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Environmental enrichment increases response strength and paired-pulse depression of auditory cortex neurons.

机译:环境富集可增强听觉皮层神经元的反应强度和成对脉冲抑制。

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摘要

The anatomical and neurochemical consequences of enrichment on information processing have not been studied in auditory cortex. Understanding the direction of the physiologic plasticity associated with enrichment will facilitate the development of therapies tailored to specific clinical populations with auditory processing disorders. The experiments within this dissertation provide the first evidence of evoked potential plasticity in auditory cortex with an enrichment paradigm, and describe nine significant findings about the influence of housing conditions on awake rat auditory cortical evoked potentials. In chapters two and three, we recorded responses to repeated tones and noise bursts to document the time-course of changes in response strength and paired-pulse depression. In chapter four, rats were housed in conditions designed to isolate several environmental factors that may have contributed to the expression of enrichment-induced plasticity. Other rats received immunotoxic cholinergic lesions to determine if enrichment-induced plasticity is modulated by acetylcholine input from nucleus basalis. Collectively, the conclusions of this dissertation are: (1) Enrichment increases noise and tone-evoked response strength; however, (2) greater plasticity effects can be observed with narrowband stimuli that do not elicit saturated responses. (3) Housing condition increased or decreased cortical responses in less than 2 weeks in young and adult rats. (4) There was no difference in the scale of plasticity between adolescent and sexually mature rats. (5) Paired-pulse depression also increased or decreased depending on current housing condition (6) Enrichment also increased response strength and forward masking in rats with substantial cholinergic damage. (7) Rats that could hear the enriched environment, but not interact with it, exhibited increased tone-evoked responses and paired-pulse depression. (8) Social housing and exercise experienced in isolation had no effect on response strength. (9) Rats housed in a social environment had more paired-pulse depression than rats housed with a running wheel, but were not different than rats passively exposed to the sounds associated with the enriched environment. These results indicate that sensory experience modulates response strength and forward masking in the auditory cortex along a continuum of environmental experiences. The implications of these results are relevant to several clinical disorders, including autism, schizophrenia, and dyslexia.
机译:尚未在听觉皮层研究富集对信息处理的解剖学和神经化学后果。了解与富集相关的生理可塑性的方向将促进针对听觉加工障碍的特定临床人群量身定制的疗法的发展。本论文中的实验提供了具有丰富范式的听觉皮层诱发电位可塑性的第一个证据,并描述了关于住房条件对清醒大鼠听觉皮层诱发电位的影响的九个重要发现。在第二章和第三章中,我们记录了对重复音调和噪声突发的响应,以记录响应强度和成对脉冲抑制的变化的时程。在第四章中,将大鼠饲养在旨在隔离可能导致富集诱导的可塑性表达的几种环境因素的条件下。其他大鼠接受了免疫毒性胆碱能性损害,以确定是否由基础核的乙酰胆碱输入调节了富集诱导的可塑性。总体而言,本论文的结论是:(1)充实增加了噪声和声调诱发的反应强度;然而,(2)在不引起饱和反应的窄带刺激下,可以观察到更大的可塑性效应。 (3)在年轻和成年大鼠中,在不到2周的时间内,住房条件会增加或减少皮质反应。 (4)青春期和性成熟大鼠的可塑性范围没有差异。 (5)根据当前的住房条件,成对脉冲的抑郁也会增加或减少。(6)胆碱能受损大鼠的充盈也增加了其反应强度和正向掩蔽。 (7)能听到丰富的环境但不与之互动的大鼠表现出音调诱发的反应增加和成对脉冲抑制。 (8)孤立地经历的社会住房和运动对反应强度没有影响。 (9)在社交环境中生活的老鼠比在跑轮中生活的老鼠具有更多的成对脉冲抑郁,但与被动暴露在与丰富环境相关的声音中的老鼠没有什么不同。这些结果表明,感觉体验沿着连续的环境体验调节听觉皮层的响应强度和前向掩蔽。这些结果的含义与几种临床疾病有关,包括自闭症,精神分裂症和阅读障碍。

著录项

  • 作者

    Percaccio, Cherie R.;

  • 作者单位

    The University of Texas at Dallas.;

  • 授予单位 The University of Texas at Dallas.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学 ;
  • 关键词

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