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背侧丘觉核失活导致空间选择偏向而无感觉缺失。

Dorsal pulvinar inactivation leads to spatial selection bias without perceptual deficit.

机构信息

Decision and Awareness Group, Cognitive Neuroscience Laboratory, German Primate Center, Leibniz Institute for Primate Research, Kellnerweg 4, 37077, Göttingen, Germany.

Department of Cognitive Neurology, University of Goettingen, Robert-Koch-Str. 40, 37075, Göttingen, Germany.

出版信息

Sci Rep. 2024 Jun 4;14(1):12852. doi: 10.1038/s41598-024-62056-5.

Abstract

The dorsal pulvinar has been implicated in visuospatial attentional and perceptual confidence processing. Pulvinar lesions in humans and monkeys lead to spatial neglect symptoms, including an overt spatial saccade bias during free choices. However, it remains unclear whether disrupting the dorsal pulvinar during target selection that relies on a perceptual decision leads to a perceptual impairment or a more general spatial orienting and choice deficit. To address this question, we reversibly inactivated the unilateral dorsal pulvinar by injecting GABA-A agonist THIP while two macaque monkeys performed a color discrimination saccade task with varying perceptual difficulty. We used Signal Detection Theory and simulations to dissociate perceptual sensitivity (d-prime) and spatial selection bias (response criterion) effects. We expected a decrease in d-prime if dorsal pulvinar affects perceptual discrimination and a shift in response criterion if dorsal pulvinar is mainly involved in spatial orienting. After the inactivation, we observed response criterion shifts away from contralesional stimuli, especially when two competing stimuli in opposite hemifields were present. Notably, the d-prime and overall accuracy remained largely unaffected. Our results underline the critical contribution of the dorsal pulvinar to spatial orienting and action selection while showing it to be less important for visual perceptual discrimination.

摘要

背丘被牵连到视空间注意和知觉信心处理中。人类和猴子的背丘损伤导致空间忽视症状,包括在自由选择期间明显的空间扫视偏向。然而,在依赖知觉决策的目标选择期间破坏背丘是否会导致知觉损伤还是更普遍的空间定向和选择缺陷仍然不清楚。为了解决这个问题,我们在两只猕猴执行具有不同知觉难度的颜色辨别扫视任务时,通过注射 GABA-A 激动剂 THIP 可逆地使单侧背丘失活。我们使用信号检测理论和模拟来区分知觉敏感性(d-prime)和空间选择偏差(反应标准)效应。我们预计,如果背丘影响知觉辨别,d-prime 会下降,如果背丘主要参与空间定向,反应标准会发生转移。失活后,我们观察到反应标准从对侧刺激转移,尤其是当两个在对侧视野中的竞争刺激存在时。值得注意的是,d-prime 和整体准确性基本不受影响。我们的结果强调了背丘对空间定向和动作选择的关键贡献,同时表明它对视觉知觉辨别不太重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/880d/11150452/9341ac0552cd/41598_2024_62056_Fig1_HTML.jpg

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