首页> 外文期刊>Neuroscience and Biobehavioral Reviews >Network operations revealed by brain metabolic mapping in a genetic model of hyperactivity and attention deficit: the naples high- and low-excitability rats.
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Network operations revealed by brain metabolic mapping in a genetic model of hyperactivity and attention deficit: the naples high- and low-excitability rats.

机译:在大脑过度活动和注意力缺陷的遗传模型中,大脑代谢图谱揭示的网络操作:那不勒斯高兴奋性和低兴奋性大鼠。

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Genetic rat models are important for research on the neural networks of attention and emotionality. Naples-High Excitability (NHE) rats and Naples Low-Excitability (NLE) rats were investigated with random-bred (NRB) rats as controls. These rat lines were named for their respective behavior on spatial novelty tasks. Quantitative cytochrome oxidase (CO) histochemistry has been demonstrated to reflect long-lasting changes in tissue metabolic capacity. CO metabolic differences between the NLE and NHE were found in the granular cell layer of the outer blade of the dentate gyrus. In addition, NLE showed greater CO activity than NRB in medial frontal cortex, and lower activity in perirhinal cortex (dorsal region). NHE showed greater CO activity than NRB in entorhinal cortex (superficial layers) and lower activities in perirhinal cortex and cortical amygdala. These data support the hypothesis that NLE/NHE rats may be an appropriate model for studying genetically altered limbic regions related to impaired emotional processing. The results support the involvement of limbic circuits in attentive processes and impulsiveness, and support the use of the NLE and NHE strains as animal models of Attention Deficit Hyperactivity Disorder (ADHD) in children.
机译:遗传大鼠模型对于研究注意力和情绪神经网络非常重要。用随机繁殖的(NRB)大鼠作为对照研究那不勒斯高兴奋性(NHE)大鼠和那不勒斯低兴奋性(NLE)大鼠。这些老鼠系因其在空间新颖性任务上的行为而得名。定量细胞色素氧化酶(CO)组织化学已被证明可以反映组织代谢能力的长期变化。 NLE和NHE之间的CO代谢差异在齿状回外叶片的颗粒细胞层中发现。此外,在内侧额叶皮层中,NLE的CO活性高于NRB,而在周围皮层(背侧区域)则较低。 NHE在内嗅皮层(浅层)中的CO活性高于NRB,而在周围皮层和皮层杏仁核中的活性较低。这些数据支持以下假设:NLE / NHE大鼠可能是研究与情绪加工受损有关的基因改变的边缘区域的合适模型。结果支持边缘回路参与注意过程和冲动,并支持将NLE和NHE菌株用作儿童注意缺陷多动障碍(ADHD)的动物模型。

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