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先天性听觉剥夺后的产后皮质发育

Postnatal cortical development in congenital auditory deprivation.

作者信息

Kral A, Tillein J, Heid S, Hartmann R, Klinke R

机构信息

Institute of Sensory Physiology & Neurophysiology, J.W.Goethe University School of Medicine, Frankfurt am Main, Germany.

出版信息

Cereb Cortex. 2005 May;15(5):552-62. doi: 10.1093/cercor/bhh156. Epub 2004 Aug 18.

Abstract

The study investigates early postnatal development of local field potentials (LFPs) in the primary auditory cortex of hearing and congenitally deaf cats. In hearing cats, LFPs elicited by electrical intracochlear stimulation demonstrated developmental changes in mid-latency range, including reductions in peak and onset latencies of individual waves and a maturation of their shape and latencies during the first 2 months of life. In long latency range (>80 ms), the P(1)/N(1) response appeared after the fourth week of life and further increased in amplitude and decreased in latency, reaching mature shapes between the fourth and sixth months after birth (p.n.). Cortical activated areas became increasingly smaller during the first 3 months of life, reaching mature values at the fourth month p.n. The layer-specific pattern of synaptic activity matured 4 months p.n. In congenitally deaf cats, the developmental pattern was different. The lowest cortical LFP thresholds were significantly smaller than in hearing controls, demonstrating a "hypersensitivity" to sensory inputs. The development of N(b) waves was delayed and altered and the long latency responses became smaller than in controls at the second and third months. The activated areas remained smaller than in controls until the third month, then they increased rapidly and exceeded the activated areas of age-matched controls. From the fourth month on, the activated areas decreased again and smaller synaptic currents were found in deaf cats than in controls. The presented data demonstrate that functional development of the auditory cortex critically depends on auditory experience.

摘要

该研究调查了听力正常和先天性耳聋猫的初级听觉皮层中局部场电位(LFP)的出生后早期发育情况。在听力正常的猫中,经耳蜗内电刺激诱发的LFP在中潜伏期范围内呈现出发育变化,包括单个波峰和起始潜伏期的缩短,以及在出生后的头2个月内其波形和潜伏期的成熟。在长潜伏期范围(>80毫秒)内,P(1)/N(1)反应在出生后第四周出现,其振幅进一步增加,潜伏期缩短,在出生后第四至六个月达到成熟波形。在出生后的头3个月内,皮层激活区域逐渐变小,在出生后第四个月达到成熟值。突触活动的层特异性模式在出生后4个月成熟。在先天性耳聋的猫中,发育模式有所不同。最低的皮层LFP阈值明显低于听力正常的对照猫,表明对感觉输入存在“超敏反应”。N(b)波的发育延迟且发生改变,在第二个月和第三个月时,长潜伏期反应比对照猫小。激活区域在第三个月之前一直比对照猫小,然后迅速增大并超过年龄匹配的对照猫的激活区域。从第四个月开始,激活区域再次减小,并且在耳聋猫中发现的突触电流比对照猫小。所呈现的数据表明,听觉皮层的功能发育严重依赖于听觉经验。

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