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Spatial encoding in spinal sensorimotor circuits differs in different wild type mice strains

机译:脊髓感觉运动回路中的空间编码在不同的野生型小鼠品系中有所不同

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摘要

BackgroundPrevious studies in the rat have shown that the spatial organisation of the receptive fields of nociceptive withdrawal reflex (NWR) system are functionally adapted through experience dependent mechanisms, termed somatosensory imprinting, during postnatal development. Here we wanted to clarify 1) if mice exhibit a similar spatial encoding of sensory input to NWR as previously found in the rat and 2) if mice strains with a poor learning capacity in various behavioural tests, associated with deficient long term potention, also exhibit poor adaptation of NWR.The organisation of the NWR system in two adult wild type mouse strains with normal long term potentiation (LTP) in hippocampus and two adult wild type mouse strains exhibiting deficiencies in corresponding LTP were used and compared to previous results in the rat. Receptive fields of reflexes in single hindlimb muscles were mapped with CO2 laser heat pulses.
机译:背景先前在大鼠中的研究表明,在产后发育过程中,伤害感受性退缩反射(NWR)系统的感受野的空间组织是通过经验依赖的机制(称为体感印迹)在功能上进行调整的。在这里,我们要澄清的是:1)小鼠是否表现出与之前在大鼠中类似的NWR感觉输入的空间编码,以及2)如果小鼠在各种行为测试中学习能力差,长期缺乏力的品系也表现出NWR的适应性差。在两个海马具有正常长期增强(LTP)的成年野生型小鼠品系和两个在相应LTP中表现出缺陷的成年野生型小鼠品系中,使用NWR系统的组织并将其与大鼠先前的结果进行比较。用CO2激光加热脉冲绘制单个后肢肌肉反射的感受野。

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