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胼胝体缺失和海马连合减少小鼠在利手学习中出现的短期和长期记忆缺陷。

Short-term and long-term memory deficits in handedness learning in mice with absent corpus callosum and reduced hippocampal commissure.

机构信息

Office TC336, Department of Signal Processing, Tampere University of Technology, P.O. Box 553, 33101 Tampere, Finland.

出版信息

Behav Brain Res. 2013 May 15;245:145-51. doi: 10.1016/j.bbr.2013.02.021. Epub 2013 Feb 27.

DOI:10.1016/j.bbr.2013.02.021
PMID:23454853
Abstract

The corpus callosum (CC) and hippocampal commissure (HC) are major interhemispheric connections whose role in brain function and behaviors is fascinating and contentious. Paw preference of laboratory mice is a genetically regulated, adaptive behavior, continuously shaped by training and learning. We studied variation with training in paw-preference in mice of the 9XCA/WahBid ('9XCA') recombinant inbred strain, selected for complete absence of the CC and severely reduced HC. We measured sequences of paw choices in 9XCA mice in two training sessions in unbiased test chambers, separated by one-week. We compared them with sequences of paw choices in model non-learner mice that have random unbiased paw choices and with those of C57BL/6JBid ('C57BL/6J') mice that have normal interhemispheric connections and learn a paw preference. Positive autocorrelation between successive paw choices during each session and change in paw-preference bias between sessions indicate that 9XCA mice have weak, but not null, learning skills. We tested the effect of the forebrain commissural defect on paw-preference learning with the independent BTBR T+ tf/J ('BTBR') mouse strain that has a genetically identical, non-complementing commissural trait. BTBR has weak short-term and long-term memory skills, identical to 9XCA. The results provide strong evidence that CC and HC contribute in memory function and formation of paw-preference biases.

摘要

胼胝体(CC)和海马连合(HC)是主要的半球间连接,它们在大脑功能和行为中的作用令人着迷且颇具争议。实验室小鼠的爪偏好是一种受遗传调控的适应性行为,不断受到训练和学习的影响。我们研究了在 9XCA/WahBid('9XCA')重组近交系小鼠中,随着训练而发生的爪偏好变化,该系小鼠因 CC 完全缺失和 HC 严重减少而被选择。我们在无偏置测试室中对 9XCA 小鼠进行了两次训练,在两次训练之间间隔一周,测量了它们的爪选择序列。我们将其与模型非学习者小鼠的爪选择序列进行了比较,这些小鼠具有随机无偏置的爪选择,还与 C57BL/6JBid('C57BL/6J')小鼠的爪选择序列进行了比较,这些小鼠具有正常的半球间连接并且可以形成爪偏好。在每次训练期间,连续爪选择之间的正自相关以及两次训练之间爪偏好偏差的变化表明,9XCA 小鼠具有较弱但非零的学习能力。我们用具有相同但不互补的连合特征的独立 BTBR T+ tf/J('BTBR')小鼠品系测试了前脑连合缺陷对爪偏好学习的影响。BTBR 具有与 9XCA 相同的短期和长期记忆能力较弱。结果提供了有力的证据表明 CC 和 HC 有助于记忆功能和爪偏好偏差的形成。

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