Suppr超能文献

采用森林生长 CNT 片材构建结构规整的多功能神经探针(SAMP),并将其置于热拉伸聚合物纤维上,以实现长期的体内操作。

Structurally Aligned Multifunctional Neural Probe (SAMP) Using Forest-Drawn CNT Sheet onto Thermally Drawn Polymer Fiber for Long-Term In Vivo Operation.

机构信息

Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.

Department of Electronic Engineering and Biomedical Engineering, Hanyang University, Seoul, 04763, Republic of Korea.

出版信息

Adv Mater. 2024 Jul;36(27):e2313625. doi: 10.1002/adma.202313625. Epub 2024 Apr 8.

Abstract

Neural probe engineering is a dynamic field, driving innovation in neuroscience and addressing scientific and medical demands. Recent advancements involve integrating nanomaterials to improve performance, aiming for sustained in vivo functionality. However, challenges persist due to size, stiffness, complexity, and manufacturing intricacies. To address these issues, a neural interface utilizing freestanding CNT-sheets drawn from CNT-forests integrated onto thermally drawn functional polymer fibers is proposed. This approach yields a device with structural alignment, resulting in exceptional electrical, mechanical, and electrochemical properties while retaining biocompatibility for prolonged periods of implantation. This Structurally Aligned Multifunctional neural Probe (SAMP) employing forest-drawn CNT sheets demonstrates in vivo capabilities in neural recording, neurotransmitter detection, and brain/spinal cord circuit manipulation via optogenetics, maintaining functionality for over a year post-implantation. The straightforward fabrication method's versatility, coupled with the device's functional reliability, underscores the significance of this technique in the next-generation carbon-based implants. Moreover, the device's longevity and multifunctionality position it as a promising platform for long-term neuroscience research.

摘要

神经探针工程是一个充满活力的领域,推动了神经科学的创新,并满足了科学和医学的需求。最近的进展涉及到整合纳米材料以提高性能,旨在实现持续的体内功能。然而,由于尺寸、硬度、复杂性和制造复杂性,挑战仍然存在。为了解决这些问题,提出了一种利用从 CNT 林中提取的独立 CNT 片集成到热拉伸功能聚合物纤维上的神经接口。这种方法产生了具有结构对准的器件,从而具有出色的电气、机械和电化学性能,同时保持长期植入的生物相容性。这种采用森林提取 CNT 片的结构对准多功能神经探针(SAMP)在神经记录、神经递质检测以及通过光遗传学进行脑/脊髓电路操作方面表现出体内能力,在植入后一年多的时间内保持功能。这种制造方法的通用性和器件的功能可靠性突出了该技术在下一代基于碳的植入物中的重要性。此外,该设备的长寿命和多功能性使其成为长期神经科学研究的有前途的平台。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验