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A Simple Computational Model Of Digestion In The Marine Mussel

机译:海洋贻贝消化的简单计算模型

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A simplified model of a marine mussel is proposed. We model the digestive system as a cellular analogue, physically partitioned into a lysosome and endosome, with the flow of particulate carbon to represent energy. The parameters in the rate equations that govern the interactions between compartments are assumed to be a simple linear form but are consistent with experiment and observation. The model is tested first by using continuous feeding and then by using a periodic feeding representative of tidal input. The responses in both cases produce interesting results compatible with observations of the biology of the animal. We define a "health function" which indicates whether or not the animal survives. It is found that survival is critically dependent on lysosomal efficiency.
机译:提出了海洋贻贝的简化模型。我们将消化系统模型化为细胞类似物,物理上分为溶酶体和内体,并通过颗粒碳的流动来代表能量。速率方程中控制隔室之间相互作用的参数被假定为简单的线性形式,但与实验和观察一致。首先使用连续进料对模型进行测试,然后使用代表潮汐输入的周期性进料进行测试。两种情况下的反应均产生有趣的结果,与动物生物学的观察结果相吻合。我们定义了一个“健康功能”,该功能指示动物是否存活。已经发现,存活率关键取决于溶酶体效率。

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