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Intracranial recording in patients with aphasia using nanomaterial-based flexible electronics: promises and challenges

机译:使用基于纳米材料的柔性电子的患者患者颅内记录:承诺和挑战

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摘要

In recent years, researchers have studied how nanotechnology could enhance neuroimaging techniques. The application of nanomaterial-based flexible electronics has the potential to advance conventional intracranial electroencephalography (iEEG) by utilising brain-compatible soft nanomaterials. The resultant technique has significantly high spatial and temporal resolution, both of which enhance the localisation of brain functions and the mapping of dynamic language processing. This review presents findings on aphasia, an impairment in language and communication, and discusses how different brain imaging techniques, including positron emission tomography, magnetic resonance imaging, and iEEG, have advanced our understanding of the neural networks underlying language and reading processing. We then outline the strengths and weaknesses of iEEG in studying human cognition and the development of intracranial recordings that use brain-compatible flexible electrodes. We close by discussing the potential advantages and challenges of future investigations adopting nanomaterial-based flexible electronics for intracranial recording in patients with aphasia.
机译:近年来,研究人员研究了纳米技术如何能够提高神经影像技术。纳米材料的柔性电子器件的应用具有通过利用脑相容的柔软纳米材料来推进常规颅内脑电图(IEEG)。结果技术具有显着高的空间和时间分辨率,两者都增强了大脑功能的定位和动态语言处理的映射。本综述提出了对阿波革亚洲的调查结果,语言和沟通的减值,并讨论了不同的脑成像技术,包括正电子排放层析,磁共振成像和IEEG,我们对神经网络的潜在语言和阅读处理的理解提供了高级的。然后,我们概述了IEEG在研究人类认知和使用脑兼容柔性电极的颅内记录的发展中的优势和缺点。我们通过讨论未来调查的潜在优势和挑战,采用基于纳米材料的柔性电子,用于患有失语症患者的颅内记录。

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