Chen Jing, Valsecchi Matteo, Gegenfurtner Karl R
Abteilung Allgemeine Psychologie, Justus-Liebig-Universität Giessen, Giessen, Germany.
Abteilung Allgemeine Psychologie, Justus-Liebig-Universität Giessen, Giessen, Germany
J Neurophysiol. 2016 Jul 1;116(1):18-29. doi: 10.1152/jn.00184.2016. Epub 2016 Mar 23.
Several studies have indicated that human observers are very efficient at tracking self-generated hand movements with their gaze, yet it is not clear whether this is simply a by-product of the predictability of self-generated actions or if it results from a deeper coupling of the somatomotor and oculomotor systems. In a first behavioral experiment we compared pursuit performance as observers either followed their own finger or tracked a dot whose motion was externally generated but mimicked their finger motion. We found that even when the dot motion was completely predictable in terms of both onset time and kinematics, pursuit was not identical to that produced as the observers tracked their finger, as evidenced by increased rate of catch-up saccades and by the fact that in the initial phase of the movement gaze was lagging behind the dot, whereas it was ahead of the finger. In a second experiment we recorded EEG in the attempt to find a direct link between the finger motor preparation, indexed by the lateralized readiness potential (LRP) and the latency of smooth pursuit. After taking into account finger movement onset variability, we observed larger LRP amplitudes associated with earlier smooth pursuit onset across trials. The same held across subjects, where average LRP onset correlated with average eye latency. The evidence from both experiments concurs to indicate that a strong coupling exists between the motor systems leading to eye and finger movements and that simple top-down predictive signals are unlikely to support optimal coordination.
多项研究表明,人类观察者能够非常高效地用目光追踪自身手部动作,但尚不清楚这仅仅是自我产生动作的可预测性的副产品,还是源于躯体运动系统和眼动系统之间更深层次的耦合。在第一个行为实验中,我们比较了观察者追踪自己手指的情况以及追踪一个外部产生但模仿其手指运动的点时的追踪表现。我们发现,即使点的运动在起始时间和运动学方面完全可预测,追踪也与观察者追踪自己手指时产生的追踪不同,这表现为追赶扫视速率增加,以及在运动的初始阶段目光落后于点,而在追踪手指时目光则领先于手指。在第二个实验中,我们记录了脑电图,试图找到由侧化准备电位(LRP)索引的手指运动准备与平稳追踪潜伏期之间的直接联系。在考虑了手指运动起始的变异性之后,我们观察到在各次试验中,与更早的平稳追踪起始相关的LRP振幅更大。在不同受试者中也是如此,平均LRP起始与平均眼动潜伏期相关。两个实验的证据都一致表明,导致眼睛和手指运动的运动系统之间存在强耦合,并且简单的自上而下的预测信号不太可能支持最佳协调。