Psychology of Conflict, Risk and Safety, Department of Technology, Human and Institutional Behaviour, Faculty of Behavioural, Management and Social Sciences, University of Twente, Enschede, The Netherlands.
School of Psychology, University College Dublin, Dublin, Ireland.
Exp Brain Res. 2024 Mar;242(3):599-618. doi: 10.1007/s00221-023-06767-7. Epub 2024 Jan 16.
The ability to inhibit an already initiated response is crucial for navigating the environment. However, it is unclear which characteristics make stop-signals more likely to be processed efficiently. In three consecutive studies, we demonstrate that stop-signal modality and location are key factors that influence reactive response inhibition. Study 1 shows that tactile stop-signals lead to better performance compared to visual stop-signals in an otherwise visual choice-reaction task. Results of Study 2 reveal that the location of the stop-signal matters. Specifically, if a visual stop-signal is presented at a different location compared to the visual go-signal, then stopping performance is enhanced. Extending these results, study 3 suggests that tactile stop-signals and location-distinct visual stop-signals retain their performance enhancing effect when visual distractors are presented at the location of the go-signal. In sum, these results confirm that stop-signal modality and location influence reactive response inhibition, even in the face of concurrent distractors. Future research may extend and generalize these findings to other cross-modal setups.
抑制已启动反应的能力对于适应环境至关重要。然而,目前尚不清楚哪些特征使得停止信号更有可能被有效地处理。在三项连续的研究中,我们证明了停止信号的模态和位置是影响反应性抑制的关键因素。研究 1 表明,在其他视觉选择反应任务中,触觉停止信号比视觉停止信号表现更好。研究 2 的结果揭示了停止信号位置的重要性。具体来说,如果视觉停止信号出现在与视觉启动信号不同的位置,那么停止表现会得到增强。扩展这些结果,研究 3 表明,当视觉干扰物出现在启动信号的位置时,触觉停止信号和位置独特的视觉停止信号仍然具有增强表现的效果。总之,这些结果证实了停止信号的模态和位置会影响反应性抑制,即使在存在并发干扰物的情况下也是如此。未来的研究可能会将这些发现扩展和推广到其他跨模态设置中。