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先前的背景在听觉Oddball任务和前额叶皮质多任务建模中影响运动脑区。

Prior context influences motor brain areas in an auditory oddball task and prefrontal cortex multitasking modelling.

作者信息

Mugruza-Vassallo Carlos A, Potter Douglas D, Tsiora Stamatina, Macfarlane Jennifer A, Maxwell Adele

机构信息

Grupo de Investigación de Computación Y Neurociencia Cognitiva, Facultad de Ingeniería Y Gestión, Universidad Nacional Tecnológica de Lima Sur - UNTELS, Lima, Perú.

Neuroscience and Development Group, Arts and Science, University of Dundee, Dundee, UK.

出版信息

Brain Inform. 2021 Mar 21;8(1):5. doi: 10.1186/s40708-021-00124-6.

Abstract

In this study, the relationship of orienting of attention, motor control and the Stimulus- (SDN) and Goal-Driven Networks (GDN) was explored through an innovative method for fMRI analysis considering all voxels in four experimental conditions: standard target (Goal; G), novel (N), neutral (Z) and noisy target (NG). First, average reaction times (RTs) for each condition were calculated. In the second-level analysis, 'distracted' participants, as indicated by slower RTs, evoked brain activations and differences in both hemispheres' neural networks for selective attention, while the participants, as a whole, demonstrated mainly left cortical and subcortical activations. A context analysis was run in the behaviourally distracted participant group contrasting the trials immediately prior to the G trials, namely one of the Z, N or NG conditions, i.e. Z.G, N.G, NG.G. Results showed different prefrontal activations dependent on prior context in the auditory modality, recruiting between 1 to 10 prefrontal areas. The higher the motor response and influence of the previous novel stimulus, the more prefrontal areas were engaged, which extends the findings of hierarchical studies of prefrontal control of attention and better explains how auditory processing interferes with movement. Also, the current study addressed how subcortical loops and models of previous motor response affected the signal processing of the novel stimulus, when this was presented laterally or simultaneously with the target. This multitasking model could enhance our understanding on how an auditory stimulus is affecting motor responses in a way that is self-induced, by taking into account prior context, as demonstrated in the standard condition and as supported by Pulvinar activations complementing visual findings. Moreover, current BCI works address some multimodal stimulus-driven systems.

摘要

在本研究中,通过一种创新的功能磁共振成像(fMRI)分析方法,在四种实验条件下考虑所有体素,探索了注意力定向、运动控制与刺激驱动网络(SDN)和目标驱动网络(GDN)之间的关系,这四种实验条件分别为:标准目标(目标;G)、新异刺激(N)、中性刺激(Z)和噪声目标(NG)。首先,计算每种条件下的平均反应时间(RTs)。在二级分析中,反应时间较慢表明“注意力分散”的参与者在选择性注意的两个半球神经网络中诱发了大脑激活和差异,而总体参与者主要表现为左侧皮质和皮质下激活。对行为上注意力分散的参与者组进行了情境分析,对比了紧接在G试验之前的试验,即Z、N或NG条件之一,即Z.G、N.G、NG.G。结果表明,在听觉模态中,前额叶激活因先前情境而异,涉及1至10个前额叶区域。先前新异刺激的运动反应和影响越高,参与的前额叶区域就越多,这扩展了前额叶对注意力控制的层级研究结果,并更好地解释了听觉加工如何干扰运动。此外,本研究还探讨了当下新颖刺激与目标同时或从侧面呈现时,皮质下环路和先前运动反应模型如何影响新颖刺激的信号处理。这种多任务模型可以增强我们对听觉刺激如何以一种自我诱导的方式影响运动反应的理解,如在标准条件下所证明的,并得到丘脑枕激活对视觉结果的补充支持。此外,当前的脑机接口研究涉及一些多模态刺激驱动系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35b3/7982371/83bc3a077c21/40708_2021_124_Fig1_HTML.jpg

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