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Wheel Running and Environmental Complexity as a Therapeutic Intervention in an Animal Model of FASD

机译:车轮行驶和环境复杂性作为FASD动物模型中的治疗手段

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摘要

Aerobic exercise (e.g., wheel running (WR) extensively used in animal research) positively impacts many measures of neuroplastic potential in the brain, such as rates of adult neurogenesis, angiogenesis, and expression of neurotrophic factors in rodents. This intervention has also been shown to mitigate behavioral and neuroanatomical aspects of the negative impacts of teratogens (i.e., developmental exposure to alcohol) and age-related neurodegeneration in rodents. Environmental complexity (EC) has been shown to produce numerous neuroplastic benefits in cortical and subcortical structures and can be coupled with wheel running to increase the proliferation and survival of new cells in the adult hippocampus. The combination of these two interventions provides a robust "superintervention" (WR-EC) that can be implemented in a range of rodent models of neurological disorders. We will discuss the implementation of WR/EC and its constituent interventions for use as a more powerful therapeutic intervention in rats using the animal model of prenatal exposure to alcohol in humans. We will also discuss which elements of the procedures are absolutely necessary for the interventions and which ones may be altered depending on the experimenter's question or facilities.
机译:有氧运动(例如,在动物研究中广泛使用的滚轮跑步(WR))对大脑中神经塑形潜力的许多衡量指标产生了积极影响,例如成年神经发生率,血管生成和啮齿类动物神经营养因子的表达。还显示出这种干预措施减轻了致畸物(即,发育性暴露于酒精)和啮齿动物中与年龄有关的神经变性的负面影响的行为和神经解剖学方面。已证明环境复杂性(EC)可在皮质和皮质下结构中产生许多神经塑性益处,并可与滚轮运动结合使用,以增加成年海马中新细胞的增殖和存活。这两种干预措施的结合提供了强大的“超级干预”(WR-EC),可在一系列神经疾病的啮齿动物模型中实施。我们将讨论WR / EC的实施及其组成干预措施,以使用产前人体酒精暴露动物模型对大鼠进行更有效的治疗。我们还将讨论程序中的哪些元素绝对是干预所必需的,而哪些元素可能会根据实验者的问题或设施而进行更改。

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