Laboratory for Visual Perception and Visuomotor Control, Faculty of Psychology, School of Health Sciences, University of Iceland, Oddi, 101, Reykjavík, Iceland.
Exp Brain Res. 2012 May;219(1):107-20. doi: 10.1007/s00221-012-3071-2. Epub 2012 Mar 28.
There are numerous asymmetries in anatomy between the nasal and temporal hemiretinae, which have been connected to various asymmetries in behavioral performance. These include asymmetries in Vernier acuity, saccade selection, and attentional function, in addition to some evidence for latency differences for saccadic eye movements. There is also evidence for stronger retinotectal neural projection from the nasal than the temporal hemiretina. There is, accordingly, good reason to predict asymmetries in saccadic performance depending on which hemifield the saccade trigger stimuli are presented in, but the evidence on this is mixed. We tested for asymmetries in both saccade latency and landing point accuracy in a variety of different saccade tasks. We found no evidence for any asymmetries in saccade latency and only modest evidence for asymmetries in landing point accuracy. While this lack of asymmetry is surprising in light of previous findings of attentional asymmetries, it may reflect that cortical input to midbrain eye control centers mitigates any retinal and retinotectal asymmetry.
眼球的鼻侧和颞侧半视网膜之间存在许多解剖学上的不对称,这些不对称与行为表现的各种不对称有关。这些不对称包括视锐度、眼跳选择和注意力功能的不对称,此外还有一些关于眼跳运动潜伏期差异的证据。还有证据表明,从鼻侧视网膜到视顶盖的神经投射比从颞侧视网膜要强。因此,根据眼跳触发刺激呈现的半视野,可以很好地预测眼跳表现的不对称,但这方面的证据是混杂的。我们在各种不同的眼跳任务中测试了眼跳潜伏期和着靶点准确性的不对称性。我们没有发现眼跳潜伏期的任何不对称性,只有着靶点准确性的适度不对称性的证据。尽管考虑到先前注意力不对称的发现,这种缺乏不对称性令人惊讶,但这可能反映了中脑眼控制中心的皮质输入减轻了任何视网膜和视顶盖的不对称性。