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计算机模拟轻度轴索损伤:对轴索信号传递的影响。

Computer modeling of mild axonal injury: implications for axonal signal transmission.

机构信息

L-3 Applied Technologies/Simulation, Engineering, and Testing, San Diego, CA 92121, USA.

出版信息

Neural Comput. 2013 Oct;25(10):2646-81. doi: 10.1162/NECO_a_00491. Epub 2013 Jun 18.

Abstract

Diffusion imaging and postmortem studies of patients with mild traumatic brain injury (mTBI) of the concussive type are consistent with the observations of diffuse axonal injury to the white matter axons. Mechanical trauma to axons affects the properties of tetrodotoxin-sensitive sodium channels at the nodes of Ranvier, leading to axonal degeneration through intra-axonal accumulation of calcium ions and activation of calcium proteases; however, the immediate implications of axonal trauma regarding axonal functionality and their relevance to transient impairment of function as observed in concussion remain elusive. A biophysically realistic computational model of a myelinated axon was developed to investigate how mTBI could immediately affect axonal function. Traumatized axons showed alterations in signal propagation properties that nonlinearly depended on the level of trauma; subthreshold traumatized axons had decreased spike propagation time, whereas suprathreshold traumatized axons exhibited a slowdown of spike propagation and spike propagation failure. Trauma had consistently reduced axonal spike amplitude. The susceptibility of an axon to trauma could be modulated by the function of an ATP-dependent sodium-potassium pump. The results suggest a mechanism by which concussive mTBI could lead to the immediate impairment of signal propagation through the axon and the emerging dysfunctional neuronal information exchange.

摘要

轻度创伤性脑损伤(mTBI)患者的弥散成像和尸检研究与白质轴突弥漫性轴索损伤的观察结果一致。对轴突的机械创伤会影响Ranvier 结处河豚毒素敏感的钠离子通道的特性,导致轴突通过钙离子在轴内的积累和钙蛋白酶的激活而发生退化;然而,轴突创伤对轴突功能的直接影响及其与震荡中观察到的短暂功能障碍的相关性仍不清楚。为了研究 mTBI 如何立即影响轴突功能,开发了一个有髓鞘轴突的生物物理现实计算模型。受伤的轴突表现出信号传播特性的改变,这些改变与创伤程度呈非线性关系;亚阈值受伤的轴突的尖峰传播时间缩短,而超阈值受伤的轴突则表现出尖峰传播速度减慢和尖峰传播失败。创伤始终降低了轴突尖峰的幅度。轴突对创伤的易感性可以通过一种 ATP 依赖性钠钾泵的功能来调节。研究结果表明,震荡性 mTBI 可能导致轴突内信号传播的立即损伤,以及新出现的功能失调的神经元信息交换。

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