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新生大鼠运动学的发展:基于主体模型在群体和个体背景下的分析

The development of locomotor kinematics in neonatal rats: an agent-based modeling analysis in group and individual contexts.

作者信息

Schank Jeffrey C

机构信息

Department of Psychology, University of California, One Shields Avenue, Davis, CA 95616, USA.

出版信息

J Theor Biol. 2008 Oct 21;254(4):826-42. doi: 10.1016/j.jtbi.2008.07.024. Epub 2008 Jul 24.

Abstract

An agent-based model of infant rat (pup) locomotion and aggregation was developed by modifying a previous model of pup aggregation [Schank, J.C., Alberts, J.R., 2000a. The developmental emergence of coupled activity as cooperative aggregation in rat pups. Proc. R. Soc. London B 267, 2307-2315]. The main difference between the earlier and current models is the incorporation of whole-body kinematics of directional locomotion. Data on locomotion and aggregation are presented for individuals and groups of 7- and 10-day-old pups and the data were used to evolve models (with a genetic algorithm) that fit these data. Aggregation between 7- and 10-day-old pups was considerably different and could be explained by agent-based models, in particular, models with directional-kinematic matrices specifying the probabilities of moving to adjacent cells. The directional kinematics of whole-body movement differed between the two age classes and differed between group and individual contexts for 10-day-old pups. This may indicate a developmental transition (by day 10) to more central control of behavior and the ability to change patterns of movement based on social context. The behavior analyzed with agent-based models may provide a precise way to measure motor and nervous system development in rats and other rodents.

摘要

通过修改先前的幼鼠聚集模型[尚克,J.C.,艾伯茨,J.R.,2000a。幼鼠耦合活动作为合作聚集的发育出现。《伦敦皇家学会学报》B 267,2307 - 2315],开发了一种基于主体的幼鼠运动和聚集模型。早期模型与当前模型的主要区别在于纳入了定向运动的全身运动学。给出了7日龄和10日龄幼鼠个体及群体的运动和聚集数据,并使用这些数据(通过遗传算法)来演化拟合这些数据的模型。7日龄和10日龄幼鼠之间的聚集差异很大,基于主体的模型,特别是具有指定向相邻细胞移动概率的定向运动学矩阵的模型,可以解释这种差异。两个年龄组的全身运动定向运动学不同,对于10日龄幼鼠,群体和个体环境下也不同。这可能表明(到第10天)向行为的更集中控制以及根据社会环境改变运动模式的能力的发育转变。用基于主体的模型分析的行为可能为测量大鼠和其他啮齿动物的运动和神经系统发育提供一种精确的方法。

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