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通过电离子调制对神经膜电位进行实时体内控制

Real-Time In Vivo Control of Neural Membrane Potential by Electro-Ionic Modulation.

作者信息

Soybaş Zafer, Şimşek Sefa, Erol F M Betül, Erdoğan U Çiya, Şimşek Esra N, Şahin Büşra, Marçalı Merve, Aydoğdu Bahattin, Elbüken Çağlar, Melik Rohat

机构信息

Department of Electrical and Electronics Engineering, TOBB University of Economics & Technology, Ankara 06510, Turkey.

Faculty of Medicine, Hacettepe University, Ankara 06100, Turkey.

出版信息

iScience. 2019 Jul 26;17:347-358. doi: 10.1016/j.isci.2019.06.038. Epub 2019 Jul 5.

Abstract

Theoretically, by controlling neural membrane potential (V) in vivo, motion, sensation, and behavior can be controlled. Until now, there was no available technique that can increase or decrease ion concentration in vivo in real time to change neural membrane potential. We introduce a method that we coin electro-ionic modulation (EIM), wherein ionic concentration around a nerve can be controlled in real time and in vivo. We used an interface to regulate the Ca ion concentration around the sciatic nerve of a frog and thus achieved stimulation and blocking with higher resolution and lower current compared with electrical stimulation. As EIM achieves higher controllability of V, it has potential to replace conventional methods used for the treatment of neurological disorders and may bring a new perspective to neuromodulation techniques.

摘要

理论上,通过在体内控制神经膜电位(V),可以控制运动、感觉和行为。到目前为止,还没有一种可用的技术能够在体内实时增加或减少离子浓度以改变神经膜电位。我们介绍一种我们称之为电离子调制(EIM)的方法,其中可以在体内实时控制神经周围的离子浓度。我们使用一个接口来调节青蛙坐骨神经周围的钙离子浓度,因此与电刺激相比,能够以更高的分辨率和更低的电流实现刺激和阻断。由于EIM实现了对V的更高可控性,它有潜力取代用于治疗神经疾病的传统方法,并可能为神经调节技术带来新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c02/6651852/73c499ed3cf2/fx1.jpg

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