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초록
An incompatibility between skin homeostasis and existing biosensor interfaces inhibits long-term electrophysiological signal measurement. Inspired by the leaf homeostasis system, we developed the first homeostatic cellulose biosensor with functions of protection, sensation, self-regulation, and biosafety. Moreover, we find that a mesoporous cellulose membrane transforms into homeostatic material with properties that include high ion conductivity, excellent flexibility and stability, appropriate adhesion force, and self-healing effects when swollen in a saline solution. The proposed biosensor is found to maintain a stable skin-sensor interface through homeostasis even when challenged by various stresses, such as a dynamic environment, severe detachment, dense hair, sweat, and long-term measurement. Last, we demonstrate the high usability of our homeostatic biosensor for continuous and stable measurement of electrophysiological signals and give a showcase application in the field of brain-computer interfacing where the biosensors and machine learning together help to control real-time applications beyond the laboratory at unprecedented versatility.
키워드
- 제목
- Leaf-inspired homeostatic cellulose biosensors
- 저자
- Kim, Ji-Yong; Yun, Yong Ju; Jeong, Joshua; Kim, C-Yoon; Muller, Klaus-Robert; Lee, Seong-Whan
- 발행일
- 2021-04
- 유형
- Article
- 저널명
- Science Advances
- 권
- 7
- 호
- 16