Ronsse Renaud, Sternad Dagmar, Lefèvre Philippe
Department of Electrical Engineering and Computer Science, Montefiore Institute, Université de Liège, B-4000 Liège, Belgium.
Neural Comput. 2009 May;21(5):1335-70. doi: 10.1162/neco.2008.03-08-720.
Current research on discrete and rhythmic movements differs in both experimental procedures and theory, despite the ubiquitous overlap between discrete and rhythmic components in everyday behaviors. Models of rhythmic movements usually use oscillatory systems mimicking central pattern generators (CPGs). In contrast, models of discrete movements often employ optimization principles, thereby reflecting the higher-level cortical resources involved in the generation of such movements. This letter proposes a unified model for the generation of both rhythmic and discrete movements. We show that a physiologically motivated model of a CPG can not only generate simple rhythmic movements with only a small set of parameters, but can also produce discrete movements if the CPG is fed with an exponentially decaying phasic input. We further show that a particular coupling between two of these units can reproduce main findings on in-phase and antiphase stability. Finally, we propose an integrated model of combined rhythmic and discrete movements for the two hands. These movement classes are sequentially addressed in this letter with increasing model complexity. The model variations are discussed in relation to the degree of recruitment of the higher-level cortical resources, necessary for such movements.
当前关于离散运动和节律性运动的研究在实验程序和理论方面都存在差异,尽管在日常行为中离散成分和节律性成分普遍重叠。节律性运动模型通常使用模仿中枢模式发生器(CPG)的振荡系统。相比之下,离散运动模型常常采用优化原则,从而反映出参与此类运动生成的更高级皮层资源。本文提出了一个用于生成节律性运动和离散运动的统一模型。我们表明,一个具有生理学动机的CPG模型不仅可以仅用一小组参数生成简单的节律性运动,而且如果给CPG输入指数衰减的相位输入,它还可以产生离散运动。我们进一步表明,这两个单元之间的特定耦合可以重现关于同相和反相稳定性的主要发现。最后,我们提出了一个针对两只手的节律性运动和离散运动组合的综合模型。在本文中,随着模型复杂度的增加,这些运动类别依次得到探讨。我们结合此类运动所需的更高级皮层资源的募集程度,对模型的变化进行了讨论。