神经生理学
术中神经生理监测
持续监测
生物医学工程
显微外科
生物电子学
医学
神经科学
外科
材料科学
纳米技术
生物传感器
生物
工程类
运营管理
作者
Wenjianlong Zhou,Yuanwen Jiang,Qin Xu,Liangpeng Chen,Hui Qiao,Yixuan Wang,Jian‐Cheng Lai,Donglai Zhong,Yuan Zhang,Weining Li,Yanru Du,Xuecheng Wang,Jiaxin Lei,Gehong Dong,Xiudong Guan,Shunchang Ma,Peng Kang,Linhao Yuan,Milin Zhang,Jeffrey B.‐H. Tok,Deling Li,Zhenan Bao,Wang Jia
标识
DOI:10.1038/s41551-023-01069-3
摘要
In microneurosurgery, it is crucial to maintain the structural and functional integrity of the nerve through continuous intraoperative identification of neural anatomy. To this end, here we report the development of a translatable system leveraging soft and stretchable organic-electronic materials for continuous intraoperative neurophysiological monitoring. The system uses conducting polymer electrodes with low impedance and low modulus to record near-field action potentials continuously during microsurgeries, offers higher signal-to-noise ratios and reduced invasiveness when compared with handheld clinical probes for intraoperative neurophysiological monitoring and can be multiplexed, allowing for the precise localization of the target nerve in the absence of anatomical landmarks. Compared with commercial metal electrodes, the neurophysiological monitoring system allowed for enhanced post-operative prognoses after tumour-resection surgeries in rats. Continuous recording of near-field action potentials during microsurgeries may allow for the precise identification of neural anatomy through the entire procedure.
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