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The problem of measurement indeterminacy in complex neurobiological movement systems.

机译:复杂的神经生物学运动系统中的测量不确定性问题。

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In the study of complex neurobiological movement systems, measurement indeterminacy has typically been overcome by imposing artificial modelling constraints to reduce the number of unknowns (e.g., reducing all muscle, bone and ligament forces crossing a joint to a single vector). However, this approach prevents human movement scientists from investigating more fully the role, functionality and ubiquity of coordinative structures or functional motor synergies. Advancements in measurement methods and analysis techniques are required if the contribution of individual component parts or degrees of freedom of these task-specific structural units is to be established, thereby effectively solving the indeterminacy problem by reducing the number of unknowns. A further benefit of establishing more of the unknowns is that human movement scientists will be able to gain greater insight into ubiquitous processes of physical self-organising that underpin the formation of coordinative structures and the confluence of organismic, environmental and task constraints that determine the exact morphology of these special-purpose devices.
机译:在研究复杂的神经生物学运动系统时,通常通过施加人工建模约束条件来减少未知数(例如,减少穿过关节到单个矢量的所有肌肉,骨骼和韧带力)来克服测量不确定性。但是,这种方法使人体运动科学家无法更全面地研究协调结构或功能性电机协同作用的作用,功能和普遍性。如果要确定这些特定任务的结构单元的各个组成部分或自由度的贡献,则需要改进测量方法和分析技术,从而通过减少未知数来有效地解决不确定性问题。建立更多未知数的另一个好处是,人类运动科学家将能够深入了解无处不在的身体自组织过程,这些过程构成了协调结构的形成以及确定确切位置的有机,环境和任务约束的融合这些专用设备的形态。

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