University of Birmingham, UK.
J Cogn Neurosci. 2011 Mar;23(3):661-9. doi: 10.1162/jocn.2010.21440. Epub 2010 Feb 10.
The oculomotor and spatial attention systems are interconnected. Whereas a link between motor commands and spatial shifts in visual attention is demonstrated, it is still unknown whether the recently discovered proprioceptive signal in somatosensory cortex impacts on visual attention, too. This study investigated whether visual targets near the perceived direction of gaze are detected more accurately than targets further away, despite the equal eccentricity of their retinal projections. We dissociated real and perceived eye position using left somatosensory repetitive transcranial magnetic stimulation (rTMS), which decreases cortical processing of eye muscle proprioceptive inflow and produces an underestimation of the rotation of the right eye. Participants detected near-threshold visual targets presented in the left or right visual hemifield at equal distance from fixation. We have previously shown that when the right eye is rotated to the left of the parasagittal plane, TMS produces an underestimation of this rotation, shifting perceived eye position to the right. Here we found that, in this condition, TMS also decreased target detection in the left visual hemifield and increased it in the right. This effect depended on the direction of rotation of the right eye. When the right eye was rotated rightward and TMS, we assume, shifted perceived gaze direction in opposite direction, leftward, visual accuracy decreased now in the right hemifield. We suggest that the proprioceptive eye position signal modulates the spatial distribution of visual processing resources, producing "pseudo-neglect" for objects located far relative to near the perceived direction of gaze.
眼球运动和空间注意系统相互关联。虽然已经证明了运动指令和视觉注意力在空间上的转移之间存在联系,但仍不清楚最近在躯体感觉皮层中发现的本体感觉信号是否也会影响视觉注意力。本研究调查了即使视觉目标在视网膜投影的等偏心度处,位于感知注视方向附近的目标是否比远离注视方向的目标更准确地被检测到,尽管它们的视网膜投影的偏心度相同。我们使用左侧躯体感觉重复经颅磁刺激(rTMS)来分离真实和感知的眼位置,rTMS 会降低眼肌本体感觉传入的皮层处理,并导致对右眼旋转的低估。参与者在与注视等距的左侧或右侧视觉半视野中检测近阈值视觉目标。我们之前已经表明,当右眼旋转到矢状面左侧时,TMS 会产生对该旋转的低估,从而将感知的眼位置向右移动。在这里,我们发现,在这种情况下,TMS 还降低了左侧视觉半视野中的目标检测,并增加了右侧的目标检测。这种效果取决于右眼的旋转方向。当右眼向右旋转并且 TMS 我们假设,以相反的方向,即向左,来转移感知的注视方向,现在右半视野中的视觉准确性降低。我们认为,本体感受眼位置信号调节视觉处理资源的空间分布,导致相对于感知注视方向远处的物体出现“假性忽视”。