基于感知运动规律的机制模型解释动物群体行为如何涌现。
A Mechanistic Model for Collective Motion from Sensorimotor Regularities

- 用视角和大小感知构建个体决策,无预设作用力。
- 模型生成极化运动、环形队列等多样集体行为。
- 揭示行为转变由可测量生物参数决定,适合生态与神经科学读者。
动物群体行为长期依赖自驱动粒子模型,通过抽象作用力再现群体现象,但这类模型本质为描述性,未阐明行为实际产生机制。近期实证研究显示:蝗虫并不与邻近个体对齐,而是通过感官与认知机制中介交互。因此,机制模型必须基于个体真实感知、估计与执行能力。本文提出一种基于机器人学建模框架的群体运动机制模型,每个代理在有限视野内通过方位角和表观大小感知邻居,保持不确定的内部状态估计,并通过梯度下降选择动作以实现期望社会距离——无需预设作用力。该简单模型能生成极化运动、漩涡、环形结构及子群分裂等多种集体行为。全局敏感性分析表明,行为转变由可测量的生物参数决定:视野几何、感官噪声、转向敏捷性与记忆能力。群体行为可理解为感知运动规律相互作用的涌现结果,物种间差异则源于体态与环境的不同。
原文摘要 · Abstract (English)
Collective behavior in animals has long been modeled through self-propelled particle models, which reproduce striking group-level phenomena through abstract interaction forces. Yet these models are fundamentally descriptive: they leave open the question of how collective behavior is actually produced. Recent empirical work makes this gap concrete: locusts do not align with neighbors, sensory and cognitive mechanisms mediate interaction instead. A mechanistic model must therefore operate at the sensorimotor level, grounded in what individual organisms can actually perceive, estimate, and physically execute. We present such a model based on a modeling framework from robotics, extended here to collective motion. Each agent perceives neighbors through bearing and apparent-size cues within a limited field of view, maintains uncertain internal state estimates, and selects actions through gradient descent on a desired social distance---without any prescribed interaction forces. This simple model produces diverse collective behaviors including polarized motion, milling, ring formations, and subgroup fragmentation. A global sensitivity analysis shows that behavioral transitions are governed by sensorimotor parameters corresponding to measurable biological quantities: field of view geometry, sensory noise, turning agility, and memory. Collective behavior can therefore be understood as the emergent outcome of interacting sensorimotor regularities, and differences across species as the emergent outcome of differences in embodiment and environment.
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