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Histochemical Characterization Distribution and Morphometric Analysis of NADPH Diaphorase Neurons in the Spinal Cord of the Agouti

机译:刺痛小鼠脊髓中NADPH重氮酶神经元的组织化学特征分布及形态计量学分析

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摘要

We evaluated the neuropil distribution of the enzymes NADPH diaphorase (NADPH-d) and cytochrome oxidase (CO) in the spinal cord of the agouti, a medium-sized diurnal rodent, together with the distribution pattern and morphometrical characteristics of NADPH-d reactive neurons across different spinal segments. Neuropil labeling pattern was remarkably similar for both enzymes in coronal sections: reactivity was higher in regions involved with pain processing. We found two distinct types of NADPH-d reactive neurons in the agouti's spinal cord: type I neurons had large, heavily stained cell bodies while type II neurons displayed relatively small and poorly stained somata. We concentrated our analysis on type I neurons. These were found mainly in the dorsal horn and around the central canal of every spinal segment, with a few scattered neurons located in the ventral horn of both cervical and lumbar regions. Overall, type I neurons were more numerous in the cervical region. Type I neurons were also found in the white matter, particularly in the ventral funiculum. Morphometrical analysis revealed that type I neurons located in the cervical region have dendritic trees that are more complex than those located in both lumbar and thoracic regions. In addition, NADPH-d cells located in the ventral horn had a larger cell body, especially in lumbar segments. The resulting pattern of cell body and neuropil distribution is in accordance with proposed schemes of segregation of function in the mammalian spinal cord.
机译:我们评估了中型昼间啮齿动物刺豚鼠脊髓中NADPH心肌黄递酶(NADPH-d)和细胞色素氧化酶(CO)的神经纤维分布,以及NADPH-d反应性神经元的分布模式和形态特征跨越不同的脊柱节段在冠状切片中两种酶的Neuropil标记模式非常相似:在涉及疼痛处理的区域中反应性更高。我们在刺豚鼠的脊髓中发现了两种不同类型的NADPH-d反应性神经元:I型神经元具有大的,染色严重的细胞体,而II型神经元则显示出相对较小且染色较差的躯体。我们将分析集中在I型神经元上。这些主要在背角和每个脊柱节段的中央管周围发现,少数分散的神经元位于颈和腰区的腹角。总体而言,宫颈区域的I型神经元数量更多。在白质中,尤其是在腹侧真菌中也发现了I型神经元。形态计量学分析显示,位于颈部区域的I型神经元的树突状树比位于腰椎和胸部区域的树突状树更复杂。另外,位于腹角的NADPH-d细胞具有较大的细胞体,尤其是在腰段。所得的细胞体和神经纤维分布模式与哺乳动物脊髓中功能分离的拟议方案一致。

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