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面向脑机接口的犹他神经电极技术 被引量:9
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作者 谢凡 奚野 +1 位作者 徐庆达 刘景全 《物理化学学报》 SCIE CAS CSCD 北大核心 2020年第12期24-35,共12页
脑机接口(Brain-computer interface,BCI),是指在人或动物脑与计算机或其它电子设备之间建立的连接通路,实现了脑与外部设备的直接交互,在认识脑、保护脑和模拟脑方面有着重要的作用,尤其是将来可用于治疗患有神经系统疾病的患者,使他... 脑机接口(Brain-computer interface,BCI),是指在人或动物脑与计算机或其它电子设备之间建立的连接通路,实现了脑与外部设备的直接交互,在认识脑、保护脑和模拟脑方面有着重要的作用,尤其是将来可用于治疗患有神经系统疾病的患者,使他们受损的运动和感知等功能得以恢复。神经电极作为脑机接口的核心部分,是与神经元相互作用的电生理器件,可以用来记录或干预神经活动状态,由美国犹他大学提出的犹他电极阵列(Utah Electrode Array,UEA)是神经电极的一个典型代表。犹他独特的三维针状结构使每个电极具有高时空分辨率的同时相互之间有良好的绝缘,植入后电极尖端只作用于周围一小群神经元,甚至可以记录单个神经元的放电活动。本文主要介绍了UEA的结构、制造工艺流程和功能特点,重点论述其在高密度阵列、无线传输、光电极阵列等方面的研究进展,同时分析了可用于提高电极可靠性的表面修饰方法,并举例说明了UEA的临床应用,最后对未来的发展趋势进行了展望。 展开更多
关键词 神经电极 植入式 犹他电极阵列 表面修饰 生物相容性
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A flexible neural implant with ultrathin substrate for low-invasive brain–computer interface applications 被引量:3
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作者 Zhejun Guo Fang Wang +10 位作者 Longchun Wang Kejun Tu Chunpeng Jiang Ye Xi Wen Hong qingda xu Xiaolin Wang Bin Yang Bomin Sun Zude Lin Jingquan Liu 《Microsystems & Nanoengineering》 SCIE EI CSCD 2022年第6期153-164,共12页
Implantable brain–computer interface(BCI)devices are an effective tool to decipher fundamental brain mechanisms and treat neural diseases.However,traditional neural implants with rigid or bulky cross-sections cause t... Implantable brain–computer interface(BCI)devices are an effective tool to decipher fundamental brain mechanisms and treat neural diseases.However,traditional neural implants with rigid or bulky cross-sections cause trauma and decrease the quality of the neuronal signal.Here,we propose a MEMS-fabricated flexible interface device for BCI applications.The microdevice with a thin film substrate can be readily reduced to submicron scale for low-invasive implantation.An elaborate silicon shuttle with an improved structure is designed to reliably implant the flexible device into brain tissue.The flexible substrate is temporarily bonded to the silicon shuttle by polyethylene glycol.On the flexible substrate,eight electrodes with different diameters are distributed evenly for local field potential and neural spike recording,both of which are modified by Pt-black to enhance the charge storage capacity and reduce the impedance.The mechanical and electrochemical characteristics of this interface were investigated in vitro.In vivo,the small cross-section of the device promises reduced trauma,and the neuronal signals can still be recorded one month after implantation,demonstrating the promise of this kind of flexible BCI device as a low-invasive tool for brain–computer communication. 展开更多
关键词 NEURAL interface computer
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