首页> 外文会议>Pacific Symposium on Biocomputing '98 4-9 January 1998 Maui, Hawaii, USA >Genomic regulation modeled as a network with basins of attraction
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Genomic regulation modeled as a network with basins of attraction

机译:基因组调控建模为具有吸引盆地的网络

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Many natural processes consist of networks of interacting elements which affect each other's state over time, the dynamics depending on the pattern of connections and the updating rules for each element. Genomic regulatory networks are arguably networks of this sort. An attempt to understand genomic networks would benefit from the context of a general theory of discrete dynamical networks which is currently emerging. A key notion here is global dynamics, whereby stage-space is organized into basins of attraction, objects that have only recently become accessible by computer simulation of idenalized models~(12,13), in particular "random Boolean networks". Cell types have been explained as attactors in genomic networks,~5 where the network architecture is biased to a achieve a balance between stability and adaptability in response to perturbation~3. Based on computer simulations using the software Discrete Dynamics Lab (DDLab)~15. these ideas are described, as well as order-chaos measures on typical trajectories that further characterize network dynamics.
机译:许多自然过程由相互作用的元素网络组成,这些元素随着时间的推移相互影响彼此的状态,其动力学取决于连接方式和每个元素的更新规则。基因组调控网络可以说是这类网络。理解基因组网络的尝试将受益于当前出现的离散动态网络的一般理论。这里的一个关键概念是全局动力学,即舞台空间被组织成吸引盆,这些对象直到最近才通过计算机模拟理想化模型(12,13),特别是“随机布尔网络”来访问。单元格类型已被解释为基因组网络中的诱因,〜5中,网络结构偏向于在响应扰动时实现稳定性和适应性之间的平衡〜3。基于使用离散动态实验室(DDLab)〜15的计算机模拟。描述了这些想法,以及对典型轨迹的阶次混沌度量,以进一步表征网络动力学。

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