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Peripheral Network Connectivity Analyses for the Real-Time Tracking of Coupled Bodies in Motion

机译:外围网络连接分析可实时跟踪运动中的耦合体

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摘要

Dyadic interactions are ubiquitous in our lives, yet they are highly challenging to study. Many subtle aspects of coupled bodily dynamics continuously unfolding during such exchanges have not been empirically parameterized. As such, we have no formal statistical methods to describe the spontaneously self-emerging coordinating synergies within each actor’s body and across the dyad. Such cohesive motion patterns self-emerge and dissolve largely beneath the awareness of the actors and the observers. Consequently, hand coding methods may miss latent aspects of the phenomena. The present paper addresses this gap and provides new methods to quantify the moment-by-moment evolution of self-emerging cohesiveness during highly complex ballet routines. We use weighted directed graphs to represent the dyads as dynamically coupled networks unfolding in real-time, with activities captured by a grid of wearable sensors distributed across the dancers’ bodies. We introduce new visualization tools, signal parameterizations, and a statistical platform that integrates connectivity metrics with stochastic analyses to automatically detect coordination patterns and self-emerging cohesive coupling as they unfold in real-time. Potential applications of these new techniques are discussed in the context of personalized medicine, basic research, and the performing arts.
机译:二进位互动在我们的生活中无处不在,但对研究却极具挑战性。在这种交换过程中,连续不断地耦合的身体动力学的许多细微方面还没有根据经验进行参数化。因此,我们没有正式的统计方法来描述每个演员体内和整个双子座中自发的自我协调协同作用。这种凝聚力的运动模式会在演员和观察者的意识范围内自行出现并消散。因此,手工编码方法可能会错过现象的潜在方面。本论文解决了这一差距,并提供了新的方法来量化高度复杂的芭蕾舞常规中自我涌现的内聚力的瞬间变化。我们使用加权有向图将二元组表示为实时展开的动态耦合网络,并通过分布在舞者身上的可穿戴传感器网格捕获活动。我们引入了新的可视化工具,信号参数化和一个统计平台,该平台将连通性指标与随机分析相集成,以自动检测协调模式和实时出现的内聚性耦合。在个性化医学,基础研究和表演艺术的背景下,讨论了这些新技术的潜在应用。

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