首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Chronic deafferentation in monkeys differentially affects nociceptive and nonnociceptive pathways distinguished by specific calcium-binding proteins and down-regulates gamma-aminobutyric acid type A receptors at thalamic levels.
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Chronic deafferentation in monkeys differentially affects nociceptive and nonnociceptive pathways distinguished by specific calcium-binding proteins and down-regulates gamma-aminobutyric acid type A receptors at thalamic levels.

机译:猴子的慢性脱除咖啡因的作用不同地影响以特异性钙结合蛋白为特征的伤害性和非伤害性途径并在丘脑水平下调γ-氨基丁酸A型受体。

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摘要

Chronic deafferentation of skin and peripheral tissues is associated with plasticity of representational maps in cerebral cortex and with perturbations of sensory experience that include severe "central" pain. This study shows that in normal monkeys the nonnociceptive, lemniscal component of the somatosensory pathways at spinal, brainstem, and thalamic levels is distinguished by cells and fibers immunoreactive for the calcium-binding protein parvalbumin, whereas cells of the nociceptive component at these levels are distinguished by immunoreactivity for 28-kDa calbindin. Long-term dorsal rhizotomies in monkeys lead to transneuronal degeneration of parvalbumin cells at brainstem and thalamic sites accompanied in the thalamus by a down-regulation of gamma-aminobutyric acid type A receptors and an apparent increase in activity of calbindin cells preferentially innervated by central pain pathways. Release from inhibition and imbalance in patterns of somatosensory inputs from thalamus to cerebral cortex may constitute subcortical mechanisms for inducing changes in representational maps and perturbations of sensory perception, including central pain.
机译:皮肤和周围组织的慢性脱除咖啡因与大脑皮层中代表性图的可塑性以及与包括严重的“中央”疼痛的感觉体验的扰动有关。这项研究表明,在正常猴子中,脊髓,脑干和丘脑水平的体感通路的非伤害感受性,生殖器官成分通过对钙结合蛋白小白蛋白具有免疫反应性的细胞和纤维来区分,而在这些水平上的伤害感受成分的细胞却可以区分。通过对28 kDa calbindin的免疫反应。猴子长期背根切除术会导致丘脑伴随着脑干和丘脑部位小白蛋白细胞的跨神经元变性,同时伴随着γ-氨基丁酸A型受体的下调,并且优先受中枢性疼痛支配的钙结合蛋白细胞活性明显增加途径。从丘脑到大脑皮层的体感输入模式的抑制和不平衡释放可能构成了皮层下机制,以诱导代表性图谱的变化和感觉知觉的扰动,包括中枢痛。

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