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麻醉大鼠中伤害性背角神经元的脊髓上抑制:持续性还是动态性?

Supraspinal inhibition of nociceptive dorsal horn neurones in the anaesthetized rat: tonic or dynamic?

作者信息

Li H S, Monhemius R, Simpson B A, Roberts M H

机构信息

School of Molecular and Medical Biosciences, Physiology Unit, University of Wales Cardiff, UK.

出版信息

J Physiol. 1998 Jan 15;506 ( Pt 2)(Pt 2):459-69. doi: 10.1111/j.1469-7793.1998.459bw.x.

Abstract
  1. Tonic inhibition of sensory spinal neurones is well known to descend from the rostroventral medulla. It is not clear if this inhibition is dynamically activated by peripheral noxious stimuli. 2. Transection of the ipsilateral dorsolateral funiculus (DLF) removed a descending inhibition of multireceptive spinal neurones and disproportionally prolonged the after-discharge component of their response to a noxious cutaneous stimulus. 3. Microinjection of GABA or tetracaine into the medullary nucleus gigantocellularis pars alpha (GiA) similarly prolonged the after-discharge in response to noxious stimuli. 4. Recordings of GiA cells, initially using minimal surgery, revealed that many had low levels of spontaneous activity and responded vigorously to noxious stimuli applied to any part of the body surface. One hour after the surgery necessary to expose the spinal cord, GiA cells had a high firing rate but responded weakly to noxious stimuli. 5. The response of GiA cells to noxious stimuli was abolished by transection of only the DLF contralateral to the stimulus. 6. It is concluded that the inhibition of multireceptive dorsal horn neurones from GiA is dynamically activated by noxious cutaneous stimuli via a projection in the contralateral DLF. Surgical exposure of the spinal cord tonically activates this inhibition and masks the dynamic component.
摘要
  1. 感觉性脊髓神经元的紧张性抑制源自延髓嘴腹侧,这一点众所周知。目前尚不清楚这种抑制是否由外周伤害性刺激动态激活。2. 切断同侧背外侧索(DLF)消除了对多感受性脊髓神经元的下行抑制,并不成比例地延长了它们对伤害性皮肤刺激的放电后成分。3. 向巨细胞网状核α部(GiA)微量注射GABA或丁卡因同样延长了对伤害性刺激的放电后反应。4. 最初采用微创外科手术对GiA细胞进行记录,结果显示许多细胞的自发活动水平较低,并且对施加于体表任何部位的伤害性刺激反应强烈。在暴露脊髓所需的手术1小时后,GiA细胞的放电频率较高,但对伤害性刺激反应较弱。5. 仅切断与刺激相对侧的DLF可消除GiA细胞对伤害性刺激的反应。6. 得出的结论是,来自GiA的对多感受性背角神经元的抑制通过对侧DLF中的投射被伤害性皮肤刺激动态激活。脊髓的手术暴露会使这种抑制持续激活并掩盖动态成分。

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