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Visuomotor mental rotation: reaction time is not a function of the angle of rotation.

机译:视觉运动性精神旋转:反应时间不是旋转角度的函数。

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The goal of the present investigation was to determine whether the anti-pointing task (i.e., pointing to a location 180 degrees from a visual cue [M. Heath, A. Maraj, A. Gradkowski, G. Binsted, Anti-pointing is mediated by a perceptual bias of target location in left and right visual space, Exp. Brain Res. 192 (2009) 275-286]) and a 90 degrees -rotated-pointing task are supported by a similar cognitive strategy. Previous work evaluating visuomotor mental rotation (MR) has reported a monotonic increase in reaction time (RT) as a function of the angle of rotation [A.P. Georgopoulos, G. Pellizzer, The mental and the neural: psychological and neural studies mental rotation and memory scanning, Neuropsychologia 33 (1995) 1531-1547]. Interestingly, however, anti-pointing movements have not been evaluated in concert with intermediary angles of rotation. We therefore examined RT for center-out pointing movements in four tasks: pro-pointing (PRO), anti-pointing (ANTI), and 90 degrees clockwise (CW90) and counter-clockwise (CCW90) pointing. We found that response latencies for PRO responses were faster than ANTI responses, which in turn were faster than CW90 and CCW90 responses. These findings counter the notion that the angle of rotation influences the speed of visuomotor MR. Instead, we posit that visuomotor MR is supported by a serial process requiring the suppression of a stimulus-driven response followed by voluntary response generation. Further, we suggest that preparation of the voluntary response is cognitively less demanding for the ANTI task because the sensorimotor transformations underlying such an action are completed within the same plane as the stimulus-driven response. In contrast, the cognitive demands associated with CW90 and CCW90 are more complex because the action requires the transformation of response parameters in a movement plane orthogonal to the original - and suppressed - stimulus-driven response.
机译:本研究的目的是确定反指向任务(即指向与视觉提示成180度的位置[M. Heath,A. Maraj,A. Gradkowski,G. Binsted,反指向)通过左右视觉空间中目标位置的感知偏差,Exp。Brain Res。192(2009)275-286]和90度旋转指向任务得到了类似的认知策略的支持。先前评估视觉运动性脑旋转(MR)的工作已经报告了反应时间(RT)随旋转角度的变化而单调增加[A.P. Georgopoulos,G。Pellizzer,“心理与神经:心理和神经研究,心理旋转和记忆扫描,Neuropsychologia 33(1995)1531-1547]。然而,有趣的是,尚未针对中间旋转角度对防指向运动进行评估。因此,我们在四个任务中检查了RT的居中指向运动:正向(PRO),反向(ANTI)和顺时针(CW90)和逆时针(CCW90)90度指向。我们发现PRO响应的响应延迟比ANTI响应快,而ANTI响应比CW90和CCW90响应快。这些发现与旋转角度影响粘性运动MR的速度的观点相反。取而代之的是,我们假定视觉运动MR是由一系列过程支持的,该过程要求抑制刺激驱动的反应,然后产生自愿反应。此外,我们建议,在认知上,对自发性反兴奋剂任务的需求较少,因为基于这种作用的感觉运动转换是在与刺激驱动的反应相同的平面内完成的,因此对ANTI任务的认知要求较低。相反,与CW90和CCW90相关的认知需求更加复杂,因为该动作需要在与原始(受抑制的)刺激驱动响应正交的运动平面中转换响应参数。

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