Noble D, Noble S J
Proc R Soc Lond B Biol Sci. 1984 Sep 22;222(1228):295-304. doi: 10.1098/rspb.1984.0065.
DiFrancesco & Noble's (1984) equations (Phil. Trans. R. Soc. Lond. B (in the press.] have been modified to apply to the mammalian sino-atrial node. The modifications are based on recent experimental work. The modified equations successfully reproduce action potential and pacemaker activity in the node. Slightly different versions have been developed for peripheral regions that show a maximum diastolic potential near --75 mV and for central regions that do not hyperpolarize beyond --60 to --65 mV. Variations in extracellular potassium influence the frequency of pacemaker activity in the s.a. node model very much less than they do in the Purkinje fibre model. This corresponds well to the experimental observation that the node is less sensitive to external [K] than are Purkinje fibres. Activation of the Na-K exchange pump in the model by increasing intracellular sodium can suppress pacemaker activity. This phenomenon may contribute to the mechanism of overdrive suppression.
迪弗朗切斯科和诺布尔(1984年)的方程(《英国皇家学会会报B》(即将发表))已被修改以适用于哺乳动物的窦房结。这些修改基于近期的实验工作。修改后的方程成功再现了窦房结中的动作电位和起搏活动。针对舒张期最大电位接近-75 mV的外周区域以及超极化不超过-60至-65 mV的中央区域,开发了略有不同的版本。细胞外钾的变化对窦房结模型中起搏活动频率的影响远小于对浦肯野纤维模型的影响。这与实验观察结果非常吻合,即窦房结对外部[K]的敏感性低于浦肯野纤维。通过增加细胞内钠来激活模型中的钠钾交换泵可以抑制起搏活动。这种现象可能有助于超速抑制机制。