接口
再生医学
神经科学
电生理学
神经假体
移植
脑组织
神经干细胞
神经工程
计算机科学
神经活动
脑-机接口
生物医学工程
脑细胞
哺乳动物大脑
神经系统
人体生理学
中枢神经系统
组织工程
神经假体
多电极阵列
神经细胞
医学
纳米技术
神经生理学
干细胞
神经系统
生物相容性材料
再生(生物学)
细胞
出处
期刊:University of Cambridge - Apollo
[University of Cambridge]
日期:2026-08-12
摘要
Bioelectronic medicine enables direct interfacing with native cell populations but remains limited by poor long-term integration and minimal interaction with non-electroactive cells. In contrast, regenerative medicine promotes tissue integration yet lacks bidirectional functionality. Here, we present a hybrid implantation methodology combining a tissue engineered cellularized hydrogel with a neural recording array for simultaneous delivery into the brain via needle placement. This approach enables co-localized transplantation of cells and electronics while minimizing surgical footprint. Post-implantation electrophysiological recordings show functional integration with surrounding neural tissue, demonstrating the feasibility of this platform for coupled bioelectronic sensing and regenerative capabilities.
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