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Influence of the myelin sheath on excitation properties of nerve fibers

机译:髓鞘对神经纤维兴奋性的影响

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摘要

The excitation and conduction properties of computer-based cable models of mammalian motor nerve fibers incorporating three different myelin representations were compared. The three myelin representations were a perfectly insulating single cable (model A), a finite impedance single cable (model B), and a finite impedance double cable (model C). Extracellular stimulation of the three models was used to study strength-duration, current-distance (I-X), conduction velocity (CV) properties. All three models had a chronaxie time (Tch) that was within the experimental range. Models B and C had increased threshold current as compared to model A, but each model had a slope to the I-X relationship that matched experimental results. Model B had a CV that matched experimental data while the CV of models A and C were above and below the experimental range, respectively. These results indicate that the presence of a finite impedance myelin sheath does influence the excitation properties of nerve fiber models and must be considered when using models for design of neural stimulation paradigms.
机译:比较了包含三种不同髓鞘表现形式的哺乳动物运动神经纤维的基于计算机的电缆模型的激发和传导特性。三种髓磷脂表示法是完全绝缘的单根电缆(A型),有限阻抗的单根电缆(B型)和有限阻抗的双根电缆(C型)。这三种模型的细胞外刺激被用来研究强度持续时间,电流距离(I-X),传导速度(CV)特性。这三个模型的时间轴时间(Tch)均在实验范围内。与模型A相比,模型B和C具有更高的阈值电流,但是每个模型的I-X关系都有一定的斜率,与实验结果相匹配。模型B的CV与实验数据匹配,而模型A和C的CV分别高于和低于实验范围。这些结果表明,有限阻抗髓鞘的存在确实会影响神经纤维模型的兴奋特性,因此在使用模型设计神经刺激范例时必须予以考虑。

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