TY - JOUR
T1 - High-density, ultraflexible organic electrochemical transistor array for brain activity mapping
AU - Xu, Wei
AU - Zhu, Yanlan
AU - Zhou, Xiaolin
AU - Guo, Haoyue
AU - Wang, Jingxin
AU - Zhu, Ruiqi
AU - Hu, Zhengwei
AU - Ma, Wei
AU - Ma, Xing
AU - Li, Xiaojian
AU - Xu, Xiaomin
N1 - Publisher Copyright:
© 2025 The Royal Society of Chemistry.
PY - 2025/1/20
Y1 - 2025/1/20
N2 - Organic electrochemical transistors (OECTs) are emerging as promising neural electrodes due to their capabilities for on-site signal amplification, customizable mechanical flexibility, biocompatibility, and stability in biotic conditions. However, documented flexible OECT arrays face limitations in channel count and spatiotemporal resolution. Here, we report a high-density, ultraflexible OECT array designed explicitly for the high-resolution electrocorticogram (ECoG) signal recording. Featuring vertically stacked source and drain electrodes, the array incorporates 1024 channels in a compact form factor, only 4.2 μm thick, achieving a density of 10 000 transistors per square centimeter. A 16 × 16 segment of the 1024-channel array was utilized to map whisker-related signals in a mouse model, effectively locating neural activities in response to tactile stimulation. Besides, it demonstrates high mechanical compliance and long-term stability, remaining effective for three months post-implantation and beyond. With its excellent resolution and durability, the ultraflexible OECT array promises to enhance the monitoring and understanding of neural dynamics across a wide spatiotemporal scale.
AB - Organic electrochemical transistors (OECTs) are emerging as promising neural electrodes due to their capabilities for on-site signal amplification, customizable mechanical flexibility, biocompatibility, and stability in biotic conditions. However, documented flexible OECT arrays face limitations in channel count and spatiotemporal resolution. Here, we report a high-density, ultraflexible OECT array designed explicitly for the high-resolution electrocorticogram (ECoG) signal recording. Featuring vertically stacked source and drain electrodes, the array incorporates 1024 channels in a compact form factor, only 4.2 μm thick, achieving a density of 10 000 transistors per square centimeter. A 16 × 16 segment of the 1024-channel array was utilized to map whisker-related signals in a mouse model, effectively locating neural activities in response to tactile stimulation. Besides, it demonstrates high mechanical compliance and long-term stability, remaining effective for three months post-implantation and beyond. With its excellent resolution and durability, the ultraflexible OECT array promises to enhance the monitoring and understanding of neural dynamics across a wide spatiotemporal scale.
UR - https://www.scopus.com/pages/publications/105001064324
U2 - 10.1039/d4tc02839b
DO - 10.1039/d4tc02839b
M3 - 文章
AN - SCOPUS:105001064324
SN - 2050-7534
VL - 13
SP - 4385
EP - 4397
JO - Journal of Materials Chemistry C
JF - Journal of Materials Chemistry C
IS - 9
ER -