UMR 6233 Institut des Sciences du Mouvement E. J. Marey, CNRS & Université de la Méditerranée, Marseille, France.
Medicina (Kaunas). 2011;47(1):1-10.
The issue of complexity is more and more present in numerous domains of biological research, including aging research. In the present paper, based on a selective review of literature, we propose both a conceptual and a methodological framework to address age-related changes in functional complexity of the neurobehavioral system, presumably resulting from modifications of the coupling between cognitive and sensorimotor processes. In particular, after reviewing pioneering and more recent studies on aging and complexity in the neuromusculoskeletal system, we explore the possibility that an age-induced increase in the coupling between cognitive and sensorimotor domains could be captured by a stronger covariation of high-order variables, common to both cognitive and sensorimotor functioning. Our main assumption is that these variables could behave as neurobehavioral markers of aging in the neuromusculoskeletal system. The present approach markedly differs from other traditional approaches, which focused on process-specific variable correlates of chronological age, domain-by-domain, and task-by-task. It provides a coherent conceptual framework, a terminology, and a method for studying age-related coupling of cognitive and sensorimotor processes with the use of complexity and nonlinear dynamical systems theories.
复杂性问题在包括衰老研究在内的众多生物学研究领域中越来越突出。在本文中,我们基于文献的选择性回顾,提出了一个概念和方法框架,以解决神经行为系统功能复杂性与年龄相关的变化,这可能是由于认知和感觉运动过程之间的耦合发生了变化。特别是,在回顾了神经肌肉骨骼系统衰老和复杂性方面的开创性和较新的研究之后,我们探讨了认知和感觉运动领域之间的耦合增加是否可能是由于两个领域的高阶变量之间的相关性更强而导致的,这些变量对于认知和感觉运动功能都很常见。我们的主要假设是,这些变量可以作为神经肌肉骨骼系统中衰老的神经行为标志物。这种方法与其他传统方法明显不同,后者侧重于特定于过程的、与时间相关的变量与认知和感觉运动功能的相关性,是域到域、任务到任务的研究。它提供了一个连贯的概念框架、术语和方法,用于使用复杂性和非线性动力系统理论研究认知和感觉运动过程与年龄相关的耦合。