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Long-term motor cortex plasticity by an electronic neural implant

机译:电子神经植入物的长期运动皮层可塑性

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摘要

It has been proposed that the efficacy of neuronal connections is strengthened when there is a persistent causal relationship between presynaptic and postsynaptic activity. Such activity-dependent plasticity may underlie the reorganization of cortical representations during learning, although direct in vivo evidence is lacking. Here we show that stable reorganization of motor output can be induced by an artificial connection between two sites in the motor cortex of freely behaving primates. An autonomously operating electronic implant used action potentials recorded on one electrode to trigger electrical stimuli delivered at another location. Over one or more days of continuous operation, the output evoked from the recording site shifted to resemble the output from the corresponding stimulation site, in a manner consistent with the potentiation of synaptic connections between the artificially synchronized populations of neurons. Changes persisted in some cases for more than one week, whereas the output from sites not incorporated in the connection was unaffected. This method for inducing functional reorganization in vivo by using physiologically derived stimulus trains may have practical application in neurorehabilitation after injury.
机译:已经提出,当突触前​​和突触后活动之间存在持久的因果关系时,将增强神经元连接的功效。尽管缺乏直接的体内证据,但这种依赖于活动的可塑性可能是学习过程中皮质表征重组的基础。在这里我们表明,通过自由活动的灵长类动物的大脑皮层中两个位置之间的人工连接,可以诱导稳定的电机输出重组。自主运行的电子植入物使用记录在一个电极上的动作电位来触发在另一位置传递的电刺激。在连续操作的一或多天中,以与人工同步的神经元群体之间的突触连接增强相一致的方式,从记录位点诱发的输出移位以类似于来自相应刺激位点的输出。在某些情况下,更改会持续超过一个星期,而未包含在连接中的站点的输出不会受到影响。这种通过使用生理衍生的刺激序列在体内诱导功能重组的方法可能在损伤后的神经康复中具有实际应用。

著录项

  • 来源
    《Nature》 |2006年第7115期|p.56-60|共5页
  • 作者单位

    Department of Physiology and Biophysics and Washington National Primate Research Center, University of Washington, Seattle, Washington 98195, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 02:56:34

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