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首页> 外文期刊>Experimental Brain Research >Optical imaging of digit topography in individual awake and anesthetized squirrel monkeys.
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Optical imaging of digit topography in individual awake and anesthetized squirrel monkeys.

机译:单个清醒和麻醉的松鼠猴中手指形貌的光学成像。

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摘要

Topographic maps and columnar structures are fundamental to cortical sensory information processing. Most of the knowledge about detailed topographic maps and columnar structure comes mainly from experiments conducted on anesthetized animals. Towards the goal of evaluating whether topographic maps change with respect to behavioral demands, we used intrinsic signal optical imaging in alert monkeys to examine the spatial specificity of cortical topographic representation. Specifically, the somatotopies of neighboring distal finger pad representation in areas 3b and 1 were examined in the same awake and anesthetized squirrel monkey. In comparison to the anesthetized animal, we found larger cortical activation sizes in the alert animal in area 3b, where activation widths were found to overlap with even non-adjacent digits. This may suggest that in the alert animal, there is less inhibition across the somatotopic map within area 3b.
机译:地形图和柱状结构是皮质感觉信息处理的基础。有关详细的地形图和柱状结构的大多数知识主要来自对麻醉动物进行的实验。为了评估地形图是否随行为需求而变化的目标,我们在警觉猴子中使用了固有信号光学成像技术来检查皮质地形图表示的空间特异性。具体而言,在同一清醒和麻醉的松鼠猴中检查区域3b和1中相邻的远端指垫的体细胞检查。与麻醉的动物相比,我们在3b区的警觉动物中发现了更大的皮质激活大小,发现激活宽度甚至与不相邻的手指重叠。这可能表明在警觉动物中,区域3b内整个体位图的抑制作用较小。

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