Organization of Somatosensory Cortex in the South American Rodent Paca (Cuniculus paca).

IF 2.1 4区 心理学 Q3 BEHAVIORAL SCIENCES Brain Behavior and Evolution Pub Date : 2023-01-01 Epub Date: 2024-01-10 DOI:10.1159/000534469
Marco Aurelio M Freire, João G Franca, Cristovam W Picanco-Diniz, Paul R Manger, Jon H Kaas, Antonio Pereira
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Abstract

Introduction: The study of non-laboratory species has been part of a broader effort to establish the basic organization of the mammalian neocortex, as these species may provide unique insights relevant to cortical organization, function, and evolution.

Methods: In the present study, the organization of three somatosensory cortical areas of the medium-sized (5-11 kg body mass) Amazonian rodent, the paca (Cuniculus paca), was determined using a combination of electrophysiological microelectrode mapping and histochemical techniques (cytochrome oxidase and NADPH diaphorase) in tangential sections.

Results: Electrophysiological mapping revealed a somatotopically organized primary somatosensory cortical area (S1) located in the rostral parietal cortex with a characteristic foot-medial/head-lateral contralateral body surface representation similar to that found in other species. S1 was bordered laterally by two regions housing neurons responsive to tactile stimuli, presumably the secondary somatosensory (S2) and parietal ventral (PV) cortical areas that evinced a mirror-reversal representation (relative to S1) of the contralateral body surface. The limits of the putative primary visual (V1) and primary auditory (A1) cortical areas, as well as the complete representation of the contralateral body surface in S1, were determined indirectly by the histochemical stains. Like the barrel field described in small rodents, we identified a modular arrangement located in the face representation of S1.

Conclusions: The relative location, somatotopic organization, and pattern of neuropil histochemical reactivity in the three paca somatosensory cortical areas investigated are similar to those described in other mammalian species, providing additional evidence of a common plan of organization for the somatosensory cortex in the rostral parietal cortex of mammals.

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南美啮齿类动物帕卡(Cuniculus paca)体感皮层的组织结构。
简介:对非实验室物种的研究是建立哺乳动物新皮层基本组织的更广泛努力的一部分,因为这些物种可能提供与皮层组织、功能和进化有关的独特见解:本研究采用电生理学微电极图谱和组织化学技术(细胞色素氧化酶和 NADPH 二磷酸酶)相结合的方法,在切向切片中测定了中等体型(体重 5-11 千克)亚马逊啮齿类动物蟒蛇(Cuniculus paca)的三个躯体感觉皮层区域的组织结构:结果:电生理学图谱显示,位于喙顶叶皮层的初级躯体感觉皮层区(S1)具有躯体表层组织,其特征是脚-内侧/头-外侧-对侧体表表征,与其他物种类似。S1 的侧面与两个对触觉刺激有反应的神经元区域(推测为次级体感(S2)和顶叶腹侧(PV)皮层区域)相邻,这两个区域显示了对侧体表的镜像反向表征(相对于 S1)。推测的初级视觉(V1)和初级听觉(A1)皮层区域的界限,以及对侧体表在 S1 中的完整表征,是通过组织化学染色间接确定的。与在小型啮齿动物中描述的桶状场一样,我们在 S1 的面部表征中也发现了模块化排列:结论:所调查的三个猕猴体感皮层区域的相对位置、体位组织和神经胶质组织化学反应模式与其他哺乳动物物种中描述的相似,为哺乳动物喙顶叶皮层中体感皮层的共同组织计划提供了更多证据。
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来源期刊
Brain Behavior and Evolution
Brain Behavior and Evolution 医学-行为科学
CiteScore
3.10
自引率
23.50%
发文量
31
审稿时长
>12 weeks
期刊介绍: ''Brain, Behavior and Evolution'' is a journal with a loyal following, high standards, and a unique profile as the main outlet for the continuing scientific discourse on nervous system evolution. The journal publishes comparative neurobiological studies that focus on nervous system structure, function, or development in vertebrates as well as invertebrates. Approaches range from the molecular over the anatomical and physiological to the behavioral. Despite this diversity, most papers published in ''Brain, Behavior and Evolution'' include an evolutionary angle, at least in the discussion, and focus on neural mechanisms or phenomena. Some purely behavioral research may be within the journal’s scope, but the suitability of such manuscripts will be assessed on a case-by-case basis. The journal also publishes review articles that provide critical overviews of current topics in evolutionary neurobiology.
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