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Postnatal maturation of the spinal-bulbo-spinal loop: brainstem control of spinal nociception is independent of sensory input in neonatal rats.脊髓-延髓-脊髓环路的产后成熟:脑干对脊髓伤害性感受的控制在新生大鼠中独立于感觉输入。
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Monosynaptic convergence of somatic and visceral C-fiber afferents on projection and local circuit neurons in lamina I: a substrate for referred pain.躯体和内脏C纤维传入神经在I层投射神经元和局部回路神经元上的单突触汇聚:牵涉痛的一个基质
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Activity-dependent changes in extracellular Ca2+ and K+ reveal pacemakers in the spinal locomotor-related network.活动依赖性细胞外钙离子和钾离子变化揭示了脊髓运动相关网络中的起搏器。
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J Neurosci. 2013 Feb 20;33(8):3352-62. doi: 10.1523/JNEUROSCI.4365-12.2013.
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Pacemaker neurons within newborn spinal pain circuits.新生脊髓痛觉回路中的起搏器神经元。
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The use of PRV-Bartha to define premotor inputs to lumbar motoneurons in the neonatal spinal cord of the mouse.利用 PRV-Bartha 来确定新生期小鼠脊髓腰运动神经元的前运动传入。
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起搏器神经元与伤害感受的发展

Pacemaker Neurons and the Development of Nociception.

作者信息

Baccei Mark L

机构信息

Pain Research Center, Department of Anesthesiology, University of Cincinnati Medical Center, Cincinnati, OH, USA

出版信息

Neuroscientist. 2014 Jun;20(3):197-202. doi: 10.1177/1073858414521499. Epub 2014 Feb 7.

DOI:10.1177/1073858414521499
PMID:24510073
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4927414/
Abstract

Spontaneous activity is known to be essential for the proper formation of sensory networks in the developing CNS. This activity can be produced by a variety of mechanisms including the presence of "pacemaker" neurons, which can be defined by their intrinsic ability to generate rhythmic bursts of action potential discharge. Recent work has identified pacemaker activity within lamina I of the neonatal rodent spinal cord that emerges from a complex interaction between voltage-dependent and voltage-independent ("leak") ionic conductances, including an important modulatory role for the inward-rectifying K(+) (Kir) channels. The available evidence suggests that lamina I pacemakers are glutamatergic and project extensively throughout the dorsal-ventral axis of the spinal cord, although the identity of their postsynaptic targets has yet to be elucidated. A better understanding of this connectivity could yield valuable insight into the role of the lamina I pacemaker population in the maturation of spinal circuitry underlying nociceptive processing and/or sensorimotor integration.

摘要

已知自发活动对于发育中的中枢神经系统中感觉网络的正常形成至关重要。这种活动可由多种机制产生,包括存在“起搏器”神经元,其可通过产生节律性动作电位发放的内在能力来定义。最近的研究发现,新生啮齿动物脊髓I层内的起搏器活动源自电压依赖性和电压非依赖性(“泄漏”)离子电导之间的复杂相互作用,其中内向整流钾(Kir)通道起重要调节作用。现有证据表明,I层起搏器是谷氨酸能的,并且在脊髓的背腹轴上广泛投射,尽管其突触后靶标的身份尚待阐明。更好地理解这种连接性可能会为I层起搏器群体在伤害性处理和/或感觉运动整合基础的脊髓回路成熟中的作用提供有价值的见解。