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首页> 外文期刊>Pain. >Trigeminal A delta- and C-afferent supply of lamina I neurons in the trigeminocervical complex
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Trigeminal A delta- and C-afferent supply of lamina I neurons in the trigeminocervical complex

机译:三际透明度在三脑枢毛复合物中的晶三角和C-患有薄膜I和C-传入供应

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摘要

Nociceptive trigeminal afferents innervating craniofacial area, eg, facial skin and cranial meninges, project to a broad region in the medullary and upper cervical dorsal horn designated as the trigeminocervical complex. Lamina I neurons in the trigeminocervical complex integrate and relay peripheral inputs, thus playing a key role in both cranial nociception and primary headache syndromes. Because of the technically challenging nature of recording, the long-range trigeminal afferent inputs to the medullary and cervical lamina I neurons were not intensively studied so far. Therefore, we have developed an ex vivo brainstem-cervical cord preparation with attached trigeminal nerve for the visually guided whole-cell recordings from the medullary and cervical lamina I neurons. Two-thirds of recorded neurons generated intrinsic rhythmic discharges. The stimulation of the trigeminal nerve produced a complex effect; it interrupted the rhythmic discharge for hundreds of milliseconds but, if the neuron was silenced by a hyperpolarizing current injection, could elicit a discharge. The monosynaptic inputs from the trigeminal A delta, high-threshold A delta, low-threshold C, and C afferents were recorded in the medullary neurons, as well as in the cervical neurons located in the segments C1 to C2 and, to a lesser degree, in C3 to C4. This pattern of supply was consistent with our labelling experiments showing extensive cervical projections of trigeminal afferents. Excitatory inputs were mediated, although not exclusively, through AMPA/kainate and NMDA receptors, whereas inhibitory inputs through both GABA and glycine receptors. In conclusion, the trigeminocervical lamina I neurons receive a complex pattern of long-range monosynaptic and polysynaptic inputs from a variety of the trigeminal nociceptive afferents.
机译:伤害性三叉事物接受颅面积,例如面部皮肤和颅脑,突出的髓质和上部颈椎背角的宽区域被指定为三脑枢毛复合物。 Lamina I神经元在Trigemercipical复合物中集成和继电器外围输入,从而在颅骨伤害和主要头痛综合征中发挥着关键作用。由于记录的技术上挑战性质,到目前为止,没有集中研究髓质和颈椎内膜I神经元的远程三际传入输入。因此,我们已经开发了具有附着的三叉神经的前体内脑干 - 宫颈脊髓制剂,用于来自髓鞘和宫颈椎板I神经元的视觉引导的整个细胞录音。三分之二的记录神经元产生内在节奏排放。三叉神经的刺激产生了复杂的效果;它中断了数百毫秒的节奏排放,但如果神经元通过超积极的电流注射沉默,则可以引起排出。来自三角形δ的单腹部输入,高阈值δ,低阈值C和C引起的在髓质神经元中记录,以及位于区段C1至C2的宫颈神经元中,并且在较小程度上,在C3至C4中。这种供应模式与我们的标记实验一致,所述标记实验显示出的三叉内部传统的广泛宫颈投影。兴奋性输入介导,虽然不完全通过AMPA / Kainate和NMDA受体,而通过GABA和甘氨酸受体的抑制输入。总之,Trigeminercical薄膜膜I神经元从各种三叉伤害引入中获得复杂的远程单腹和多腹进入。

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