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成年神经发生促进空间交替水迷宫任务中高效、非特异性的搜索策略。

Adult neurogenesis promotes efficient, nonspecific search strategies in a spatial alternation water maze task.

机构信息

Department of Psychology, Djavad Mowafaghian Centre for Brain Health, University of British Columbia, 2211 Wesbrook Mall, Vancouver, British Columbia V6T 2B5, Canada.

Department of Psychology, Djavad Mowafaghian Centre for Brain Health, University of British Columbia, 2211 Wesbrook Mall, Vancouver, British Columbia V6T 2B5, Canada.

出版信息

Behav Brain Res. 2019 Dec 30;376:112151. doi: 10.1016/j.bbr.2019.112151. Epub 2019 Aug 22.

Abstract

Goal-directed navigation requires learning strategies that are efficient and minimize costs. In some cases it may be desirable to flexibly adjust behavioral responses depending on the cues that vary from one episode to the next. In others, successful navigation might be achieved with inflexible, habit-like responses that reduce cognitive load. Adult neurogenesis is believed to contribute to the spatial processing functions of the hippocampus, particularly when behavioral flexibility is required. However, little is known about the role of neurogenesis in spatial navigation when goals are unpredictable or change repeatedly according to certain rules. We hypothesized that neurogenesis is necessary in a spatial navigation task that involves different patterns of reinforcement. Intact and neurogenesis-deficient rats were trained to escape to one of two possible platform locations in a spatial water maze. The platform either repeated in the same location for all trials in a day, alternated between two locations across trials, or randomly moved between the two locations. Neurogenesis selectively enhanced escape performance in the alternating condition, but not by improving platform choice accuracy. Instead, neurogenesis-intact rats made fewer search errors and developed an efficient habit-like strategy where they consistently swam to a preferred location. If the platform was not present, they proceeded to the other possible location. In contrast, neurogenesis-deficient rats were indecisive and navigationally less-efficient. Thus, in conditions where goals follow a predictable spatiotemporal pattern, adult neurogenesis promotes the adoption of navigation strategies that are spatially nonspecific but, nonetheless, accurate and efficient.

摘要

目标导向的导航需要高效且最小化成本的学习策略。在某些情况下,根据每个情节中不同的线索灵活调整行为反应可能是可取的。在其他情况下,成功的导航可能需要采用不灵活的、习惯样的反应来降低认知负荷。成人神经发生被认为有助于海马体的空间处理功能,特别是在需要行为灵活性的情况下。然而,对于目标不可预测或根据某些规则反复变化的空间导航中神经发生的作用知之甚少。我们假设,在涉及不同强化模式的空间导航任务中,神经发生是必要的。完整和神经发生缺陷的大鼠接受训练,以在空间水迷宫中的两个可能平台位置之一中逃脱。平台要么在一天中的所有试验中都在同一位置重复,要么在试验之间在两个位置之间交替,要么在两个位置之间随机移动。神经发生选择性地增强了交替条件下的逃避表现,但不能通过提高平台选择准确性来实现。相反,完整神经发生的大鼠减少了搜索错误,并形成了一种有效的习惯样策略,即它们始终游向首选位置。如果平台不存在,它们会前往另一个可能的位置。相比之下,神经发生缺陷的大鼠犹豫不决,导航效率较低。因此,在目标遵循可预测的时空模式的情况下,成人神经发生促进了采用空间非特异性但准确和高效的导航策略。

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