Kawato M
ATR Human Information Processing Research Laboratories, ERATO, JST, Kawato Dynamic Brain Project, Seika-cho, Soraku-gun, 619-0288, Japan.
Curr Opin Neurobiol. 1999 Dec;9(6):718-27. doi: 10.1016/s0959-4388(99)00028-8.
A number of internal model concepts are now widespread in neuroscience and cognitive science. These concepts are supported by behavioral, neurophysiological, and imaging data; furthermore, these models have had their structures and functions revealed by such data. In particular, a specific theory on inverse dynamics model learning is directly supported by unit recordings from cerebellar Purkinje cells. Multiple paired forward inverse models describing how diverse objects and environments can be controlled and learned separately have recently been proposed. The 'minimum variance model' is another major recent advance in the computational theory of motor control. This model integrates two furiously disputed approaches on trajectory planning, strongly suggesting that both kinematic and dynamic internal models are utilized in movement planning and control.
如今,一些内部模型概念在神经科学和认知科学中广泛存在。这些概念得到了行为、神经生理学和成像数据的支持;此外,这些模型的结构和功能也通过此类数据得以揭示。特别是,小脑浦肯野细胞的单位记录直接支持了一种关于逆动力学模型学习的特定理论。最近有人提出了多个成对的正向逆模型,描述了如何分别控制和学习各种不同的物体和环境。“最小方差模型”是运动控制计算理论中近期的另一项重大进展。该模型整合了两种在轨迹规划上激烈争论的方法,有力地表明运动规划和控制中同时运用了运动学和动力学内部模型。