训练小鼠在头部约束下进行注意力转移。

IF 1.1 Q3 BIOLOGY
Katarina Kalajzic, John J Stout, Alexander C Mitchell, Timothy Spellman
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引用次数: 0

摘要

认知灵活性是指在不断变化的刺激-反应-奖励关联中动态调整行为以获得期望的一系列结果的过程。注意力转移是一种测试认知灵活性的多模式决策范式,可用于研究多种神经精神疾病(包括精神分裂症、阿尔茨海默病、抑郁症和成瘾)中被破坏的神经回路。用于测量认知灵活性的典型人类注意力集转移范式是威斯康星卡片分类测试,在该测试中,受试者根据周期性变化的规则对卡片进行分类,并通过利用正确和不正确结果形式的反馈来调整他们的行为。为了将这些测试转移到啮齿类动物模型中,之前的技术涉及在自由漫游的测试室中进行注意力设置转移范式,其中动物将线索与奖励位置联系起来。这里提出的方案涉及一个类似的注意力转移范式,在该范式中,限制水的小鼠头部被限制在一个平台上,必须跟踪周期性转换的刺激-反应-结果关联。老鼠必须学会将气味或胡须振动线索与触发水输送的二元定向舔反应联系起来。老鼠被训练通过舔两个喷嘴中的一个来做出反应,在这种情况下,正确的决定取决于当前的刺激规则。该方案通过将头部受限模式与双光子钙成像、光遗传学以及细胞外和细胞内生理学相结合,允许行为测量认知灵活性和神经活动。•头部约束设计,允许光遗传操作,体内成像,细胞外和细胞内电生理,和其他操作。•测量啮齿动物认知灵活性的注意力转移范式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Training Mice to Perform Attentional Set-Shifting Under Head Restraint.

Cognitive flexibility is a process that involves dynamically adapting behavior to obtain a desired series of outcomes during continuously changing stimulus-response-reward associations. Attentional set-shifting is a multi-modal decision-making paradigm that tests cognitive flexibility, which can be useful for investigating neural circuitry that is disrupted in multiple neuropsychiatric disorders, including schizophrenia, Alzheimer's disease, depression, and addiction. The canonical human attentional set-shifting paradigm for measuring cognitive flexibility is the Wisconsin Card Sorting Test, in which subjects sort cards based on rules that change periodically and adapt their behavior by utilizing feedback in the form of correct and incorrect outcomes. To transfer these tests to rodent models, previous techniques involved attentional set-shifting paradigms in free-roaming test chambers, in which animals associated cues with reward locations. The protocol presented here involves an analogous attentional set-shifting paradigm, in which water-restricted mice are head-restrained on a platform and must keep track of periodically switching stimulus-response-outcome associations. The mice must learn to associate odor or whisker vibration cues with a binary directional lick response that triggers water delivery. The mice are trained to respond by licking one of two spouts, in which the correct decision is dependent on the current stimulus rule. This protocol allows for behaviorally measuring cognitive flexibility alongside neural activity by pairing the head-restrained paradigm with 2-photon calcium imaging, optogenetics, and extracellular and intracellular physiology. Key features • Head-restraint design that allows for optogenetic manipulation, in vivo imaging, extracellular and intracellular electrophysiology, and other manipulations. • Attentional set-shifting paradigm that measures cognitive flexibility in rodents.

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