首页> 外文期刊>Behavioural Brain Research: An International Journal >Hippocampal and subicular efferents and afferents of the perirhinal, postrhinal, and entorhinal cortices of the rat
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Hippocampal and subicular efferents and afferents of the perirhinal, postrhinal, and entorhinal cortices of the rat

机译:大鼠的海鞘和次生皮质和周围神经,后皮质和内嗅皮质的出射

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摘要

Available evidence suggests there is functional differentiation among hippocampal and parahippocampal subregions and along the dorsoventral (septotemporal) axis of the hippocampus. The aim of this study was to characterize and compare the efferent and afferent connections of perirhinal areas 35 and 36, postrhinal cortex, and the lateral and medial entorhinal areas (LEA and MEA) with dorsal and ventral components of the hippocampal formation (dentate gyrus, hippocampus cornu ammonis fields, and subiculum) as well as the presubiculum, and the parasubiculum. The entorhinal connections were also characterized with respect to the LEA and MEA dentate gyrus-projecting bands. In general, the entorhinal connections with the hippocampal formation are much stronger than the perirhinal and postrhinal connections. The entorhinal cortex projects strongly to all components of the hippocampal formation, whereas the perirhinal and postrhinal cortices project weakly and only to CA1 and the subiculum. In addition, the postrhinal cortex preferentially targets the dorsal CA1 and subiculum, whereas the perirhinal cortex targets ventral subiculum. Similarly, the perirhinal cortex receives more input from ventral hippocampal formation structures and the postrhinal cortex receives more input from dorsal hippocampal structures. The LEA and the MEA medial band are more strongly interconnected with ventral hippocampal structures, whereas the MEA lateral band is more interconnected with dorsal hippocampal structures. With regard to the presubiculum and parasubiculum, the postrhinal cortex and the MEA lateral band receive stronger input from the dorsal presubiculum and caudal parasubiculum. In contrast, the LEA and MEA medial bands receive stronger input from the ventral presubiculum and rostral parasubiculum.
机译:现有证据表明,在海马区和海马旁亚区之间以及沿海马体的背腹(颞颞)轴存在功能差异。这项研究的目的是表征和比较海旁区35和36,脊椎后皮质以及外侧和内侧内嗅区(LEA和MEA)的传出和传入连接与海马形成的背侧和腹侧部分(齿状回,海马角膜的铵盐田和下丘脑)以及前房和副房。内嗅连接还针对LEA和MEA齿状回投射带进行了表征。通常,内海马与海马结构的联系要比周围和后海马联系牢固得多。内嗅皮层强烈投射到海马结构的所有组成部分,而周围和皮质后皮层的投射很弱,仅投射到CA1和下丘脑。此外,后皮层优先靶向背侧CA1和下丘脑,而周围皮层优先靶向腹侧下丘脑。类似地,周围神经皮质从腹侧海马结构形成中接收更多的输入,而后皮质则从背侧海马结构中接收更多的输入。 LEA和MEA内侧带与腹侧海马结构更紧密地互连,而MEA外侧带与背侧海马结构更紧密地互连。对于前房和副前房,脊后皮质和MEA侧带从前房前和尾副房得到更强的输入。相比之下,LEA和MEA内侧带则从前腹腹和延髓前唇获得更强的输入。

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