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Probing the role of the vestibular system in motivation and reward-based attention

机译:探索前庭系统在基于动机和奖励的注意力中的作用

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摘要

The vestibular system has widespread connections in the central nervous system. Several activation loci following vestibular stimulations have been notably reported in deep, limbic areas that are otherwise difficult to reach and modulate in healthy subjects. Following preliminary evidence, suggesting that such stimulations might affect mood and affective processing, we wondered whether the vestibular system is also involved in motivation. Evolutionary accounts suggest that visuo-vestibular mismatches might have a role in preventing the search for and exploitation of goods that previously resulted in aversive reactions, as they would be a fine warning signal which follows the contact with or ingestion of noxious neurotoxins. The first question was thus whether vestibular stimulation alters sensitivity to reward. Secondly, we sought to assess whether attention is allocated in space differently when cued by highly motivational stimuli, and if this interplay is further modulated by the vestibular system. In order to evaluate both motivational and attentional assets, we administered a Posner-like cueing task to 30 healthy subjects concurrently receiving sham or galvanic vestibular stimulation (GVS; Left-Anodal and Right-Anodal configurations). The participants had to discriminate targets appearing in either exogenously cued or uncued locations (50% validity); cues predicted the amount of points (0, 2, or 10) and thus money that they could earn for a correct response. The results highlight a robust inhibition of return (IOR) (faster responses for invalidly-cued targets) which was not modulated by different levels of reward or GVS. Across all stimulation sessions, rewards exerted a powerful beneficial effect over performance: reaction times were faster when rewards were at stake. However, this effect was largest in sham, but greatly reduced in GVS conditions, most notably with the Right-Anodal configuration. This is the first evidence for a decreased sensitivity to rewards causally induced by a perturbation of the vestibular system. While future studies will shed light on its neural underpinnings and clinical implications, here we argue that GVS could be a safe and promising way to enrich our understanding of reward processes and eventually tackle the management of patients with aberrant sensitivity to rewards.
机译:前庭系统在中枢神经系统中具有广泛的连接。在前缘刺激后的几个激活位点已被报道在深部边缘区域,否则在健康受试者中很难达到和调节。根据初步证据,表明这种刺激可能会影响情绪和情感加工,我们想知道前庭系统是否也参与了动机。进化论认为,前庭-视觉不匹配可能在防止搜寻和利用以前引起厌恶反应的货物中发挥作用,因为它们将是与有害神经毒素接触或摄入后的一个很好的警告信号。因此,第一个问题是前庭刺激是否会改变对奖赏的敏感性。其次,我们试图评估当受到高度动机刺激的提示时,注意力在空间中的分配是否不同,以及前庭系统是否进一步调节了这种相互作用。为了评估动机和注意力资产,我们对30名同时接受假手术或电流前庭刺激(GVS;左阳极和右阳极配置)的健康受试者进行了类似Posner的提示任务。参与者必须区分出现在外在提示或未提示位置的目标(有效性为50%);提示预测点数(0、2或10),从而预测正确反应所能赚到的钱。结果突出显示了强大的回报抑制(IOR)(对于无效提示的目标,响应速度更快),并未受到不同级别的奖励或GVS的调节。在所有刺激过程中,奖励都对表现产生了强大的有益影响:奖励受到威胁时,反应时间更快。但是,这种影响在伪影中最大,但在GVS条件下却大大降低,最明显的是右阳极配置。这是对前庭系统微扰引起的奖赏敏感性降低的第一个证据。尽管未来的研究将揭示其神经基础和临床意义,但在这里我们认为GVS可能是一种安全且有前途的方式,可以丰富我们对奖励过程的理解,并最终解决对奖励异常敏感的患者的管理问题。

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