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轻度系统性和重度局灶性脱髓鞘性神经病模拟病例中的膜特性异常

Membrane property abnormalities in simulated cases of mild systematic and severe focal demyelinating neuropathies.

作者信息

Stephanova Diana, Daskalova Mariya

机构信息

Institute of Biophysics, Bulgarian Academy of Sciences, Acad. G. Bontchev Str., Bl. 21, Sofia, 1113, Bulgaria.

出版信息

Eur Biophys J. 2008 Feb;37(2):183-95. doi: 10.1007/s00249-007-0215-6. Epub 2007 Sep 5.

Abstract

The investigation of multiple nerve membrane properties by mathematical models has become a new tool to study peripheral neuropathies. In demyelinating neuropathies, the membrane properties such as potentials (intracellular, extracellular, electrotonic) and indices of axonal excitability (strength-duration time constants, rheobases and recovery cycles) can now be measured at the peripheral nerves. This study provides numerical simulations of the membrane properties of human motor nerve fibre in cases of internodal, paranodal and simultaneously of paranodal internodal demyelinations, each of them mild systematic or severe focal. The computations use our previous multi-layered model of the fibre. The results show that the abnormally greater increase of the hyperpolarizing electrotonus, shorter strength-duration time constants and greater axonal superexcitability in the recovery cycles are the characteristic features of the mildly systematically demyelinated cases. The small decrease of the polarizing electrotonic responses in the demyelinated zone in turn leads to a compensatory small increase of these responses outside the demyelinated zone of all severely focally demyelinated cases. The paper summarizes the insights gained from these modeling studies on the membrane property abnormalities underlying the variation in clinical symptoms of demyelination in Charcot-Marie-Tooth disease type 1A, chronic inflammatory demyelinating polyneuropathy, Guillain-Barré syndrome and multifocal motor neuropathy. The model used provides an objective study of the mechanisms of these diseases which up till now have not been sufficiently well understood, because quite different assumptions have been given in the literature for the interpretation of the membrane property abnormalities obtained in hereditary, chronic and acquired demyelinating neuropathies.

摘要

通过数学模型对多种神经膜特性进行研究已成为一种研究周围神经病变的新工具。在脱髓鞘性神经病变中,现在可以在外周神经测量膜特性,如电位(细胞内、细胞外、电紧张)和轴突兴奋性指标(强度-时间常数、基强度和恢复周期)。本研究提供了人运动神经纤维在节间、结旁以及同时存在结旁节间脱髓鞘情况下的膜特性数值模拟,每种情况均为轻度系统性或重度局灶性。计算使用我们之前的纤维多层模型。结果表明,超极化电紧张异常增大、强度-时间常数缩短以及恢复周期中轴突超兴奋性增强是轻度系统性脱髓鞘病例的特征。在所有重度局灶性脱髓鞘病例中,脱髓鞘区域极化电紧张反应的小幅降低反过来导致脱髓鞘区域外这些反应的代偿性小幅增加。本文总结了这些建模研究对1A型遗传性运动感觉神经病、慢性炎症性脱髓鞘性多发性神经病、吉兰-巴雷综合征和多灶性运动神经病中脱髓鞘临床症状变化背后膜特性异常的见解。所使用的模型为这些疾病的机制提供了客观研究,而这些机制至今尚未得到充分理解,因为文献中对遗传性、慢性和获得性脱髓鞘性神经病变中膜特性异常的解释存在相当不同的假设。

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