首页> 外文会议>Computing in Cardiology Conference >Effects of Microgravity on Action Potential Wave Propagation in Rat Transmural Ventricle Tissue
【24h】

Effects of Microgravity on Action Potential Wave Propagation in Rat Transmural Ventricle Tissue

机译:微匍匐对大鼠透跨膜组织作用潜力波繁殖的影响

获取原文

摘要

Experiments mimicking microgravity condition have multiple effects on cardiac electrophysiology. Therefore, based on experimental data of rats with 2-weeks (short term) and 4-weeks (long term) tail suspension, effect of microgravity on action potentials (APs) were simulated by decreasing I_(CaL) and increasing I_(NaK) based on rat endocardial and epicardial models. Additionally, a 1D model was constructed by considering the increasing of connexin 43 under microgravity condition. Simulation results show that I_(CaL) and I_(NaK) changes have similar effect in reducing APD_(90) under short term condition, while the inhibition of I_(CaL) is the main factor in reducing APD_(90) under long term condition. The simulated pseudo-ECG in both conditions showed a shortened QT interval and depressed of ST phase and T wave as experimental observations. Increased expression of connexin 43 in microgravity condition resulted in a mild increase in conduction velocity. Meanwhile, the vulnerable window in 1D ventricle strand reduced in microgravity condition. Compared with short term microgravity condition, all these changes were more prominent in the long term microgravity condition. In conclusion, this study provides new insight into understanding of impaired cardiac functions in short and long term microgravity conditions during spaceflight.
机译:模拟微痛病症的实验对心脏电生理具有多种影响。因此,基于2周(短期)和4周(长期)尾悬架的大鼠的实验数据,通过减少I_(CAL)并增加I_(NAK)来模拟微匍匐对动作电位(AP)的影响基于大鼠心外膜和心外膜模型。另外,通过考虑在微匍匐条件下的Connexin 43的增加来构建1D模型。仿真结果表明,I_(CAL)和I_(NAK)变化在短期状况下减少APD_(90)时具有类似的效果,而I_(CAL)的抑制是在长期条件下减少APD_(90)的主要因素。两种条件中的模拟伪心电图显示出缩短的QT间隔和ST相位和T波作为实验观察。 Connexin 43在微匍匐条件下的表达增加导致导电速度的温和增加。同时,1D心室围困的脆弱窗口在微匍匐条件下减少。与短期显微抗痛条件相比,所有这些变化在长期的微观度条件下更加突出。总之,本研究提供了新的洞察空间在短期和长期微刻度条件下对心脏功能受损的理解。

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