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Effect of filaments within the synaptic cleft on the response of excitatory synapses simulated by computer experiments

机译:突触间隙内细丝对计算机实验模拟的兴奋性突触反应的影响

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Mathematical models of the excitatory synapse are furnishing valuable information about the synaptic response. Based on Brownian-diffusion of glutamate molecules, a synapse model was utilized to investigate the synaptic response on a femto-second time scale by the use of a parallel computer. In particular, the presence of fibrils crossing the synaptic cleft was simulated, which could have a role in shaping the brain activity. To this aim the model of synapse was modified by considering trans-synaptic filaments with diameters ranging from 7. nm to 3. nm, disposed on a grid with spacing of 14. nm or 8. nm. The simulation demonstrated that the presence of filaments induced an increase in the synaptic response, most likely linked to an increment in the probability of encounter between glutamate molecules and receptors. The increase was small - from 5 to 20%, but metabolic and functional considerations provide substantive hints about the importance of these small changes for brain activity. Moreover, it was shown that the presence of filaments made more stable the response of the synapse to random variations of pre-synaptic elements. Originated by these computational results, some inferences about the biological bases of mind diseases such as autism, mental retardation and schizophrenia, are reported in the Discussion.
机译:兴奋性突触的数学模型正在提供有关突触反应的有价值的信息。基于谷氨酸分子的布朗扩散,利用并行计算机,利用突触模型在飞秒级的时间范围内研究突触反应。特别是,模拟了穿过突触裂的原纤维的存在,这可能在塑造大脑活动中起作用。为了这个目的,通过考虑直径为7. nm至3. nm,跨距为14. nm或8. nm的网格上的跨突触丝来修改突触模型。模拟表明,细丝的存在诱导了突触反应的增加,最有可能与谷氨酸分子和受体之间相遇的可能性增加有关。增长很小,从5%增长到20%,但是代谢和功能方面的考虑为这些微小变化对大脑活动的重要性提供了实质性暗示。此外,已经表明,细丝的存在使突触对突触前元件的随机变化的响应更加稳定。从这些计算结果出发,讨论中报告了一些关于精神疾病的生物学基础的推断,例如自闭症,智力低下和精神分裂症。

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