Otero-Millan Jorge, Winnick Ariel, Kheradmand Amir
Department of Neurology, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Department of Otolaryngology-Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Front Neurol. 2018 Apr 6;9:192. doi: 10.3389/fneur.2018.00192. eCollection 2018.
Upright perception is a key aspect of orientation constancy, as we maintain a stable perception of the world despite continuous movements of our eyes, head, and body. Torsional position of the eyes can impact perception of upright by changing orientation of the images on the retina relative to gravity. Here, we investigated the role of temporoparietal cortex in upright perception with respect to ocular torsion, by means of the inhibitory effect of continuous theta burst transcranial magnetic stimulation (TMS). We used a subjective visual vertical (SVV) paradigm to track changes in upright perception, and a custom video method to track ocular torsion simultaneously. Twelve participants were tested during a lateral head tilt of 20° to the left. TMS at the posterior aspect of the supramarginal gyrus (SMGp) resulted in an average SVV shift in the opposite direction of the head tilt compared to a sham stimulation (1.8°). Ocular torsion following TMS at SMGp showed no significant change compared to the sham stimulation (-0.1°). Thus, changes in upright perception at SMGp were dissociated from ocular torsion. This finding suggests that perception of upright at SMGp is primarily related to sensory processing for spatial orientation, as opposed to subcortical regions that have direct influence on ocular torsion.
直立感知是定向恒常性的一个关键方面,因为尽管我们的眼睛、头部和身体不断运动,我们仍能保持对世界的稳定感知。眼睛的扭转位置会通过改变视网膜上图像相对于重力的方向来影响直立感知。在这里,我们通过连续theta爆发式经颅磁刺激(TMS)的抑制作用,研究了颞顶叶皮质在与眼扭转相关的直立感知中的作用。我们使用主观视觉垂直(SVV)范式来追踪直立感知的变化,并使用一种定制的视频方法来同时追踪眼扭转。12名参与者在头部向左倾斜20°时接受测试。与假刺激相比,在缘上回后部(SMGp)进行TMS导致平均SVV向与头部倾斜相反的方向偏移(1.8°)。与假刺激相比,在SMGp进行TMS后的眼扭转没有显著变化(-0.1°)。因此,SMGp处直立感知的变化与眼扭转无关。这一发现表明,SMGp处的直立感知主要与空间定向的感觉处理有关,而不是与对眼扭转有直接影响的皮层下区域有关。