Rapid eye and hand responses in an interception task are differentially modulated by context-dependent predictability.

IF 2 4区 心理学 Q2 OPHTHALMOLOGY Journal of Vision Pub Date : 2024-11-04 DOI:10.1167/jov.24.12.10
Jolande Fooken, Parsa Balalaie, Kayne Park, J Randall Flanagan, Stephen H Scott
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Abstract

When catching a falling ball or avoiding a collision with traffic, humans can quickly generate eye and limb responses to unpredictable changes in their environment. Mechanisms of limb and oculomotor control when responding to sudden changes in the environment have mostly been investigated independently. Here, we investigated eye-hand coordination in a rapid interception task where human participants used a virtual paddle to intercept a moving target. The target moved vertically down a computer screen and could suddenly jump to the left or right. In high-certainty blocks, the target always jumped; in low-certainty blocks, the target only jumped in a portion of the trials. Further, we manipulated response urgency by varying the time of target jumps, with early jumps requiring less urgent responses and late jumps requiring more urgent responses. Our results highlight differential effects of certainty and urgency on eye-hand coordination. Participants initiated both eye and hand responses earlier for high-certainty compared with low-certainty blocks. Hand reaction times decreased and response vigor increased with increasing urgency levels. However, eye reaction times were lowest for medium-urgency levels and eye vigor was unaffected by urgency. Across all trials, we found a weak positive correlation between eye and hand responses. Taken together, these results suggest that the limb and oculomotor systems use similar early sensorimotor processing; however, rapid responses are modulated differentially to attain system-specific sensorimotor goals.

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在拦截任务中,眼和手的快速反应受上下文相关的可预测性的不同调节。
在接住掉落的球或躲避交通事故时,人类会对环境中不可预测的变化迅速做出眼部和肢体反应。对环境突变做出反应时的肢体和眼球运动控制机制的研究大多是独立进行的。在这里,我们研究了快速拦截任务中的眼手协调,在这项任务中,人类参与者使用虚拟桨来拦截移动目标。目标在电脑屏幕上垂直移动,并可能突然向左或向右跳跃。在高确定性区块中,目标总是跳跃;而在低确定性区块中,目标只在部分试验中跳跃。此外,我们还通过改变目标跳跃的时间来操纵反应的紧迫性,早期的跳跃要求较不紧迫的反应,而晚期的跳跃则要求较紧迫的反应。我们的结果凸显了确定性和紧迫性对眼手协调的不同影响。与低确定性区块相比,高确定性区块的参与者更早启动眼部和手部反应。随着紧急程度的增加,手部反应时间减少,反应力度增加。然而,在中等紧急程度时,眼部反应时间最少,眼部活力不受紧急程度的影响。在所有试验中,我们发现眼部反应和手部反应之间存在微弱的正相关性。总之,这些结果表明,肢体和眼部运动系统使用类似的早期感觉运动处理;然而,快速反应会受到不同的调节,以达到特定系统的感觉运动目标。
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来源期刊
Journal of Vision
Journal of Vision 医学-眼科学
CiteScore
2.90
自引率
5.60%
发文量
218
审稿时长
3-6 weeks
期刊介绍: Exploring all aspects of biological visual function, including spatial vision, perception, low vision, color vision and more, spanning the fields of neuroscience, psychology and psychophysics.
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