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首页> 外文期刊>Journal of Neuroscience Methods >In utero model for pharmacologically investigating spontaneous activity during early ontogeny.
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In utero model for pharmacologically investigating spontaneous activity during early ontogeny.

机译:在子宫内模型中,药理学研究个体发育早期的自发活动。

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摘要

We describe an in utero model in which it is possible to investigate the involvement of supraspinal and spinal neurons in the genesis of spontaneous motor activity, a feature of early fetal life. To date almost all studies of the circuits that give rise to spontaneous motor activity during early ontogeny, and the neurotransmitters involved, have been carried out with in vitro models. Limitations of in vitro models include the relatively short viability of the preparation and the need to stimulate the nervous system either pharmacologically or electrically to produce the activity to be studied, in contrast to the activity that spontaneously occurs normally in utero. Our model uses fetal sheep, chronically instrumented with electromyogram electrodes and a catheter placed either intrathecally at the spinal level or in the peritoneal cavity. Motor activity can be studied over lengthy periods of fetal life and it is possible to examine the effects of infusing agonists and antagonists of central neurotransmitters on spontaneous motor activity. The use of our new model in parallel with the pre-existing in vitro models has the potential to add substantially to our understanding of the mechanisms behind changes in spontaneous activity that occur throughout fetal life.
机译:我们描述了一种子宫内模型,在该模型中,有可能调查自发性运动活动(胎儿早期生命的特征)的上脊髓和脊髓神经元的参与。迄今为止,几乎所有关于在早期个体发育过程中引起自发运动活动的回路的研究以及所涉及的神经递质都已通过体外模型进行了研究。体外模型的局限性包括制剂的生存期相对较短,并且需要药理或电刺激神经系统以产生待研究的活性,这与子宫内正常自发发生的活性相反。我们的模型使用的是胎羊,该肌羊长期装有肌电图电极,并在鞘管内或脊髓内或腹膜腔内放置导管。可以在胎儿寿命的较长时期内研究运动活动,并且可以检查输注激动剂和中枢神经递质的拮抗剂对自发运动活动的影响。将我们的新模型与现有的体外模型并行使用,可能会大大加深我们对整个胎儿生命中自发活动变化背后机制的理解。

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