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发育性感觉运动网络在新生大鼠缺氧缺血性损伤后的功能缺陷及恢复。

Functional deficit and recovery of developing sensorimotor networks following neonatal hypoxic-ischemic injury in the rat.

机构信息

Faculty of Medicine, Department of Fundamental Neurosciences, University of Geneva, 1211 Geneva, Switzerland.

出版信息

Cereb Cortex. 2010 Sep;20(9):2080-91. doi: 10.1093/cercor/bhp281. Epub 2010 Jan 4.

Abstract

Neonatal hypoxia-ischemia (HI) is the most important cause of brain injury in the newborn. Here we studied structural alterations and functional perturbations of developing large-scale sensorimotor cortical networks in a rat model of moderate HI at postnatal day 3 (P3). At the morphological level, HI led to a disorganized barrel pattern in the somatosensory cortex without detectable histological changes in the motor cortex. Functional effects were addressed by means of epicranial mapping of somatosensory-evoked potentials (SEPs) during the postischemic recovery period. At P10, SEPs were immature and evoked activity was almost restricted to the somatosensory and motor cortices of the contralateral hemisphere. Peak and topographic analyses of epicranial potentials revealed that responses were profoundly depressed in both sensory and motor areas of HI-lesioned animals. At the end of the postnatal period at P21, responses involved networks in both hemispheres. SEP amplitude was still depressed in the injured sensory region, but it completely recovered in the motor area. These results suggest a process of large-scale network plasticity in sensorimotor circuits after perinatal ischemic injury. The model provides new perspectives for investigating the temporal and spatial characteristics of the recovery process following HI and eventually developing therapeutic interventions.

摘要

新生儿缺氧缺血性(HI)是新生儿脑损伤的最重要原因。在这里,我们研究了在新生后第 3 天(P3)的中度 HI 大鼠模型中,发育中的大感觉运动皮质网络的结构改变和功能紊乱。在形态学水平上,HI 导致体感皮层的桶状模式紊乱,而运动皮层没有可检测到的组织学变化。通过在缺血后恢复期间对体感诱发电位(SEP)进行颅顶映射来研究功能影响。在 P10 时,SEP 不成熟,激发活动几乎仅限于对侧半球的体感和运动皮质。颅顶电位的峰值和地形分析表明,HI 损伤动物的感觉和运动区域的反应均受到严重抑制。在出生后的 P21 期末,反应涉及两个半球的网络。损伤感觉区的 SEP 幅度仍然降低,但在运动区完全恢复。这些结果表明,在围产期缺血性损伤后,感觉运动回路中存在大规模网络可塑性的过程。该模型为研究 HI 后恢复过程的时空特征以及最终开发治疗干预措施提供了新的视角。

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