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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >CRITICAL ROLE OF THE NEURAL PATHWAY FROM THE INTERMEDIATE MEDIAL MESOPALLIUM TO THE INTERMEDIATE HYPERPALLIUM APICALE IN FILIAL IMPRINTING OF DOMESTIC CHICKS (GALLUS GALLUS DOMESTICUS)
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CRITICAL ROLE OF THE NEURAL PATHWAY FROM THE INTERMEDIATE MEDIAL MESOPALLIUM TO THE INTERMEDIATE HYPERPALLIUM APICALE IN FILIAL IMPRINTING OF DOMESTIC CHICKS (GALLUS GALLUS DOMESTICUS)

机译:从中间内侧金属间皮到中间钯的神经通路的神经通路在家禽的终末印记中的重要作用(GALLUS GALLUS DOMESTICUS)

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Filial imprinting in precocial birds is a useful model for studying early learning and cognitive development, as it is characterized by a well-defined sensitive or critical period. We recently showed that the thyroid hormone 3,5,3'-triiodothyronine (T-3) determines the onset of the sensitive period. Moreover, exogenous injection of T-3 into the intermediate medial mesopallium (IMM) region (analogous to the associative cortex in mammals) enables imprinting even on post-hatch day 4 or 6 when the sensitive period has been terminated. However, the neural mechanisms downstream from T-3 action in the IMM region remain elusive. Here, we analyzed the functional involvement of the intermediate hyperpallium apicale (IMHA) in T-3 action. Bilateral excitotoxic ablation of the IMHA prevented imprinting in newly hatched chicks, and also suppressed the recovery of the sensitive period by systemic intra-venous or localized intra-IMM injection of T-3 in day-4 chicks. In contrast to the effect in the IMM, direct injection of T-3 into the IMHA did not enable imprinting in day-4 chicks. Moreover, bilateral ablation of IMHA after imprinting training impaired recall. These results suggest that the IMHA is critical for memory acquisition downstream following T-3 action in the IMM and further, that it receives and retains information stored in the IMM for recall. Furthermore, both an avian adeno-associated viral construct containing an anterograde tracer (wheat-germ agglutinin) and a retrograde tracer (cholera toxin subunit B) revealed neural connections from the IMM to the IMHA. Taken together, our findings suggest that hierarchical processes from the primary area (IMM) to the secondary area (IMHA) are required for imprinting. (C) 2015 The Authors. Published by Elsevier Ltd. on behalf of IBRO.
机译:早熟鸟类的孝纹是研究早期学习和认知发展的有用模型,因为它具有明确的敏感或关键时期。我们最近显示,甲状腺激素3,5,3'-三碘甲腺氨酸(T-3)决定了敏感期的开始。此外,将T-3外源注射到中间内侧中肾上腺(IMM)区(类似于哺乳动物的联想皮层),即使在敏感期结束后的孵化后第4或第6天也能留下印记。但是,IMM区域中T-3作用下游的神经机制仍然难以捉摸。在这里,我们分析了T-3动作中的中间高pal味(IMHA)的功能参与。 IMHA的双侧兴奋性毒性消融可防止在新孵出的雏鸡中留下印记,并通过在第4天雏鸡中全身性静脉内或局部IMM注射T-3抑制敏感期的恢复。与IMM中的作用相反,将T-3直接注入IMHA不能在第4天的雏鸡中留下印记。此外,印记训练后IMHA的双侧消融损害了召回率。这些结果表明,IMHA对于在IMM中执行T-3动作之后的下游内存获取至关重要,此外,它还接收并保留了存储在IMM中的信息以供召回。此外,包含腺逆行示踪剂(小麦胚芽凝集素)和逆行示踪剂(霍乱毒素亚基B)的禽腺相关病毒构建体均显示了IMM与IMHA的神经联系。两者合计,我们的发现表明,从主要区域(IMM)到次要区域(IMHA)的层次化过程是印迹所必需的。 (C)2015作者。由Elsevier Ltd.代表IBRO发布。

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