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Activation of pontine and medullary motor inhibitory regions reduces discharge in neurons located in the locus coeruleus and the anatomical equivalent of the midbrain locomotor region.脑桥和延髓运动抑制区的激活会减少位于蓝斑和中脑运动区解剖等效部位的神经元的放电。
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2
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[Changes in the neuronal activity in the dorsolateral pontine region caused by electrical stimulation of the brainstem regions inhibiting movement and the muscle tone].[脑干抑制运动和肌张力区域的电刺激引起的脑桥背外侧区域神经元活动的变化]
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Increased and decreased muscle tone with orexin (hypocretin) microinjections in the locus coeruleus and pontine inhibitory area.在蓝斑和脑桥抑制区微量注射食欲素(下丘脑泌素)后肌张力的升高和降低。
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Pontine-induced generalized suppression of postural muscle tone in a reflexively standing acute decerebrate cat.脑桥诱导的反射性站立急性去大脑猫姿势肌张力的全身性抑制
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Changes in monoamine release in the ventral horn and hypoglossal nucleus linked to pontine inhibition of muscle tone: an in vivo microdialysis study.与脑桥对肌张力的抑制相关的腹角和舌下神经核单胺释放的变化:一项体内微透析研究。
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Controlled locomotion in the mesencephalic cat: distribution of facilitatory and inhibitory regions within pontine tegmentum.中脑猫的受控运动:脑桥被盖内易化区和抑制区的分布
J Neurophysiol. 1978 Nov;41(6):1580-91. doi: 10.1152/jn.1978.41.6.1580.

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Brainstem control of locomotion and muscle tone with special reference to the role of the mesopontine tegmentum and medullary reticulospinal systems.脑干对运动和肌张力的控制,特别提及中脑桥被盖和延髓网状脊髓系统的作用。
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Neuronal reactions in the dorsolateral pontine area during the immobility response in rats.大鼠不动反应期间脑桥背外侧区的神经元反应
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Inactivation of the pons blocks medullary-induced muscle tone suppression in the decerebrate cat.脑桥失活可阻断去大脑猫中延髓诱导的肌张力抑制。
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Atonia-related regions in the rodent pons and medulla.啮齿动物脑桥和延髓中与张力缺失相关的区域。
J Neurophysiol. 2000 Oct;84(4):1942-8. doi: 10.1152/jn.2000.84.4.1942.
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Locus coeruleus neurons: cessation of activity during cataplexy.蓝斑神经元:发作性睡病猝倒期间活动停止。
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Origins of the glycinergic inputs to the rat locus coeruleus and dorsal raphe nuclei: a study combining retrograde tracing with glycine immunohistochemistry.大鼠蓝斑核和中缝背核中甘氨酸能输入的起源:一项将逆行追踪与甘氨酸免疫组织化学相结合的研究。
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Electrophysiological evidence that noradrenergic neurons of the rat locus coeruleus are tonically inhibited by GABA during sleep.电生理学证据表明,大鼠蓝斑去甲肾上腺素能神经元在睡眠期间受到γ-氨基丁酸(GABA)的紧张性抑制。
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GABA release in the locus coeruleus as a function of sleep/wake state.蓝斑中γ-氨基丁酸(GABA)的释放作为睡眠/觉醒状态的函数。
Neuroscience. 1997 Jun;78(3):795-801. doi: 10.1016/s0306-4522(96)00549-0.
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Effect of strychnine on rat locus coeruleus neurones during sleep and wakefulness.
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Discharge properties of medullary reticulospinal neurons during postural changes induced by intrapontine injections of carbachol, atropine and serotonin, and their functional linkages to hindlimb motoneurons in cats.在猫脑桥内注射卡巴胆碱、阿托品和5-羟色胺诱发姿势改变期间延髓网状脊髓神经元的放电特性及其与后肢运动神经元的功能联系
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脑桥和延髓运动抑制区的激活会减少位于蓝斑和中脑运动区解剖等效部位的神经元的放电。

Activation of pontine and medullary motor inhibitory regions reduces discharge in neurons located in the locus coeruleus and the anatomical equivalent of the midbrain locomotor region.

作者信息

Mileykovskiy B Y, Kiyashchenko L I, Kodama T, Lai Y Y, Siegel J M

机构信息

Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Science, St. Petersburg, 194223, Russia.

出版信息

J Neurosci. 2000 Nov 15;20(22):8551-8. doi: 10.1523/JNEUROSCI.20-22-08551.2000.

DOI:10.1523/JNEUROSCI.20-22-08551.2000
PMID:11069963
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6773155/
Abstract

Activation of the pontine inhibitory area (PIA) including the middle portion of the pontine reticular nucleus, oral part (PnO), or the gigantocellular reticular nucleus (Gi) suppresses muscle tone in decerebrate animals. The locus coeruleus (LC) and midbrain locomotor region (MLR) have been implicated in the facilitation of muscle tone. In the current study we investigated whether PIA and Gi stimulation causes changes in activity in these brainstem motor facilitatory systems. PIA stimulation evoked bilateral muscle tone suppression and inhibited 26 of 28 LC units and 33 of 36 tonically active units located in the anatomical equivalent of the MLR (caudal half of the cuneiform nucleus and the pedunculopontine tegmental nucleus). Gi stimulation evoked bilateral suppression of hindlimb muscle tone and inhibited 20 of 35 LC units and 24 of 24 neurons located in the MLR as well as facilitated 11 of 35 LC units. GABA and glycine release in the vicinity of LC was increased by 20-40% during ipsilateral PnO stimulation inducing hindlimb muscle tone suppression on the same side of the body. We conclude that activation of pontine and medullary inhibitory regions produces a coordinated reduction in the activity of the LC units and neurons located in the MLR related to muscle tone facilitation. The linkage between activation of brainstem motor inhibitory systems and inactivation of brainstem facilitatory systems may underlie the reduction in muscle tone in sleep as well as the modulation of muscle tone in the isolated brainstem.

摘要

激活脑桥抑制区(PIA),包括脑桥网状核中部、嘴侧部(PnO)或巨细胞网状核(Gi),可抑制去大脑动物的肌张力。蓝斑(LC)和中脑运动区(MLR)与肌张力的促进有关。在本研究中,我们调查了刺激PIA和Gi是否会导致这些脑干运动促进系统的活动发生变化。刺激PIA引起双侧肌张力抑制,并抑制了位于与MLR解剖学等效部位(楔形核尾侧半和脚桥被盖核)的28个LC单位中的26个以及36个紧张性活动单位中的33个。刺激Gi引起双侧后肢肌张力抑制,并抑制了位于MLR的35个LC单位中的20个以及24个神经元中的24个,同时促进了35个LC单位中的11个。在同侧PnO刺激诱导同侧后肢肌张力抑制期间,LC附近的GABA和甘氨酸释放增加了20% - 40%。我们得出结论,脑桥和延髓抑制区的激活会使与肌张力促进相关的LC单位和位于MLR的神经元的活动协同降低。脑干运动抑制系统的激活与脑干促进系统的失活之间的联系可能是睡眠中肌张力降低以及孤立脑干中肌张力调节的基础。