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How to Impose Microscopic Reversibility in Complex Reaction Mechanisms

机译:如何在复杂的反应机理中施加微观可逆性

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摘要

Most, but not all, ion channels appear to obey the law of microscopic reversibility (or detailed balance). During the fitting of reaction mechanisms it is therefore often required that cycles in the mechanism should obey microscopic reversibility at all times. In complex reaction mechanisms, especially those that contain cubic arrangements of states, it may not be obvious how to achieve this. Three general methods for imposing microscopic reversibility are described. The first method works by setting the ‘obvious’ four-state cycles in the correct order. The second method, based on the idea of a spanning tree, works by finding independent cycles (which will often have more than four states) such that the order in which they are set does not matter. The third method uses linear algebra to solve for constrained rates.
机译:大多数(但不是全部)离子通道似乎遵守微观可逆性定律(或详细的平衡)。因此,在装配反应机理的过程中,经常需要使机理中的循环始终遵守微观可逆性。在复杂的反应机制中,尤其是那些包含状态的立方排列的机制中,如何实现这一目标可能并不明显。描述了施加微观可逆性的三种通用方法。第一种方法通过以正确的顺序设置“明显的”四态循环来工作。第二种方法基于生成树的思想,其工作原理是找到独立的循环(通常将具有四个以上的状态),以使它们的设置顺序无关紧要。第三种方法使用线性代数求解约束速率。

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