首页> 外文会议>International Conference on Modelling in Medicine and Biology. >Numerical simulation of electromechanical activity of the gastric smooth muscle
【24h】

Numerical simulation of electromechanical activity of the gastric smooth muscle

机译:胃平滑肌机电活性的数值模拟

获取原文

摘要

A null-dimensional mathematical model of the myoelectrical activity of the gastric smooth muscle (myofiber) is studied numerically. Based on real morphological and electrophysiological data, the model assumes that: the kinetics of L- and T-type Ca~2+, Ca~2+-activated K~+, voltage dependent K~+ and Cl~-channels determines the electrical activity of the myofiber; the enteric nervous system is represented by the primary sensory and motor neurons; the pacemaker input is provided by the interstitial cells of Cajal through receptor linked L-type Ca~2+channels located on the smooth muscle membrane. The dynamics of propagation of the wave of depolarization along the unmyelinated nerve axons satisfy the Hodgkin-Huxley model; the electrical activity of the neural soma reflects the interaction of N-type Ca~2+ channels, Ca~2+-activated K~+ and voltage dependent Na~+, K~+ and Cl~- channels; and the smooth muscle is modeled as a null-dimensional contractile system which dynamics is determined entirely by the concentration of cytosolic calcium. The model reproduces: the mechanical excitation of the free nerve endings of the mechanoreceptor of the receptive field of the pathway; the electrical processes of the propagation of excitation along the afferent and efferent neural circuits; the chemical mechanisms of nerve-pulse transmission at the synaptic zones; the slow wave and bursting type electrical activity; cytosolic calcium concentration; the dynamics of active force generation. Results of numerical simulations of mechanical stimulation of the gastric myofiber have revealed different mechanical responses. Thus, with increased frequency and intensity of excitation there is a shift from phasic to tonic bursting and the development of long-lasting contractions. Comparison of theoretical and experimental results has revealed good qualitative and quantitative agreement.
机译:在数值上进行了胃平滑肌(MyoFiber)的肌电活性的尺寸尺寸数学模型。基于真实的形态和电生理数据,模型假设:L型和T型Ca〜2 +,CA〜2 + - 活化的K〜+,电压依赖性K〜+和CL〜-Chins的动力学决定了电气MyoFiber的活动;肠柱神经系统由主要感官和运动神经元代表;起搏器输入由Cajal的间质细胞通过位于平滑肌膜上的受体连接的L型Ca〜2 +通道提供。沿外髓鞘神经轴突的去极化波的繁殖动态满足了霍奇瓜 - 赫克利模型;神经细胞的电活动反映了n型Ca〜2 +通道的相互作用,Ca〜2 + - 活化的K〜+和电压依赖性Na +,K〜+和Cl〜 - 通道;平滑肌被建模为零尺寸收缩系统,动态由细胞溶质钙的浓度完全确定。该模型再现:通路的接受领域的机械孔的自由神经结束的机械激发;沿传入和传递神经电路沿激发繁殖的电气过程;突触区域神经脉冲传输的化学机制;慢波和爆裂式电气活动;细胞溶质钙浓度;主动力产生的动态。胃肌电纤维机械刺激数值模拟结果显示出不同的机械反应。因此,随着激发的频率和强度增加,存在从相位的偏移到滋补突起和长期收缩的发展。理论和实验结果的比较揭示了良好的定性和量化协议。

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