首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Effects of gap junction conductance on dynamics of sinoatrial node cells: two-cell and large-scale network models
【24h】

Effects of gap junction conductance on dynamics of sinoatrial node cells: two-cell and large-scale network models

机译:间隙连接电导对窦房结细胞动力学的影响:两细胞和大规模网络模型

获取原文
获取原文并翻译 | 示例
           

摘要

A computational model of single rabbit sinoatrial (SA) node cells has been revised to fit data on regional variation of rabbit SA node cell oscillation properties. The revised model simulates differences in oscillation frequency. Maximum diastolic potential, overshoot potential, and peak upstroke velocity observed in cells from different regions of the node. Dynamic properties of electrically coupled cells, each with different intrinsic oscillation frequency, are studied as a function of coupling conductance. Simulation results demonstrate at least four distinct regimes of behavior as coupling conductance is varied: (a) independent oscillation (G/sub c/<1 pS); (b) complex oscillation (1/spl les/G/sub c/<220 pS); (c) frequency, but not waveform entrainment (G/sub c//spl ges/220 pS); and (d) frequency and waveform entrainment (G/sub c//spl ges/50 nS). The conductance of single cardiac myocyte gap junction channels is about 50 pS. These simulations therefore show that very few gap junction channels between each cell are required for frequency entrainment. Analyses of large-scale SA node network models implemented on the Connection Machine CM-200 supercomputer indicate that frequency entrainment of large networks is also supported by a small number of gap junction channels between neighboring cells.
机译:单兔窦房(SA)节点细胞的计算模型已被修改,以适应有关兔SA节点细胞振荡特性的区域变化的数据。修改后的模型模拟了振荡频率的差异。在节点不同区域的细胞中观察到的最大舒张电位,超调电位和上冲程峰值速度。电耦合单元的动态特性,每个具有不同的固有振荡频率,作为耦合电导的函数进行研究。仿真结果表明,随着耦合电导的变化,至少有四种不同的行为方式:(a)独立振荡(G / sub c / <1 pS); (b)复杂振荡(1 / spl les / G / sub c / <220 pS); (c)频率,但不是波形夹带(G / sub c // splges / 220 pS); (d)频率和波形夹带(G / sub c // splges / 50 nS)。单个心肌细胞间隙连接通道的电导约为50 pS。因此,这些仿真表明,每个单元之间的极少间隙连接通道对于频率夹带而言是必需的。对在Connection Machine CM-200超级计算机上实现的大规模SA节点网络模型的分析表明,相邻小区之间的少量间隙连接通道也支持大型网络的频率携带。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号