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Contribution of TMS and TMS-EEG to the Understanding of Mechanisms Underlying Physiological Brain Aging

机译:TMS和TMS-EEG对生理脑老化机制的理解贡献

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摘要

In the human brain, aging is characterized by progressive neuronal loss, leading to disruption of synapses and to a degree of failure in neurotransmission. However, there is increasing evidence to support the notion that the aged brain has a remarkable ability to reorganize itself, with the aim of preserving its physiological activity. It is important to develop objective markers able to characterize the biological processes underlying brain aging in the intact human, and to distinguish them from brain degeneration associated with many neurological diseases. Transcranial magnetic stimulation (TMS), coupled with electromyography or electroencephalography (EEG), is particularly suited to this aim, due to the functional nature of the information provided, and thanks to the ease with which it can be integrated with behavioral manipulation. In this review, we aimed to provide up to date information about the role of TMS and TMS-EEG in the investigation of brain aging. In particular, we focused on data about cortical excitability, connectivity and plasticity, obtained by using readouts such as motor evoked potentials and transcranial evoked potentials. Overall, findings in the literature support an important potential contribution of TMS to the understanding of the mechanisms underlying normal brain aging. Further studies are needed to expand the current body of information and to assess the applicability of TMS findings in the clinical setting.
机译:在人脑中,老化的特征在于渐进神经元损失,导致突触的破坏以及神经递质的失败程度。然而,增加了证据,支持老年大脑具有显着重组本身的能力,目的是保留其生理活动。开发客观标志物,能够在完整的人类中表征脑老化的生物学过程,并将它们与许多神经疾病相关的脑退化区分开来。由于所提供信息的功能性质,与肌电图或脑电图(EEG)耦合的经颅磁刺激(TMS)特别适用于此目的,并且由于提供的信息,并且可以与行为操纵集成的易用性。在本综述中,我们旨在提供有关TMS和TMS-EEG在脑老化调查中的作用的日期信息。特别是,我们专注于通过使用诸如电动机诱发电位和经颅诱发电位的读数获得的皮质兴奋性,连接和可塑性的数据。总体而言,文献中的调查结果支持TMS对理解正常脑老化的机制的重要潜在贡献。需要进一步的研究来扩大当前的信息体,并评估TMS发现在临床环境中的适用性。

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