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Multifunctional microelectronic fibers enable wireless modulation of gut and brain neural circuits | Nature Biotechnology

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Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript. Advertisement Slider with three content items shown per slide. Use the Previous and Next buttons to navigate the slides or the slide controller buttons at the end to navigate through each slide. Woo Seok Kim, Sungcheol Hong, … Sung Il Park Jinxing Li, Yuxin Liu, … Zhenan Bao Changbo Liu, Yu Zhao, … Xing Sheng Tong Li, Zhidong Wei, … Zhang-Qi Feng Nick J. Spencer & Hongzhen Hu Helen Steins, Michael Mierzejewski, … Thomas Stieglitz Sang Min Won, Le Cai, … John A. Rogers Choong Yeon Kim, Min Jeong Ku, … Jae-Woong Jeong Claudia Kathe, Frédéric Michoud, … Grégoire Courtine Nature Biotechnology (2023)Cite this article 21k Access

Main The extensive lines of bidirectional communication between the brain and visceral organs facilitate integration of internally arising interoceptive cues that are critical for survival. The gut–brain communication exemplifies one such important pathway wherein humoral and neural signals emerging from the abdominal viscera relay metabolic information to the brain for maintaining energy balance. Besides the well-known homeostatic functions, recent evidence suggests that the consciously imperceptible gut-to-brain signals can also modulate higher-level cognitive processes such as…

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