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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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Photo: VCG
    Photo: VCG
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.

B |     《黄昏血族》是一款由From Software制作并发行的多人动作角色扮演游戏,由宫崎英高担任总监,将于2026年内发售,登陆Switch 2平台。

C |     据GamesRadar+报道,近日在接受采访时,宫崎英高表示,他希望《黄昏血族》在设计角色时采取更加宽泛的思路。他并不希望设计受到传统吸血鬼或怪物概念的限制,而卓克(下图)这样的设计恰恰完美诠释了他的设计理念。

D |     虽然比起其他角色,卓克看起来相对笨重、不太雅致,但实际上,在《黄昏血族》测试期间,卓克的人气可一点也不低,他的武器是海底电缆和鱼枪,技能则是潜水服背部的导弹和利用喷气背包将自己发射出去的头槌,虽然攻击动作笨重但伤害极高。    宫崎英高表示,他不希望玩家将本作的的角色简单地理解为“吸血鬼”一样的角色:“在这款游戏中,玩家角色并不是吸血鬼。我们不希望他们仅仅被塑造成怪物,而是希望给人一种感觉,让他们成为拥有智慧、哲学思想、文化和历史的一个种族。

E | ”     他补充表示:“拥有传统概念确实很重要,但我认为在角色设计方面,我们应该采取更加宽泛的思路。如果你看看卓克,我想你就会很容易理解这一点。”本文由游民星空制作发布,未经允许禁止转载。

F | 更多相关资讯请关注:黄昏血族专区。

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Published on:05:51:57