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FM-Sim: Protocol Definition, Simulation and Rate Inference for Neuroscience Assays

机译:FM-SIM:神经科学分析的协议定义,仿真和速率推断

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Synaptic vesicle recycling at the presynaptic terminal of neurons is essential for the maintenance of neurotransmission at central synapses. Among the tools used to visualise the mechanics of this process is time-series fluorescence microscopy. Fluorescent dyes such as FM1-43, or engineered fluorescent versions of synaptic vesicle proteins such as pHluorins, have been employed to reveal different steps of this key process [3,7]. Predictive in silico modelling of potential experimental outcomes would be highly informative for these time consuming and expensive studies. We present FM-Sim [9], user-friendly software for defining and simulating fluorescence microscopy experimental assays, with the following features: intuitive user definition of experimental protocols; automatic conversion of protocol definitions into time series rate value changes; domain-specific simulation model of a synaptic terminal; experimental data used for model parameter value inference; automatic Bayesian inference of parameter values [1,5] and reduction of inferred parameter set size for Bayesian inference.
机译:在神经元的突触前末端回收突触囊泡对于维持中央突触的神经递质是必不可少的。用于可视化该过程的机制的工具中是时间序列荧光显微镜。已经采用荧光染料如FM1-43,或工程化荧光版,例如苯菌蛋白如嘌呤蛋白,揭示该关键方法的不同步骤[3,7]。在潜在的实验结果中的Silico建模预测是对这些耗时和昂贵的研究的高度信息。我们呈现FM-SIM [9],用于定义和模拟荧光显微镜实验测定的用户友好的软件,具有以下特征:直观的用户定义实验方案;将协议定义的自动转换为时间序列速率值的变化;突触终端的域特异性仿真模型;用于模型参数值推断的实验数据;用于参数值的自动贝叶斯推断[1,5]和贝叶斯推理的推断参数集大小的减少。

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