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Brain weight differences associated with induced focal microgyria

机译:脑重量差异与局灶性小神经胶质细胞相关

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Background Disrupting neural migration with bilateral focal freezing necrosis on postnatal day 1 (P1) results in the formation of 4-layered microgyria. This developmental injury triggers a pervasive neural reorganization, which is evident at the electrophysiological, behavioral, and anatomical levels. In this experiment, we investigated changes in brain weight as an index of global disruption of neural systems caused by focal damage to the developing cortical plate. Results We found a dramatic reduction in overall brain weight in microgyric subjects. This reduction in brain weight among animals with microgyria is reflected in decreased total brain volume, with a disproportionate decrease in neocortical volume. This effect is so robust that it is seen across varied environments, at variable ages, and across the sexes. Conclusions This finding supports previous work suggesting that substantial reorganization of the brain is triggered by the induction of bilateral freezing damage. These results have critical implications for the profound re-organizational effects of relatively small focal injuries early in development to distributed systems throughout the brain, and particularly in the cerebral cortex.
机译:背景出生后第1天(P1),双侧局灶性冰冻坏死破坏了神经迁移,导致形成了4层小胶质细胞。这种发育损伤触发了普遍的神经重组,这在电生理,行为和解剖学水平上都是明显的。在这个实验中,我们调查了大脑重量的变化,将其作为由对皮质板的局灶性损伤引起的神经系统整体破坏的指标。结果我们发现微陀螺受试者的整体脑重量显着降低。小脑回响动物中脑重量的减少反映在总脑容量的减少中,而新皮层容量的减少则不成比例。这种效果非常强大,可以在各种环境,不同年龄和性别中看到。结论该发现支持以前的工作,表明双侧冰冻损伤的诱导触发了大脑的实质性重组。这些结果对早期发展到整个大脑,尤其是大脑皮层的分布式系统的相对较小的局灶性损伤的深刻重组效果具有关键意义。

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