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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Unidirectional block in cardiac fibers: effects of discontinuities in coupling resistance and spatial changes in resting membrane potential in a computer simulation study
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Unidirectional block in cardiac fibers: effects of discontinuities in coupling resistance and spatial changes in resting membrane potential in a computer simulation study

机译:心脏纤维中的单向传导阻滞:计算机模拟研究中耦合阻力的不连续性和静息膜电位的空间变化

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摘要

The mechanisms for conduction and unidirectional block (UDB) in cardiac tissue under spatial changes in cell-to-cell coupling resistivity (R/sub i/) and resting potential (V/sub rest/) were studied. The effects of discontinuities in R/sub i/ as would result from collagenous or fibrotic tissue on propagation characteristics, in the border zone between normal and ischemic tissue, were studied. It was found that conduction block is more likely to occur when an abrupt decrease in R/sub i/ is encountered as compared to an abrupt increase in R/sub i/. Discontinuities in R/sub i/ were found to cause changes in propagation characteristics, changing regions of bidirectional block to UDB or bidirectional propagation. Spatial changes in V/sub rest/ were also studied. It is found that when V/sub rest/ alone was altered, block was not likely to occur, while discontinuities in R/sub i/ superimposed with V/sub rest/ gradients increased the likelihood of block. It is also found that R/sub i/ discontinuities located in the border zone between normal and ischemic tissue can create exit block or propagation of a parasystolic focus.
机译:研究了细胞间耦合电阻率(R / sub i /)和静息电位(V / sub rest /)的空间变化下心脏组织中传导和单向阻滞(UDB)的机制。研究了正常组织和缺血组织之间边界区域胶原蛋白或纤维化组织引起的R / sub i /不连续性对繁殖特性的影响。已经发现,与R / sub i /的突然增加相比,当R / sub i /的突然减少时更容易发生传导阻滞。发现R / sub i /中的不连续性会导致传播特性发生变化,将双向块的区域更改为UDB或双向传播。还研究了V / sub rest /的空间变化。发现当单独改变V / subrest /时,不可能发生阻塞,而与V / subrest /梯度叠加的R / subi /的不连续性增加了阻塞的可能性。还发现位于正常组织与局部缺血组织之间边界区域的R / sub i /不连续部位可形成出口阻滞或收缩旁焦点的传播。

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