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更高视觉区域的功能磁共振成像神经反馈与知觉偏差

fMRI neurofeedback of higher visual areas and perceptual biases.

作者信息

Habes I, Rushton S, Johnston S J, Sokunbi M O, Barawi K, Brosnan M, Daly T, Ihssen N, Linden D E J

机构信息

Cardiff University Brain Research Imaging Centre, School of Psychology, Cardiff University, Cardiff CF10 3AT, UK.

School of Human and Health Sciences, Department of Psychology, Swansea University, Swansea SA2 8PP, UK.

出版信息

Neuropsychologia. 2016 May;85:208-15. doi: 10.1016/j.neuropsychologia.2016.03.031. Epub 2016 Mar 26.

Abstract

The self-regulation of brain activation via neurofeedback training offers a method to study the relationship between brain areas and perception in a more direct manner than the conventional mapping of brain responses to different types of stimuli. The current proof-of-concept study aimed to demonstrate that healthy volunteers can self-regulate activity in the parahippocampal place area (PPA) over the fusiform face area (FFA). Both areas are involved in higher order visual processing and are activated during the imagery of scenes and faces respectively. Participants (N=9) were required to upregulate PPA relative to FFA activity, and all succeeded at the task, with imagery of scenes being the most commonly reported mental strategy. A control group (N=8) underwent the same imagery and testing procedure, albeit without neurofeedback, in a mock MR scanner to account for any non-specific training effects. The upregulation of PPA activity occurred concurrently with activation of prefrontal and parietal areas, which have been associated with ideation and mental image generation. We tested whether successful upregulation of the PPA relative to FFA had consequences on perception by assessing bistable perception of faces and houses in a binocular rivalry task (before and after the scanning sessions) and categorisation of faces and scenes presented in transparent composite images (during scanning, interleaved with the self-regulation blocks). Contrary to our expectations, upregulation of the PPA did not alter the duration of face or house perception in the rivalry task and response speed and accuracy in the categorisation task. This conclusion was supported by the results of another control experiment (N=10 healthy participants) that involved intensive exposure to category-specific stimuli and did not show any behavioural or perceptual changes. We conclude that differential self-regulation of higher visual areas can be achieved, but that perceptual biases under conditions of stimulus rivalry are relatively robust against such internal modulation of localised brain activity. This study sets the basis for future investigations of perceptual and behavioural consequences of localised self-regulation of neural activity.

摘要

通过神经反馈训练实现大脑激活的自我调节,提供了一种比传统的将大脑对不同类型刺激的反应进行映射更为直接的方法,来研究脑区与感知之间的关系。当前的概念验证研究旨在证明,健康志愿者能够在梭状回面孔区(FFA)之上自我调节海马旁回位置区(PPA)的活动。这两个区域都参与高级视觉处理,分别在场景和面孔的想象过程中被激活。参与者(N = 9)被要求相对于FFA活动上调PPA,所有参与者都成功完成了任务,其中场景想象是最常报告的心理策略。一个对照组(N = 8)在模拟磁共振扫描仪中接受相同的想象和测试程序,尽管没有神经反馈,以考虑任何非特异性训练效应。PPA活动的上调与前额叶和顶叶区域的激活同时发生,这些区域与构思和心理图像生成有关。我们通过评估双眼竞争任务(扫描前后)中面孔和房屋的双稳态感知以及透明合成图像中呈现的面孔和场景的分类(扫描期间,与自我调节块交错进行),来测试相对于FFA成功上调PPA是否会对感知产生影响。与我们的预期相反,PPA的上调并未改变竞争任务中面孔或房屋感知的持续时间,也未改变分类任务中的反应速度和准确性。这一结论得到了另一个对照实验(N = 10名健康参与者)结果的支持,该实验涉及密集暴露于特定类别的刺激,并未显示出任何行为或感知变化。我们得出结论,虽然可以实现对高级视觉区域的差异性自我调节,但在刺激竞争条件下的感知偏差相对不受这种局部脑活动内部调制的影响。这项研究为未来研究神经活动局部自我调节的感知和行为后果奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb8e/4863521/2acbbebc5009/gr1.jpg

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