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Compartment model of neuropeptide synaptic transport with impulse control

机译:脉冲控制的神经肽突触运输的隔室模型

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摘要

In this paper a mathematical description of a presynaptic episode of slow synaptic neuropeptide transport is proposed. Two interrelated mathematical models, one based on a system of reaction diffusion partial differential equations and another one, a compartment type, based on a system of ordinary differential equations (ODE) are formulated. Processes of inflow, calcium triggered activation, diffusion and release of neuropeptide from large dense core vesicles (LDCV) as well as inflow and diffusion of ionic calcium are represented. The models assume the space constraints on the motion of inactive LDCVs and free diffusion of activated ones and ions of calcium. Numerical simulations for the ODE model are presented as well. Additionally, an electronic circuit, reflecting the functional properties of the mathematically modelled presynaptic slow transport processes, is introduced.
机译:本文提出了一种关于突触前慢突触神经肽转运的数学描述。建立了两个相互关联的数学模型,一个基于反应扩散偏微分方程组,另一种是基于常微分方程组(ODE)的隔室类型。代表了流入,钙触发的过程,神经肽从大型致密核心囊泡(LDCV)的扩散,释放以及离子钙的流入和扩散的过程。这些模型假定了非活动LDCV的运动以及激活的LDCV和钙离子的自由扩散的空间限制。还介绍了ODE模型的数值模拟。另外,引入了反映数学模型化的突触前慢传输过程的功能特性的电子电路。

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  • 来源
    《Biological Cybernetics》 |2008年第6期|443-458|共16页
  • 作者单位

    Institute of Computer Science Jagiellonian University Nawojki 11 30-072 Kraków Poland;

    Institute of Computer Science Jagiellonian University Nawojki 11 30-072 Kraków Poland;

    Institute of Zoology Jagiellonian University Ingardena 6 30-060 Kraków Poland;

    Institute of Computer Science Jagiellonian University Nawojki 11 30-072 Kraków Poland;

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