Oros Nicolas, Chiba Andrea A, Nitz Douglas A, Krichmar Jeffrey L
Department of Cognitive Sciences, University of California-Irvine, Irvine, California 92697, USA.
Learn Mem. 2014 Jan 17;21(2):105-18. doi: 10.1101/lm.032433.113.
Learning to ignore irrelevant stimuli is essential to achieving efficient and fluid attention, and serves as the complement to increasing attention to relevant stimuli. The different cholinergic (ACh) subsystems within the basal forebrain regulate attention in distinct but complementary ways. ACh projections from the substantia innominata/nucleus basalis region (SI/nBM) to the neocortex are necessary to increase attention to relevant stimuli and have been well studied. Lesser known are ACh projections from the medial septum/vertical limb of the diagonal band (MS/VDB) to the hippocampus and the cingulate that are necessary to reduce attention to irrelevant stimuli. We developed a neural simulation to provide insight into how ACh can decrement attention using this distinct pathway from the MS/VDB. We tested the model in behavioral paradigms that require decremental attention. The model exhibits behavioral effects such as associative learning, latent inhibition, and persisting behavior. Lesioning the MS/VDB disrupts latent inhibition, and drastically increases perseverative behavior. Taken together, the model demonstrates that the ACh decremental pathway is necessary for appropriate learning and attention under dynamic circumstances and suggests a canonical neural architecture for decrementing attention.
学会忽略无关刺激对于实现高效且流畅的注意力至关重要,并且是增加对相关刺激注意力的补充。基底前脑内不同的胆碱能(ACh)子系统以独特但互补的方式调节注意力。从无名质/基底核区域(SI/nBM)到新皮层的ACh投射对于增加对相关刺激的注意力是必要的,并且已经得到了充分研究。鲜为人知的是,从内侧隔核/斜角带垂直支(MS/VDB)到海马体和扣带回的ACh投射对于减少对无关刺激的注意力是必要的。我们开发了一种神经模拟,以深入了解ACh如何利用这条从MS/VDB发出的独特通路来降低注意力。我们在需要降低注意力的行为范式中测试了该模型。该模型表现出诸如联想学习、潜伏抑制和持续行为等行为效应。损毁MS/VDB会破坏潜伏抑制,并大幅增加持续性行为。综上所述,该模型表明ACh递减通路对于动态环境下的适当学习和注意力是必要的,并提出了一种用于降低注意力的典型神经结构。