Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, 1068 Xueyuan Avenue, Shenzhen 518055, China.
Shenzhen College of Advanced Technology, University of Chinese Academy of Sciences, Shenzhen 518055, China.
ACS Appl Mater Interfaces. 2023 Feb 15;15(6):7663-7672. doi: 10.1021/acsami.2c15808. Epub 2023 Feb 3.
The cuff electrode can be wrapped in the columnar or tubular biological tissue for physiological signal detection or stimulation regulation. The reliable and non-excessive interfaces between the electrode and complex tissue are critical. Here, we propose a self-closing stretchable cuff electrode, which is able to self-close onto the bundles of tissues after dropping water. The curliness is realized by the mechanical stress mismatch between different layers of the elastic substrate. The material of the substrate can be selected to match the modulus of the target tissue to achieve minimal constraint on the tissue. Moreover, the self-closing structure keeps the cuff electrode free from any extra mechanical locking structure. For in vivo testing, both sciatic nerve stimulation to drive muscles and electromyographic signal monitoring around a rat's extensor digitorum longus for 1 month prove that our proposed electrode conforms well to the curved surface of biological tissue.
袖带电极可以包裹在柱状或管状生物组织上,用于生理信号检测或刺激调节。电极与复杂组织之间可靠且不过度的接口至关重要。在这里,我们提出了一种自闭合可拉伸袖带电极,它在滴水后能够自动关闭到组织束上。卷曲是通过弹性基底不同层之间的机械应力失配实现的。基底的材料可以被选择来匹配目标组织的模量,以对组织施加最小的约束。此外,自闭合结构使袖带电极不受任何额外的机械锁定结构的影响。在体内测试中,对大鼠伸趾长肌的坐骨神经刺激以驱动肌肉和肌电图信号监测长达 1 个月的时间证明,我们提出的电极很好地贴合了生物组织的曲面。