Roth B J
Department of Physics & Astronomy, Vanderbilt University, Nashville, Tennessee 37235, USA.
J Cardiovasc Electrophysiol. 1996 Aug;7(8):722-37. doi: 10.1111/j.1540-8167.1996.tb00580.x.
Strength-interval curves are predicted for unipolar anodal and cathodal stimulation of cardiac muscle.
Cardiac tissue is represented by the bidomain model, and the active properties of the membrane are described by the Beeler-Reuter model. Two successive stimuli (S1 and S2) are delivered through a single extracellular electrode. The S2 threshold is determined as a function of the S1-S2 interval, for anodal and cathodal S2 stimuli with 2-, 5-, 10-, and 20-msec durations. Each of the resulting cathodal and anodal strength-interval curves is divided into two parts: one section corresponding to make stimulation (long intervals) and the other section corresponding to break stimulation (short intervals). Generally, the cathodal strength-interval curves are decreasing functions of interval, except for an anomalous section of the 20-msec duration cathodal curve in the interval range from 310 to 318 msec. At short intervals, the anodal strength-interval curve contains a deep dip, which is more prominent for longer S2 durations. The cathodal threshold is less than the anodal threshold for all intervals except those corresponding to the end of the refractory period.
The bidomain model predicts complex anodal and cathodal strength-interval curves, with the anodal curve containing a dip (supernormal stimulation). These results resemble the experimental observations of Dekker.
预测了心肌单极阳极和阴极刺激的强度-间期曲线。
心脏组织由双域模型表示,膜的活性特性由Beeler-Reuter模型描述。通过单个细胞外电极施加两个连续刺激(S1和S2)。对于持续时间为2、5、10和20毫秒的阳极和阴极S2刺激,将S2阈值确定为S1-S2间期的函数。由此产生的每个阴极和阳极强度-间期曲线都分为两部分:一部分对应接通刺激(长间期),另一部分对应断开刺激(短间期)。一般来说,阴极强度-间期曲线是间期的递减函数,但20毫秒持续时间的阴极曲线在310至318毫秒的间期范围内有一个异常部分除外。在短间期时,阳极强度-间期曲线有一个深凹陷,对于较长的S2持续时间更为明显。除了对应于不应期结束的间期外,所有间期的阴极阈值均低于阳极阈值。
双域模型预测了复杂的阳极和阴极强度-间期曲线,阳极曲线有一个凹陷(超常刺激)。这些结果与Dekker的实验观察结果相似。