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疼痛相关系统中的发育性学习:跨模态机制的证据。

Developmental learning in a pain-related system: evidence for a cross-modality mechanism.

作者信息

Waldenström Alexandra, Thelin Jonas, Thimansson Erik, Levinsson Anders, Schouenborg Jens

机构信息

Section of Neurophysiology, Department for Physiological Sciences, Lund University, S-221 84 Lund, Sweden.

出版信息

J Neurosci. 2003 Aug 20;23(20):7719-25. doi: 10.1523/JNEUROSCI.23-20-07719.2003.

Abstract

The nociceptive spinal reflex system performs highly precise sensorimotor transformations that require functionally specified synaptic strengths. The specification is gradually attained during early development and appears to be learning dependent. Here we determine the time course of this specification for heat-nociceptive tail withdrawal reflexes and analyze which types of primary afferents are important for the learning by applying various forms of noninvasive sensory deprivations. The percentage of erroneous heat-nociceptive tail withdrawal reflexes (i.e., movements directed toward the stimulation) decreased gradually from 64.1 +/- 2.5% (mean +/- SEM) to <10% during postnatal days 10-21. This improvement was completely blocked by anesthetizing the tail during the adaptation period, confirming that an experience-dependent mechanism is involved in the specification of synaptic strengths. However, the results show that the adaptation occurs to a significant extent despite local analgesia and protection of the tail from noxious input, provided that tactile sensitivity is preserved. Therefore, it appears that a nociceptive input is not necessary for the adaptation, and that input from tactile receptors can be used to guide the nociceptive synaptic organization during development. Sensory deprivation in the adult rat failed to affect the heat-nociceptive withdrawal reflex system, indicating that the adaptation has a "critical period" during early development. These findings provide a key to the puzzle of how pain-related systems can be functionally adapted through experience despite the rare occurrence of noxious input during early life.

摘要

伤害性脊髓反射系统执行高度精确的感觉运动转换,这需要功能特定的突触强度。这种特定性在早期发育过程中逐渐实现,并且似乎依赖于学习。在这里,我们确定热伤害性甩尾反射这种特定性的时间进程,并通过应用各种形式的非侵入性感觉剥夺来分析哪些类型的初级传入神经对学习很重要。在出生后第10 - 21天,错误的热伤害性甩尾反射(即朝向刺激的运动)百分比从64.1±2.5%(平均值±标准误)逐渐降至<10%。在适应期麻醉尾巴完全阻断了这种改善,证实了一种依赖经验的机制参与了突触强度的特定化。然而,结果表明,只要保留触觉敏感性,尽管局部镇痛并保护尾巴免受有害输入,适应仍在很大程度上发生。因此,似乎适应并不需要伤害性输入,并且触觉感受器的输入可以在发育过程中用于指导伤害性突触组织。成年大鼠的感觉剥夺未能影响热伤害性退缩反射系统,表明这种适应在早期发育中有一个“关键期”。这些发现为尽管在生命早期有害输入很少发生,但疼痛相关系统如何通过经验进行功能适应这一谜题提供了关键线索。

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