首页 /研究 /Interfacing sensory input with motor output: does the control architecture converge to a serial process along a single channel?
OTHER

Interfacing sensory input with motor output: does the control architecture converge to a serial process along a single channel?

Cornelis van de Kamp, P.J. Gawthrop, H. Gollee, Martin Lakie, Ian D. Loram

发表年份
2013
引用次数
12
访问权限
开放获取

摘要

Modular organization in control architecture may underlie the versatility of human motor control; but the nature of the interface relating sensory input through task-selection in the space of performance variables to control actions in the space of the elemental variables is currently unknown. Our central question is whether the control architecture converges to a serial process along a single channel? In discrete reaction time experiments, psychologists have firmly associated a serial single channel hypothesis with refractoriness and response selection [psychological refractory period (PRP)]. Recently, we developed a methodology and evidence identifying refractoriness in sustained control of an external single degree-of-freedom system. We hypothesize that multi-segmental whole-body control also shows refractoriness. Eight participants controlled their whole body to ensure a head marker tracked a target as fast and accurately as possible. Analysis showed enhanced delays in response to stimuli with close temporal proximity to the preceding stimulus. Consistent with our preceding work, this evidence is incompatible with control as a linear time invariant process. This evidence is consistent with a single-channel serial ballistic process within the intermittent control paradigm with an intermittent interval of around 0.5 s. A control architecture reproducing intentional human movement control must reproduce refractoriness. Intermittent control is designed to provide computational time for an online optimization process and is appropriate for flexible adaptive control. For human motor control we suggest that parallel sensory input converges to a serial, single channel process involving planning, selection, and temporal inhibition of alternative responses prior to low dimensional motor output. Such design could aid robots to reproduce the flexibility of human control.

关键词

Computer scienceModular designMotor controlChannel (broadcasting)InterfacingProcess (computing)Serial memory processingControl (management)Control theory (sociology)Artificial intelligence

相关论文

查看 OTHER 分类全部论文