Heath M, Hassall C D, MacLean S, Krigolson O E
School of Kinesiology, University of Western Ontario, London, ON, Canada; Graduate Program in Neuroscience, University of Western Ontario, London, ON, Canada.
Faculty of Education, University of Victoria, Victoria, BC, Canada.
Neuroscience. 2015 Dec 17;311:153-65. doi: 10.1016/j.neuroscience.2015.10.018. Epub 2015 Oct 23.
Perceptual judgments about the angular disparity of a character from its standard upright (i.e., mental rotation task) result in a concurrent increase in reaction time (RT) and modulation of the amplitude of the P300 event-related brain potential (ERP). It has therefore been proposed that the P300 represents the neural processes associated with a visual rotation. In turn, the visuomotor mental rotation (VMR) task requires reaching to a location that deviates from a target by a predetermined angle. Although the VMR task exhibits a linear increase in RT with increasing oblique angles of rotation, work has not examined whether the task is supported via a visual rotation analogous to its mental rotation task counterpart. This represents a notable issue because seminal work involving non-human primates has ascribed VMR performance to the motor-related rotation of directionally tuned neurons in the primary motor cortex. Here we examined the concurrent behavioral and ERP characteristics of a standard reaching task and VMR tasks of 35°, 70°, and 105° of rotation. Results showed that the P300 amplitude was larger for the standard compared to each VMR task--an effect independent of the angle of rotation. In turn, the amplitude of the contingent negative variation (CNV)--an ERP related to cognitive and visuomotor integration for movement preparation--was systematically modulated with angle of rotation. Thus, we propose that the CNV represents an ERP correlate related to the cognitive and/or visuomotor transformation demands of increasing the angular separation between a stimulus and a movement goal.
对一个字符相对于其标准直立状态的角度差异进行感知判断(即心理旋转任务)会导致反应时间(RT)同时增加以及P300事件相关脑电位(ERP)的振幅发生调制。因此,有人提出P300代表与视觉旋转相关的神经过程。反过来,视觉运动心理旋转(VMR)任务要求伸手到达一个与目标偏离预定角度的位置。尽管VMR任务的反应时间会随着旋转倾斜角度的增加而呈线性增加,但尚未有研究探讨该任务是否通过类似于心理旋转任务的视觉旋转来支持。这是一个值得关注的问题,因为涉及非人类灵长类动物的开创性研究将VMR表现归因于初级运动皮层中方向调谐神经元的与运动相关的旋转。在这里,我们研究了标准伸手任务以及旋转角度为35°、70°和105°的VMR任务同时出现的行为和ERP特征。结果表明,与每个VMR任务相比,标准任务的P300振幅更大——这种效应与旋转角度无关。反过来,伴随负变化(CNV)的振幅——一种与运动准备的认知和视觉运动整合相关的ERP——会随着旋转角度而系统地调制。因此,我们提出CNV代表一种与增加刺激和运动目标之间角度分离的认知和/或视觉运动转换需求相关的ERP相关物。