Queensland Brain Institute, The University of Queensland, Queensland 4072, Australia.
J Neurosci. 2012 May 16;32(20):7001-8. doi: 10.1523/JNEUROSCI.1028-12.2012.
Neural plasticity plays a critical role in learning, memory, and recovery from injury to the nervous system. Although much is known about the physical and physiological determinants of plasticity, little is known about the influence of cognitive factors. In this study, we investigated whether selective attention plays a role in modifying changes in neural excitability reflecting long-term potentiation (LTP)-like plasticity. We induced LTP-like effects in the hand area of the human motor cortex using transcranial magnetic stimulation (TMS). During the induction of plasticity, participants engaged in a visual detection task with either low or high attentional demands. Changes in neural excitability were assessed by measuring motor-evoked potentials in a small hand muscle before and after the TMS procedures. In separate experiments plasticity was induced either by paired associative stimulation (PAS) or intermittent theta-burst stimulation (iTBS). Because these procedures induce different forms of LTP-like effects, they allowed us to investigate the generality of any attentional influence on plasticity. In both experiments reliable changes in motor cortex excitability were evident under low-load conditions, but this effect was eliminated under high-attentional load. In a third experiment we investigated whether the attentional task was associated with ongoing changes in the excitability of motor cortex, but found no difference in evoked potentials across the levels of attentional load. Our findings indicate that in addition to their role in modifying sensory processing, mechanisms of attention can also be a potent modulator of cortical plasticity.
神经可塑性在学习、记忆和神经系统损伤的恢复中起着关键作用。尽管人们对可塑性的物理和生理决定因素有了很多了解,但对认知因素的影响却知之甚少。在这项研究中,我们研究了选择性注意是否在改变反映长时程增强(LTP)样可塑性的神经兴奋性变化中起作用。我们使用经颅磁刺激(TMS)在手运动皮层区域诱导 LTP 样效应。在诱导可塑性期间,参与者在手区域进行视觉检测任务,注意力需求低或高。通过在 TMS 程序前后测量小型手部肌肉中的运动诱发电位来评估神经兴奋性的变化。在单独的实验中,通过成对关联刺激(PAS)或间歇性 theta 爆发刺激(iTBS)诱导可塑性。因为这些程序诱导不同形式的 LTP 样效应,所以它们允许我们研究注意力对可塑性的任何普遍影响。在这两个实验中,在低负荷条件下,运动皮层兴奋性的可靠变化是明显的,但在高注意力负荷下,这种效应被消除了。在第三个实验中,我们研究了注意任务是否与运动皮层兴奋性的持续变化有关,但在注意力负荷水平上,没有发现诱发电位的差异。我们的发现表明,除了在调节感觉处理方面的作用外,注意力机制还可以成为皮质可塑性的有效调节剂。