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A Cross-Species Investigation of Acetylcholine, Attention, and Feature Binding

机译:跨学科调查乙酰胆碱,注意和功能绑定。

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The binding problem is the brain's fundamental challenge to integrate sensory information to form a unified representation of a stimulus. A recent nonhuman animal model suggests that acetylcholine serves as the neuromodulatory substrate for feature binding. We hypothesized that this animal model of cholinergic contributions to feature binding may be an analogue of human attention. To test this hypothesis, we conducted a cross-species study in which rats and humans learned comparable intramodal feature-conjunction (FC) and feature-singleton (FS) tasks. We challenged the cholinergic system of rats using the muscarinic antagonist scopolamine (0.2 mg/kg) and challenged the attentional system of humans by dividing attention. The two manipulations yielded strikingly similar patterns of behavior, impairing FC acquisition, while sparing FS acquisition and FC retrieval. These cross-species findings support the hypothesis that cholinergically driven attentional processes are essential to feature binding at encoding, but are not required for retrieval of neural representations of bound stimuli.
机译:约束问题是大脑整合感官信息以形成刺激的统一表示的根本挑战。最近的非人类动物模型表明,乙酰胆碱充当特征结合的神经调节底物。我们假设这种胆碱能对特征结合的贡献的动物模型可能是人类关注的类似物。为了验证这一假设,我们进行了跨物种研究,其中老鼠和人类学会了类似的模态内特征结合(FC)和特征单一(FS)任务。我们使用毒蕈碱拮抗剂东pol碱(0.2 mg / kg)挑战大鼠的胆碱能系统,并通过分散注意力来挑战人类的注意力系统。两种操作产生了极为相似的行为模式,损害了FC的获取,同时保留了FS的获取和FC的检索。这些跨物种的发现支持以下假设:胆碱驱动的注意力过程对于编码时的特征绑定至关重要,但对于绑定刺激的神经表示的检索不是必需的。

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