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Chinese scientists develop electrode coating to address signal loss and tissue adhesion problems in long-term brain-computer interface implantation_我的网站

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Chinese researchers have developed a multifunctional electrode coating that addresses key challenges in long-term brain-computer interface (BCI) implantation, including signal loss and tissue adhesion, bringing BCI one step closer to clinical application, the Global Times learned from the research team behind the findings on Sunday.
As an emerging field combining neuroscience and artificial intelligence (AI), BCI faces a major challenge of ensuring long-term compatibility between electrodes and brain tissue. Previous clinical trials showed that immune responses could cause implanted electrodes to retract after just three months, severely reducing signal quality and the number of available channels.
This problem stems from chronic inflammation triggered by implants, which creates insulating scar tissue around electrodes and separates them from neurons. Irreversible adhesion between electrodes and brain tissue after long-term implantation also makes device removal risky, potentially causing brain injury during follow-up surgeries.
Experiments showed that flexible neural electrodes coated with this material could operate stably in the brain for more than 300 days and could be safely removed without causing damage. This means the universal coating technology can make electrodes not only operate stably over the long term but can also be safely removed and replaced after aging, paving the way for long-term BCI applications.
Developed by the research team led by Zhang Wei at the Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, associated with Beijing Tiantan Hospital, Shanghai Institute of Microsystem and Information Technology and NeuroXess, a high-tech life science company specializing in BCI technologies, the cationic alternating peptide electrode coating preserves electrode flexibility and conductivity, while offering antibacterial, anti-protein adsorption and immune-rejection-inhibiting functions.
A 300-day animal study showed the coating's effectiveness. Bare electrodes experienced a sharp loss of recording capability after 90 days of implantation and could barely detect neuronal signals after 300 days. In contrast, coated electrodes maintained stable recording channels and consistently captured neural signals above 155 microvolts.
In terms of neural modulation, after 300 days of implantation, conventional electrodes required a current of 100 microamps to induce weak limb responses, while coated electrodes triggered clear movements with only 2 microamps, improving modulation efficiency by 50 times.
Notably, the removal tests highlighted a key advantage of the coating that electrodes no longer form irreversible bonds with brain tissue. In the experiments, the coated electrodes were removed intact, with minimal damage to the surrounding brain tissue, Zhang told the Global Times on Sunday.
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B | 1月9日,雷军的第一个抖动视频是专门针对红米红米手机的。今天,该公司官方的Tremble账户@Millet手机邀请雷军拍摄一段短片,其中雷军介绍了即将推出的红米红米机。

C | 雷军在视频中透露,新红米机的内部代号是“小金刚”和“质量棒”。

D | 雷军还提到了小米在震颤中发起的“小金刚能活这一集”的活动。考虑到这场运动的内容和“小金刚”的名字,这台新机器将具有韧性。其中一个视频是用高跟鞋在手机屏幕上印上印记,屏幕保持完好。在雷军在微博上发布雷米新手机的真实照片之前。手机采用了全屏幕水滴、双面2.5D玻璃幻影色彩渐变设计,以及一个支持超夜景模式的后置4800万像素摄像头。否则,我们知道新的红米“小钻石”机器将配备一个6.3英寸的fhd液晶水滴屏幕、一个后部指纹、4/6GB内存和一个后部48MP 12MP双摄像头。3900毫安电池的10W充电头将于1月10日在新独立品牌红米的Redmi会议上发布。视频:点击此处观看。
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Published on:18:25:03



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