Evolution of brain-computer interface: action potentials, local field potentials and electrocorticograms.

Evolution of brain-computer interface: action potentials, local field potentials and electrocorticograms.
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大脑计算机界面的演变:动作电位,局部场电位和皮肤图。

DOI:
10.1016/j.conb.2010.09.010
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发表时间:
2010-12
影响因子:
5.7
通讯作者:
Moran D
Moran D
中科院分区:
医学2区
文献类型:
--
作者:
Moran D

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侵入式脑机接口(BCI)主要是在过去十年中发展起来的。虽然有一些更早的例子,但2000年确实是神经科学家,生物工程师和临床医生聚集在一起,在该领域取得重大进展的几年。在过去的十年中,有许多技术和神经科学的进步,但在过去的十年中,也看到了在BCI中使用的侵入性记录方式的类型的扩展。本文将讨论脑机接口的发展,从高侵入性,穿透性,多个单一的单元阵列,以更近的中侵入性,硬膜外微皮层电图阵列及其技术。虽然本文的目的是说明动作电位(AP),局部场电位(LFP)和皮质电图(ECoG)之间的相似性及其在过去十年中的演变;读者可能会对最近三篇专门涵盖SU BCI或ECoG BCI的深入评论感兴趣。
Invasive brain computer interfaces (BCI) have primarily evolved over the last decade. Although there are a few earlier examples, the 2000’s were really the years when a critical mass of neuroscientists, bioengineers and clinicians came together to make significant advances in the field. Over the last decade there have been numerous technological and neuroscientific advances, but the last decade has also seen an expansion in types of invasive recording modalities used in BCI. This article will discuss the evolution of BCIs from the highly-invasive, penetrating, multi-single unit arrays to the more recent meso-invasive, epidural micro-electrocorticographic arrays and their techniques. While the goal of this article is to illustrate the similarities between action potentials (AP), local field potentials (LFP) and electrocorticograms (ECoG) and their evolution over the last decade; the reader may be interested in three recent indepth reviews that specifically cover either SU BCI or ECoG BCI.
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