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Dissociations of the medial and lateral perforant path projections into dorsal DG, CA3, and CA1 for spatial and nonspatial (visual object) information processing

机译:将内侧和外侧穿孔路径投影分解为背侧DG,CA3和CA1,以进行空间和非空间(视觉对象)信息处理

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Medial perforant path plasticity can be attenuated by 2-amino-5-phosphonovaleric acid (APV) infusions, whereas lateral perforant path plasticity can be attenuated by naloxone infusions. The present experiment was designed to evaluate the role of each entorhinal efferent pathway into the dorsal hippocampus for detection of spatial and nonspatial (visual object) changes in the overall configuration of environmental stimuli. Dorsal dentate gyros infusions of either APV or naloxone attenuated detection of a spatial change, whereas only naloxone infusions disrupted novel object detection. Either APV or naloxone infusions into dorsal CA3 disrupted both spatial and novel object detection. APV infusions into dorsal CA1 attenuated detection of a spatial change, whereas naloxone infusions into dorsal CA1 disrupted novel object detection. These data suggest that each dorsal hippocampal subregion processes spatial and nonspatial (visual object) information from perforant path efferents in a unique manner that is consistent with the intrinsic properties of each subregion.
机译:2-氨基-5-膦酰戊酸(APV)输注可减弱内侧穿孔路径的可塑性,纳洛酮输注可减弱外侧穿孔路径的可塑性。本实验旨在评估进入内海马背的每个内嗅神经传出途径对检测环境刺激总体结构中空间和非空间(视觉对象)变化的作用。 APV或纳洛酮的背齿状陀螺输注会减弱空间变化的检测,而只有纳洛酮的输注会破坏新物体的检测。将APV或纳洛酮输注到背侧CA3中会破坏空间和新颖物体的检测。 APV注入背侧CA1减弱了空间变化的检测,而纳洛酮注入背侧CA1破坏了新对象的检测。这些数据表明,每个海马背侧子区域都以与每个子区域的固有特性一致的独特方式处理来自穿孔路径传出的空间和非空间(视觉对象)信息。

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