首页> 美国卫生研究院文献>The Journal of Physiology >The selectivity of rostroventral medulla descending control of spinal sensory inputs shifts postnatally from A fibre to C fibre evoked activity
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The selectivity of rostroventral medulla descending control of spinal sensory inputs shifts postnatally from A fibre to C fibre evoked activity

机译:脊髓腹侧延髓对脊髓感觉输入的降序控制的选择性在出生后从A纤维转变为C纤维诱发的活动

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摘要

Brainstem descending control is crucial in maintaining the balance of excitation and inhibition in spinal sensory networks. In the adult, descending inhibition of spinal dorsal horn circuits arising from the brainstem rostroventral medial medulla (RVM) is targeted to neurons with a strong nociceptive C fibre input. Before the fourth postnatal week, the RVM exerts a net facilitation of spinal networks but it is not known if this is targeted to specific dorsal horn neuronal inputs. As the maturation from descending facilitation to inhibition occurs only after C fibre central synaptic maturation is complete, we hypothesized that RVM facilitation in young animals is targeted to A fibre afferent inputs. To test this, the RVM was stimulated while recording dorsal horn neuronal activity in vivo under isoflurane anaesthesia at postnatal day (P) 21 and P40 (adult). Electrical thresholds for A and C fibre evoked activity, spike counts and wind-up characteristics at baseline and during RVM stimulation (10–100 µA, 10 Hz) were compared. In adults, RVM stimulation selectively increased the threshold for C fibre evoked activity while at P21, it selectively decreased the threshold for A fibre evoked activity and these effects were correlated to the wind-up characteristics of the neuron. Thus, the postnatal shift in RVM control of dorsal horn circuits is not only directional but also modality specific, from facilitation of A fibre input in the young animal to inhibition of nociceptive C input in the adult, with additional contextual factors. The descending control of spinal sensory networks serves very different functions in young and adult animals.
机译:脑干下降控制对于维持脊髓感觉网络中的兴奋和抑制平衡至关重要。在成年人中,由脑干rostroventral内侧延髓(RVM)引起的脊髓背角电路的递减抑制作用针对具有强烈伤害性C纤维输入的神经元。在产后第四个星期之前,RVM对脊髓网络起到了净促进作用,但尚不清楚这是否针对特定的背角神经元输入。由于仅从C纤维中央突触成熟完成后就开始从下降促进到抑制的成熟,因此我们假设幼兽中的RVM促进作用针对A纤维传入输入。为了测试这一点,在出生后第21天和第40天(成人)在异氟烷麻醉下在体内记录背角神经元活性的同时刺激了RVM。比较了基线和RVM刺激期间(10–100 µA,10 Hz)的A和C纤维诱发的活动,阈值和缠绕特性的电阈值。在成年人中,RVM刺激选择性地增加了C纤维诱发的活动阈值,而在P21时,它选择性地降低了A纤维诱发的活动阈值,这些作用与神经元的发卷特性相关。因此,从促进幼年动物的A纤维输入到成年动物的伤害性C输入抑制,以及其他相关因素,背角回路RVM控制中的产后转移不仅具有方向性,而且还具有特定的方式。脊髓感觉网络的下降控制在成年和成年动物中具有非常不同的功能。

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