Kirigami electronics for long-term electrophysiological recording of human neural organoids and assembloids | Nature Biotechnology
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. Hyogeun Shin, Sohyeon Jeong, … Il-Joo Cho Zhengtuo Zhao, Hanlin Zhu, … Chong Xie Tal Sharf, Tjitse van der Molen, … Kenneth S. Kosik Yuki Miura, Min-Yin Li, … Sergiu P. Pașca Shouliang Guan, Huihui Tian, … Ying Fang Enming Song, Jinghua Li, … John A. Rogers David Eriksson, Artur Schneider, … Ilka Diester Abraham Vázquez-Guardado, Yiyuan Yang, … John A. Rogers Kyung Jin Seo, Mackenna Hill, … Hui Fang Nature Biotechnology (2024)Cite
Data availability Single-cell gene expression data are deposited to the Gene Expression Omnibus under the accession number GSE221032. The data that support the other findings of this study are available from the corresponding authors. Code availability The custom code used in this study is available on GitHub at https://github.com/cforro/KiriE_2023_NatureBiotech. References Pașca, S. P. The rise of three-dimensional human brain cultures. Nature 553, 437–445 (2018). Article PubMed Google Scholar Kelley, K. W. & Pașca, S. P. Human brain organogenesis: toward a cellular understanding of…
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