降解ACh的速度足够快,以至于每个心动周期的ACh平均浓度会随周期而变化。我们使用潜在细胞生理学的数学模型来研究这些机制是否与心律失常的发生有关。计算机模拟表明,这两种机制都促成了由迷走神经引起的窦性心律失常。