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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Influences of un-modulated acoustic inputs on functional maturation and critical-period plasticity of the primary auditory cortex.
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Influences of un-modulated acoustic inputs on functional maturation and critical-period plasticity of the primary auditory cortex.

机译:未经调制的声学输入对初级听觉皮层功能成熟和临界期可塑性的影响。

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摘要

Sensory experiences contribute to the development and specialization of signal processing capacities in the mammalian auditory system during a "critical period" of postnatal development. Earlier studies have shown that passive exposure to tonal stimuli during this postnatal epoch induces a large-scale expansion of the representations of those stimuli within the primary auditory cortex (A1) [Zhang LI, Bao S, Merzenich MM (2001) Persistent and specific influences of early acoustic environments on primary auditory cortex. Nat Neurosci 4:1123-1130]. Here, we show that exposing rat pups through the normal critical period epoch and beyond to continuous, un-modulated, moderate-level tones induces no such representational distortion, and in fact disrupts the normal development of frequency response selectivity and tonotopicity all across area A1. The area of cortex responding selectively to continuously exposed sound frequencies was actually reduced, when compared with rats reared in normal environments. Strong exposure-driven plasticity characteristic of the critical period could be induced well beyond the normal end of the critical period, by simply modulating the tonal stimulus. Thus, continuous tone exposure, like continuous noise exposure [Chang EF, Merzenich MM (2003) Environmental noise retards auditory cortical development. Science 300:498-502], ineffectively induces critical period plasticity, and indefinitely blocks the closure of a normally-brief critical period window. These findings again demonstrate the crucial role of temporally structured inputs for inducing the progressive cortical maturational changes that result in the closure of the critical period window.
机译:在产后发育的“关键时期”,感觉经验有助于哺乳动物听觉系统中信号处理能力的发展和专业化。较早的研究表明,在产后时期被动暴露于色调刺激会引起初级听觉皮层(A1)中这些刺激的表征大规模扩展[Zhang LI,Bao S,Merzenich MM(2001)持久性和特定影响初级听觉皮层的早期声学环境Nat Neurosci 4:1123-1130]。在这里,我们表明,在正常的关键时期以及以后的连续,未调制,中等水平的声调下暴露幼鼠不会引起这种代表性的失真,并且实际上会破坏整个A1区域的频率响应选择性和声音定向性的正常发展。 。与在正常环境下饲养的大鼠相比,对连续暴露的声音频率有选择性响应的皮质面积实际上减少了。通过简单地调节音调刺激,就可以在关键时期的正常结束之后产生关键时期的强烈的曝光驱动塑性特征。因此,像连续噪音暴露一样,连续音调暴露[Chang EF,Merzenich MM(2003),环境噪音会阻碍听觉皮层的发育。 Science 300:498-502]无效地诱发了关键时期的可塑性,并无限期地阻止了通常简短的关键时期窗口的关闭。这些发现再次证明了时间结构化输入在诱导渐进的皮质成熟变化中的关键作用,该变化导致关键时期窗口的关闭。

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