Department of Neurorehabilitation, Hospital of Vipiteno-Sterzing (SABES-ASDAA), Margarethenstr. 24, 39049, Vipiteno-Sterzing, BZ, Italy.
IDIBAPS (Institut d'Investigació August Pi i Sunyer), Facultat de Medicina, University of Barcelona, Barcelona, Spain.
Sci Rep. 2021 Feb 25;11(1):4618. doi: 10.1038/s41598-021-84241-6.
The excitability of brainstem circuitries mediating defensive blinking in response to abrupt sensory inputs is continuously modulated by cortical areas, e.g., the hand-blink reflex (HBR), elicited by intense electrical median nerve stimulation, is enhanced when the stimulated hand is close to the face, with the behavioural purpose to optimize self-protection from increased threat. Here we investigated whether such cortically mediated HBR facilitation can be influenced by prepulse inhibition (PPI), which is known to occur entirely at the subcortical level. Twenty healthy volunteers underwent HBR recordings in five experimental conditions. In conditions 1 and 2, the stimulated hand was held either near (1) or far (2) from the face, respectively. In conditions 3 and 4, stimulation of the hand near the face was preceded by a peri-liminal prepulse to the index finger of the contralateral hand held either near (3) or far from the face (4). In condition 5, participants self-triggered the stimulus eliciting the HBR. We observed a reproducible HBR in 14 out of 20 participants and measured onset latency and area of the HBR in orbicularis oculi muscles bilaterally. HBR area decreased and latency increased in condition 2 relative to condition 1; HBR area decreased and latency increased markedly in condition 3, and somewhat less in condition 4, relative to conditions 1 and 2; self-stimulation (condition 5) also suppressed HBRs, but less than prepulses. These findings indicate that PPI of the HBR is more robust than the cognitive modulation exerted by top-down cortical projections. Possibly, an attentional shift to a prepulse may serve to reduce blinking in response to perturbation when it is convenient, in a given situation, not to interrupt ongoing visual processing.
脑干回路介导防御性眨眼以响应突然的感觉输入的兴奋性持续受到皮质区域的调制,例如,由强烈的正中神经电刺激引起的手眨眼反射(HBR)在受刺激的手靠近面部时增强,其行为目的是优化自我保护免受增加的威胁。在这里,我们研究了这种皮质介导的 HBR 易化是否可以受到预脉冲抑制(PPI)的影响,已知 PPI 完全发生在皮质下水平。二十名健康志愿者在五种实验条件下接受 HBR 记录。在条件 1 和 2 中,受刺激的手分别靠近(1)或远离(2)面部。在条件 3 和 4 中,在靠近面部的手受到刺激之前,用对侧手的食指给予阈下预脉冲,该食指分别靠近(3)或远离面部(4)。在条件 5 中,参与者自行触发引起 HBR 的刺激。我们在 20 名参与者中的 14 名中观察到可重复的 HBR,并测量了双侧眼轮匝肌的 HBR 潜伏期和面积。与条件 1 相比,条件 2 中的 HBR 面积减小且潜伏期增加;与条件 1 和 2 相比,条件 3 中的 HBR 面积明显减小且潜伏期明显增加,条件 4 中的 HBR 面积略有减小;自我刺激(条件 5)也抑制了 HBR,但不如预脉冲强烈。这些发现表明,HBR 的 PPI 比自上而下的皮质投射施加的认知调节更为稳健。可能,对预脉冲的注意力转移可能有助于在给定情况下在方便的时候减少对干扰的眨眼,而不是中断正在进行的视觉处理。