Dose-dependent sensorimotor impairment in human ocular tracking after acute low-dose alcohol administration.

The Journal of Physiology Pub Date : 2021-02-01 Epub Date: 2020-12-17 DOI:10.1113/JP280395
Terence L Tyson, Nathan H Feick, Patrick F Cravalho, Erin E Flynn-Evans, Leland S Stone
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引用次数: 9

Abstract

Key points: Oculomotor behaviours are commonly used to evaluate sensorimotor disruption due to ethanol (EtOH). The current study demonstrates the dose-dependent impairment in oculomotor and ocular behaviours across a range of ultra-low BACs (<0.035%). Processing of target speed and direction, as well as pursuit eye movements, are significantly impaired at 0.015% BAC, suggesting impaired neural activity within brain regions associated with the visual processing of motion. Catch-up saccades during steady visual tracking of the moving target compensate for the reduced vigour of smooth eye movements that occurs with the ingestion of low-dose alcohol. Saccade dynamics start to become 'sluggish' at as low as 0.035% BAC. Pupillary light responses appear unaffected at BAC levels up to 0.065%.

Abstract: Changes in oculomotor behaviours are often used as metrics of sensorimotor disruption due to ethanol (EtOH); however, previous studies have focused on deficits at blood-alcohol concentrations (BACs) above about 0.04%. We investigated the dose dependence of the impairment in oculomotor and ocular behaviours caused by EtOH administration across a range of ultra-low BACs (≤0.035%). We took repeated measures of oculomotor and ocular performance from sixteen participants, both pre- and post-EtOH administration. To assess the neurological impacts across a wide range of brain areas and pathways, our protocol measured 21 largely independent performance metrics extracted from a range of behavioural responses ranging from ocular tracking of radial step-ramp stimuli, to eccentric gaze holding, to pupillary responses evoked by light flashes. Our results show significant impairment of pursuit and visual motion processing at 0.015% BAC, reflecting degraded neural processing within extrastriate cortical pathways. However, catch-up saccades largely compensate for the tracking displacement shortfall caused by low pursuit gain, although there still is significant residual retinal slip and thus degraded dynamic acuity. Furthermore, although saccades are more frequent, their dynamics are more sluggish (i.e. show lower peak velocities) starting at BAC levels as low as 0.035%. Small effects in eccentric gaze holding and no effect in pupillary response dynamics were observed at levels below 0.07%, showing the higher sensitivity of the pursuit response to very low levels of blood alcohol, under the conditions of our study.

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急性低剂量酒精给药后人眼追踪的剂量依赖性感觉运动损伤。
眼动行为通常用于评估乙醇(EtOH)引起的感觉运动中断。目前的研究表明,在一系列超低bac的情况下,眼动和眼行为的剂量依赖性损伤(摘要:眼动行为的变化通常被用作乙醇(EtOH)引起的感觉运动破坏的指标;然而,之前的研究主要集中在血液酒精浓度(BACs)超过0.04%的缺陷上。我们研究了在超低bac(≤0.035%)范围内EtOH给药引起的动眼力和眼行为损害的剂量依赖性。我们对16名参与者在etoh治疗前后的眼部运动和眼部表现进行了重复测量。为了评估大范围大脑区域和通路的神经学影响,我们的方案测量了21个很大程度上独立的性能指标,这些指标是从一系列行为反应中提取的,从径向台阶斜坡刺激的眼部跟踪到偏心凝视,再到闪光引起的瞳孔反应。我们的研究结果显示,0.015% BAC时,追求和视觉运动处理显著受损,反映了层外皮层通路内神经处理的退化。然而,追赶扫视很大程度上弥补了跟踪位移不足造成的低跟踪增益,尽管仍然有明显的残余视网膜滑移,从而降低动态敏锐度。此外,虽然扫视更频繁,但从BAC水平低至0.035%开始,其动态更缓慢(即显示更低的峰值速度)。在我们的研究条件下,在0.07%以下的水平下,观察到偏心凝视的影响很小,瞳孔反应动力学没有影响,这表明在非常低的血液酒精水平下,追求反应具有更高的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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