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早期运动活动驱动发育中的体感皮层的纺锤体爆发。

Early motor activity drives spindle bursts in the developing somatosensory cortex.

作者信息

Khazipov Rustem, Sirota Anton, Leinekugel Xavier, Holmes Gregory L, Ben-Ari Yehezkel, Buzsáki György

机构信息

INMED, INSERM U29, Avenue de Luminy, B.P. 13, 13273 Marseille, France.

出版信息

Nature. 2004 Dec 9;432(7018):758-61. doi: 10.1038/nature03132.

Abstract

Sensorimotor coordination emerges early in development. The maturation period is characterized by the establishment of somatotopic cortical maps, the emergence of long-range cortical connections, heightened experience-dependent plasticity and spontaneous uncoordinated skeletal movement. How these various processes cooperate to allow the somatosensory system to form a three-dimensional representation of the body is not known. In the visual system, interactions between spontaneous network patterns and afferent activity have been suggested to be vital for normal development. Although several intrinsic cortical patterns of correlated neuronal activity have been described in developing somatosensory cortex in vitro, the in vivo patterns in the critical developmental period and the influence of physiological sensory inputs on these patterns remain unknown. We report here that in the intact somatosensory cortex of the newborn rat in vivo, spatially confined spindle bursts represent the first and only organized network pattern. The localized spindles are selectively triggered in a somatotopic manner by spontaneous muscle twitches, motor patterns analogous to human fetal movements. We suggest that the interaction between movement-triggered sensory feedback signals and self-organized spindle oscillations shapes the formation of cortical connections required for sensorimotor coordination.

摘要

感觉运动协调在发育早期就已出现。成熟期的特征是躯体定位皮质图谱的建立、长距离皮质连接的出现、经验依赖性可塑性的增强以及自发的不协调骨骼运动。目前尚不清楚这些不同的过程如何协同作用,以使体感系统形成身体的三维表征。在视觉系统中,自发网络模式与传入活动之间的相互作用被认为对正常发育至关重要。尽管在体外发育中的体感皮质中已经描述了几种相关神经元活动的内在皮质模式,但关键发育时期的体内模式以及生理感觉输入对这些模式的影响仍然未知。我们在此报告,在新生大鼠完整的体感皮质体内,空间局限的纺锤体爆发代表了第一种也是唯一一种有组织的网络模式。局部纺锤体由自发的肌肉抽搐以躯体定位的方式选择性触发,这些运动模式类似于人类胎儿的运动。我们认为,运动触发的感觉反馈信号与自组织纺锤体振荡之间的相互作用塑造了感觉运动协调所需的皮质连接的形成。

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