经颅磁刺激前额视野后脉冲脉冲对瞳孔和跳眼指标的时间-任务效应

IF 2 Q3 NEUROSCIENCES
Chin-An Wang , Neil G. Muggleton , Yi-Hsuan Chang , Cesar Barquero , Ying-Chun Kuo
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引用次数: 0

摘要

瞳孔大小主要受环境亮度的影响而不断变化。这些变化被称为瞳孔光反射(PLR),即瞳孔在对光的反应中短暂收缩。PLR运动学为自主神经系统功能提供了有价值的见解,具有重要的临床应用。最近的研究表明,注意在瞳孔调节中起着重要的作用,而涉及额眼场和上丘的回路在控制瞳孔调节中起着因果作用。然而,人类FEF在这些瞳孔反应中的作用的研究有限,其对PLR指标的影响仍未被探索。此外,尽管连续脉冲刺激(cTBS)的方案是完善的,但cTBS后的中断期在瞳孔反应中尚未得到检验。我们的研究旨在探讨FEF cTBS对瞳孔和眼动指标的影响,这些指标与执行任务所花费的时间有关(称为任务时间)。我们提出了一个明亮的刺激来诱导视觉和记忆延迟扫视任务在右FEF或顶点上的PLR。与顶点cTBS相比,FEF cTBS导致基线瞳孔大小,峰值收缩速度和幅度减小。此外,在两种刺激条件下,任务时间对基线瞳孔大小、峰值振幅和峰值时间的影响存在差异。相比之下,在两种情况下,任务时间对跳跃性指标的影响不那么明显。总之,我们的研究提供了第一个证据,证明FEF cTBS影响人类PLR指标,并且这些影响是由任务时间调节的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time-on-task effects on human pupillary and saccadic metrics after theta burst transcranial magnetic stimulation over the frontal eye field

Pupil size undergoes constant changes primarily influenced by ambient luminance. These changes are referred to as the pupillary light reflex (PLR), where the pupil transiently constricts in response to light. PLR kinematics provides valuable insights into autonomic nervous system function and have significant clinical applications. Recent research indicates that attention plays a role in modulating the PLR, and the circuit involving the frontal eye field (FEF) and superior colliculus is causally involved in controlling this pupillary modulation. However, there is limited research exploring the role of the human FEF in these pupillary responses, and its impact on PLR metrics remains unexplored. Additionally, although the protocol of continuous theta-burst stimulation (cTBS) is well-established, the period of disruption after cTBS is yet to be examined in pupillary responses. Our study aimed to investigate the effects of FEF cTBS on pupillary and saccadic metrics in relation to time spent performing a task (referred to as time-on-task). We presented a bright stimulus to induce the PLR in visual- and memory-delay saccade tasks following cTBS over the right FEF or vertex. FEF cTBS, compared to vertex cTBS, resulted in decreased baseline pupil size, peak constriction velocities, and amplitude. Furthermore, the time-on-task effects on baseline pupil size, peak amplitude, and peak time differed between the two stimulation conditions. In contrast, the time-on-task effects on saccadic metrics were less pronounced between the two conditions. In summary, our study provides the first evidence that FEF cTBS affects human PLR metrics and that these effects are modulated by time-on-task.

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来源期刊
IBRO Neuroscience Reports
IBRO Neuroscience Reports Neuroscience-Neuroscience (all)
CiteScore
2.80
自引率
0.00%
发文量
99
审稿时长
14 weeks
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