Suppr超能文献

将光流均衡控制律推广到非对称人-物系统。

Generalizing the optic flow equalization control law to an asymmetrical person-plus-object system.

机构信息

Department of Psychology, Clemson University, Clemson, SC, USA.

School of Computing, Clemson University, Clemson, SC, USA.

出版信息

Atten Percept Psychophys. 2023 Oct;85(7):2337-2355. doi: 10.3758/s13414-023-02777-3. Epub 2023 Oct 2.

Abstract

Visually guided action in humans occurs in part through the use of control laws, which are dynamical equations in which optical information modulates an actor's interaction with their environment. For example, humans locomote through the center of a corridor by equalizing the speed of optic flow across their left and right fields of view. This optic flow equalization control law relies on a crucial assumption: that the shape of the body relative to the eyes is laterally symmetrical. Humans engaging in tool use are often producing person-plus-object systems that are not laterally symmetrical, such as when they hold a tool, bag, or briefcase in one hand, or when they drive a vehicle. This experiment tests a new generalized control law for centered steering that accounts for asymmetries produced by external tool use. Participants held an asymmetrical bar and centered themselves within a virtual moving hallway while the speed of the virtual walls were systematically changed. The results demonstrate that humans engaging with an asymmetrical tool can (1) perceive the asymmetry of a person-plus-object system, (2) use that information to modulate the use of optic flow equalization control laws for centered steering, and (3) functionally incorporate the asymmetrical tool into their perception-action system to successfully navigate their environment.

摘要

人类的视觉引导行为部分是通过使用控制律来实现的,这些控制律是动态方程,其中光学信息调节着参与者与环境的相互作用。例如,人类通过使左右视野中的光流速度相等来在走廊的中心处移动。这种光流均衡控制律依赖于一个关键假设:即相对于眼睛的身体形状是横向对称的。进行工具使用的人类通常会产生非横向对称的人加物体系统,例如当他们用一只手拿着工具、袋子或公文包,或者当他们驾驶车辆时。本实验测试了一种新的中心转向通用控制律,该控制律考虑了外部工具使用产生的不对称性。参与者握住一个不对称的杆,并在虚拟移动走廊内将自己置于中心位置,同时虚拟墙壁的速度被系统地改变。结果表明,使用非对称工具的人类可以(1)感知人加物体系统的不对称性,(2)利用该信息来调节光流均衡控制律在中心转向中的使用,以及(3)将非对称工具功能地整合到他们的感知-动作系统中,以成功地在环境中导航。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验