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Imaging Transcranial Direct Current Stimulation (tDCS) with Positron Emission Tomography (PET)

机译:具有正电子发射断层扫描(PET)的成像经颅直流刺激(TDC)

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Transcranial direct current stimulation (tDCS) is a form of non-invasive neuromodulation that is increasingly being utilized to examine and modify several cognitive and motor functions. Although tDCS holds great potential, it is difficult to determine optimal treatment procedures to accommodate configurations, the complex shapes, and dramatic conductivity differences among various tissues. Furthermore, recent demonstrations showed that up to 75% of the tDCS current applied to rodents and human cadavers was shunted by the scalp, subcutaneous tissue, and muscle, bringing the effects of tDCS on the cortex into question. Consequently, it is essential to combine tDCS with human neuroimaging to complement animal and cadaver studies and clarify if and how tDCS can affect neural function. One viable approach is positron emission tomography (PET) imaging. PET has unique potential for examining the effects of tDCS within the central nervous system in vivo , including cerebral metabolism, neuroreceptor occupancy, and neurotransmitter activity/binding. The focus of this review is the emerging role of PET and potential PET radiotracers for studying tDCS-induced functional changes in the human brain.
机译:经颅直流刺激(TDCS)是一种非侵入性神经调节的形式,越来越多地用于检查和修改几种认知和运动功能。尽管TDCS具有很大的潜力,但难以确定最佳的处理程序以适应各种组织之间的配置,复杂形状和剧烈的导电性差异。此外,最近的示威结果表明,高达75%的TDC电流施加到啮齿动物和人尸体,通过头皮,皮下组织和肌肉分流,使TDC对皮层的影响成为问题。因此,必须将TDC与人类神经复活结合以补充动物和尸体研究,并阐明TDC可以影响神经功能。一种可行的方法是正电子发射断层扫描(PET)成像。 PET具有针对研究TDC在体内中枢神经系统内的效果的独特可能性,包括脑代谢,神经大学占用和神经递质活性/结合。本综述的重点是宠物和潜在的宠物放射体制员来研究人脑中TDCS诱导的功能变化的新兴作用。

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