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模式化声音剥夺对大鼠丘脑皮质听觉系统体内短期和长期可塑性的影响。

Effects of Patterned Sound Deprivation on Short- and Long-Term Plasticity in the Rat Thalamocortical Auditory System In Vivo.

作者信息

Soutar Chloe N, Rosen Laura G, Rodier Simon G, Dringenberg Hans C

机构信息

Department of Psychology, Queen's University, Kingston, ON, Canada K7L 3N6.

Center for Neuroscience Studies, Queen's University, Kingston, ON, Canada K7L 3N6.

出版信息

Neural Plast. 2016;2016:3407135. doi: 10.1155/2016/3407135. Epub 2016 Jan 4.

Abstract

Postnatal sensory experience plays a significant role in the maturation and synaptic stabilization of sensory cortices, such as the primary auditory cortex (A1). Here, we examined the effects of patterned sound deprivation (by rearing in continuous white noise, WN) during early postnatal life on short- and long-term plasticity of adult male rats using an in vivo preparation (urethane anesthesia). Relative to age-matched control animals reared under unaltered sound conditions, rats raised in WN (from postnatal day 5 to 50-60) showed greater levels of long-term potentiation (LTP) of field potentials in A1 induced by theta-burst stimulation (TBS) of the medial geniculate nucleus (MGN). In contrast, analyses of short-term plasticity using paired-pulse stimulation (interstimulus intervals of 25-1000 ms) did not reveal any significant effects of WN rearing. However, LTP induction resulted in a significant enhancement of paired-pulse depression (PPD) for both rearing conditions. We conclude that patterned sound deprivation during early postnatal life results in the maintenance of heightened, juvenile-like long-term plasticity (LTP) into adulthood. Further, the enhanced PPD following LTP induction provides novel evidence that presynaptic mechanisms contribute to thalamocortical LTP in A1 under in vivo conditions.

摘要

出生后的感觉经验在感觉皮层(如初级听觉皮层,A1)的成熟和突触稳定中起着重要作用。在此,我们使用体内实验(乌拉坦麻醉),研究了出生后早期有模式的声音剥夺(通过在连续白噪声,WN中饲养)对成年雄性大鼠短期和长期可塑性的影响。相对于在未改变声音条件下饲养的年龄匹配对照动物,在WN中饲养(从出生后第5天到50 - 60天)的大鼠,由内侧膝状体核(MGN)的θ波爆发刺激(TBS)诱导的A1场电位的长期增强(LTP)水平更高。相比之下,使用配对脉冲刺激(刺激间隔为25 - 1000毫秒)对短期可塑性的分析未发现WN饲养有任何显著影响。然而,对于两种饲养条件,LTP诱导均导致配对脉冲抑制(PPD)显著增强。我们得出结论,出生后早期有模式的声音剥夺导致成年期维持增强的、类似幼年的长期可塑性(LTP)。此外,LTP诱导后增强的PPD提供了新的证据,表明在体内条件下,突触前机制有助于A1中的丘脑皮质LTP。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f7a/4736309/167c35c4dcc8/NP2016-3407135.001.jpg

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