Niehof Nynke, Tramper Julian J, Doeller Christian F, Medendorp W Pieter
Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen, The Netherlands.
Donders Institute for Brain, Cognition and Behaviour, Radboud University, Nijmegen, The Netherlands.
J Vis. 2017 Oct 1;17(12):4. doi: 10.1167/17.12.4.
The brain can use multiple reference frames to code line orientation, including head-, object-, and gravity-centered references. If these frames change orientation, their representations must be updated to keep register with actual line orientation. We tested this internal updating during head rotation in roll, exploiting the rod-and-frame effect: The illusory tilt of a vertical line surrounded by a tilted visual frame. If line orientation is stored relative to gravity, these distortions should also affect the updating process. Alternatively, if coding is head- or frame-centered, updating errors should be related to the changes in their orientation. Ten subjects were instructed to memorize the orientation of a briefly flashed line, surrounded by a tilted visual frame, then rotate their head, and subsequently judge the orientation of a second line relative to the memorized first while the frame was upright. Results showed that updating errors were mostly related to the amount of subjective distortion of gravity at both the initial and final head orientation, rather than to the amount of intervening head rotation. In some subjects, a smaller part of the updating error was also related to the change of visual frame orientation. We conclude that the brain relies primarily on a gravity-based reference to remember line orientation during head roll.
大脑可以使用多个参考系来编码线条方向,包括以头部、物体和重力为中心的参考系。如果这些参考系改变方向,它们的表征必须更新,以与实际的线条方向保持一致。我们利用棒框效应,在头部侧倾旋转过程中测试了这种内部更新:一条垂直线被一个倾斜的视觉框架包围时产生的视错觉倾斜。如果线条方向是相对于重力存储的,那么这些扭曲也应该影响更新过程。或者,如果编码是以头部或框架为中心的,更新误差应该与它们方向的变化有关。我们指示10名受试者记住一条短暂闪现的线条的方向,该线条被一个倾斜的视觉框架包围,然后转动他们的头部,随后在框架直立时判断第二条线条相对于记忆中的第一条线条的方向。结果表明,更新误差主要与初始和最终头部方向上重力的主观扭曲量有关,而不是与中间的头部旋转量有关。在一些受试者中,更新误差的一小部分也与视觉框架方向的变化有关。我们得出结论,在头部侧倾过程中,大脑主要依靠基于重力的参考来记住线条方向。