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Domain-Specific Modeling as a Pragmatic Approach to Neuronal Model Descriptions

机译:域特异性建模作为神经元模型描述的务实方法

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Biologically realistic modeling has been greatly facilitated by the development of neuro-simulators, and the development of simulator-independent formats for model exchange is the subject of multiple initiatives. Neuronal systems need to be described at multiple levels of granularity, and compared to other such multi-level systems they also exhibit emergent properties, which are best described with computational and psychological terminology. The links between these levels are often neither clear in terms of concepts nor of the underlying mathematics. Given that modeling and simulation depends on explicit formal descriptions, we argue that rapid prototyping of model descriptions and their mutual relations will be a key to making progress here. Here we propose to adapt the paradigm of domain-specific modeling from software engineering. Using the popular Eclipse platform, we develop the modular and extensible NeuroBench1 model and showcase a toolchain for code generation, which can also support, mediate between, and complement ongoing initiatives. This may kick-start the development of a multiplicity of model descriptions, which eventually may lead to ontologically sound multi-level descriptions of neuronal systems capturing neuronal, computational, and even psychological and social phenomena.
机译:神经模拟器的发展得到了生物学现实建模,并且对模型交换的模拟器的独立形式的发展是多个举措的主题。需要在多级粒度描述神经元系统,并且与其他这样的多级系统相比,它们还表现出具有计算和心理术语的最佳描述。这些级别之间的链接通常在概念上既不清楚,也不是底层数学。鉴于建模和仿真取决于明确的正式描述,我们认为模型描述的快速原型设计及其相互关系将是在这里取得进展的关键。在这里,我们建议根据软件工程调整特定于域的模型范式。使用流行的Eclipse平台,我们开发模块化和可扩展的Neurobench1模型,并展示工具链以进行代码生成,也可以支持,调解和补充持续举措。这可能踢启动模式的描述,这最终可能导致本体论声音的神经系统捕捉神经元,计算,甚至是心理和社会现象的多层次描述的多样性发展。

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