Eisen-Enosh Auria, Farah Nairouz, Polat Uri, Mandel Yossi
School of Optometry and Vision Science, Bar-Ilan University, Ramat-Gan, Israel.
Institute for Nanotechnology and Advanced Materials (BINA), Bar-Ilan University, Ramat Gan, Israel.
iScience. 2023 Jan 12;26(2):105960. doi: 10.1016/j.isci.2023.105960. eCollection 2023 Feb 17.
Integration of information over the CNS is an important neural process that affects our ability to perceive and react to the environment. The visual system is required to continuously integrate information arriving from two different sources (the eyes) to create a coherent percept with high spatiotemporal precision. Although this neural integration of information is assumed to be critical for visual performance, it can be impaired under some pathological or developmental conditions. Here we took advantage of a unique developmental condition, amblyopia ("lazy eye"), which is characterized by an impaired temporal synchronization between the two eyes, to meticulously study the effect of synchronization on the integration of binocular visual information. We measured the eyes' asynchrony and compensated for it (with millisecond temporal resolution) by providing time-shifted stimuli to the eyes. We found that the re-synchronization of the ocular input elicited a significant improvement in visual functions, and binocular functions, such as binocular summation and stereopsis, were regained. This phenomenon was also evident in neurophysiological measures. Our results can shed light on other neural processing aspects and might also have translational relevance for the field of training, rehabilitation, and perceptual learning.
中枢神经系统(CNS)对信息的整合是一个重要的神经过程,它影响着我们感知环境并对其做出反应的能力。视觉系统需要持续整合来自两个不同来源(双眼)的信息,以创建具有高时空精度的连贯感知。尽管这种信息的神经整合被认为对视觉表现至关重要,但在某些病理或发育条件下可能会受损。在这里,我们利用一种独特的发育状况——弱视(“懒眼”),其特征是双眼之间的颞部同步受损,来精心研究同步对双眼视觉信息整合的影响。我们测量了双眼的异步性,并通过向双眼提供时间偏移的刺激(以毫秒级的时间分辨率)来对其进行补偿。我们发现,眼部输入的重新同步引发了视觉功能的显著改善,并且双眼功能,如双眼总和和立体视觉,得以恢复。这种现象在神经生理学测量中也很明显。我们的结果可以为其他神经处理方面提供启示,并且可能对训练、康复和感知学习领域也具有转化意义。