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可兴奋细胞激活分析:外部电刺激的相对效应

Analysis of excitable cell activation: relative effects of external electrical stimuli.

作者信息

Altman K W, Plonsey R

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27706.

出版信息

Med Biol Eng Comput. 1990 Nov;28(6):574-80. doi: 10.1007/BF02442610.

Abstract

In the functional electrical stimulation of nerve an expression defined as the 'activating function' has been introduced to evaluate the propensity for a particular fibre to excite. This approach to determine resulting activation is only an approximation as it neglects the presence of the fibres on the applied field, in contrast to activity determined from a rigorous solution to the core conductor/excitable membrane equations. An alternative approach to determining relative excitability based on the induced transmembrane potential is presented, thereby allowing for current redistribution via the space constant of the target fibre. The paper critically examines the approximations made with activating functions, and concludes that as currently formulated the activating function has limitations in predicting relative excitability under a number of important conditions. In contrast, it is the induced (passive) transmembrane potential that provides a quantitatively reliable estimate of the tendency for fibres to excite.

摘要

在神经功能性电刺激中,引入了一种定义为“激活函数”的表达式来评估特定纤维兴奋的倾向。这种确定最终激活的方法只是一种近似方法,因为与通过严格求解核心导体/可兴奋膜方程确定的活动相比,它忽略了施加场中纤维的存在。本文提出了一种基于诱导跨膜电位确定相对兴奋性的替代方法,从而允许通过目标纤维的空间常数进行电流重新分布。本文批判性地研究了激活函数所做的近似,并得出结论,按照目前的公式,激活函数在预测许多重要条件下的相对兴奋性方面存在局限性。相比之下,诱导(被动)跨膜电位提供了对纤维兴奋倾向的定量可靠估计。

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