Syringe-injectable electronics J Liu*, TM Fu*, Z Cheng*, G Hong, T Zhou, L Jin, M Duvvuri, Z Jiang, ... Nature Nanotechnology 10 (7), 629-636, 2015 | 656 | 2015 |
Three-dimensional macroporous nanoelectronic networks as minimally invasive brain probes C Xie*, J Liu*, TM Fu*, X Dai, W Zhou, CM Lieber Nature Materials 14 (12), 1286-1292, 2015 | 389 | 2015 |
Bioinspired neuron-like electronics. X Yang*, T Zhou*, TJ Zwang*, G Hong, Y Zhao, RD Viveros, TM Fu, T Gao, ... Nature Materials, 2019 | 320 | 2019 |
Stable long-term chronic brain mapping at the single-neuron level TM Fu*, G Hong*, T Zhou*, TG Schuhmann, RD Viveros, CM Lieber Nature Methods 13 (10), 875-882, 2016 | 297 | 2016 |
General strategy for biodetection in high ionic strength solutions using transistor-based nanoelectronic sensors N Gao*, W Zhou*, X Jiang, G Hong, TM Fu, CM Lieber Nano Letters 15 (3), 2143-2148, 2015 | 271 | 2015 |
Syringe-injectable mesh electronics integrate seamlessly with minimal chronic immune response in the brain T Zhou, G Hong, TM Fu, X Yang, TG Schuhmann, RD Viveros, CM Lieber Proceedings of the National Academy of Sciences 114 (23), 5894-5899, 2017 | 217 | 2017 |
Long term stability of nanowire nanoelectronics in physiological environments W Zhou*, X Dai*, TM Fu, C Xie, J Liu, CM Lieber Nano Letters 14 (3), 1614-1619, 2014 | 166 | 2014 |
A method for single-neuron chronic recording from the retina in awake mice G Hong*, TM Fu*, M Qiao*, RD Viveros, X Yang, T Zhou, JM Lee, HG Park, ... Science 360 (6396), 1447-1451, 2018 | 154 | 2018 |
Highly scalable multichannel mesh electronics for stable chronic brain electrophysiology TM Fu*, G Hong*, RD Viveros, T Zhou, CM Lieber Proceedings of the National Academy of Sciences, 201717695, 2017 | 151 | 2017 |
Nanoelectronics-biology frontier: From nanoscopic probes for action potential recording in live cells to three-dimensional cyborg tissues X Duan, TM Fu, J Liu, CM Lieber Nano Today 8 (4), 351-373, 2013 | 144 | 2013 |
Syringe injectable electronics: Precise targeted delivery with quantitative input/output connectivity G Hong*, TM Fu*, T Zhou, TG Schuhmann, J Huang, CM Lieber Nano Letters 15 (10), 6979-6984, 2015 | 122 | 2015 |
Sub-10-nm intracellular bioelectronic probes from nanowire–nanotube heterostructures TM Fu, X Duan, Z Jiang, X Dai, P Xie, Z Cheng, CM Lieber Proceedings of the National Academy of Sciences 111 (4), 1259-1264, 2014 | 82 | 2014 |
Syringe-injectable electronics with a plug-and-play input/output interface TG Schuhmann*, J Yao*, G Hong, TM Fu, CM Lieber Nano Letters, 2017 | 66 | 2017 |
Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator AS Abdelfattah*, J Zheng*, A Singh*, YC Huang*, D Reep, G Tsegaye, ... Neuron 111 (10), 1547-1563. e9, 2023 | 43 | 2023 |
Syringe-injectable mesh electronics for stable chronic rodent electrophysiology TG Schuhmann Jr, T Zhou, G Hong, JM Lee, TM Fu, HG Park, CM Lieber Journal of Visualized Experiments: JoVE, e58003, 2018 | 39 | 2018 |
Advanced one-and two-dimensional mesh designs for injectable electronics R Viveros*, T Zhou*, G Hong, TM Fu, HYG Lin, CM Lieber Nano Letters, 2019 | 29 | 2019 |
Cellular bases of olfactory circuit assembly revealed by systematic time-lapse imaging T Li, TM Fu, KKL Wong, H Li, Q Xie, DJ Luginbuhl, MJ Wagner, E Betzig, ... Cell 184 (20), 5107-5121. e14, 2021 | 28 | 2021 |
Starless cloud core L1517B in envelope expansion with core collapse TM Fu, Y Gao, YQ Lou The Astrophysical Journal 741 (2), 113, 2011 | 18 | 2011 |
A proliferative to invasive switch is mediated by srGAP1 downregulation through the activation of TGF-β2 signaling C Mondal, MJ Gacha-Garay, KA Larkin, RC Adikes, JS Di Martino, ... Cell reports 40 (12), 2022 | 11 | 2022 |
Nanoparticle-based targeting of microglia improves the neural regeneration enhancing effects of immunosuppression in the zebrafish retina K Emmerich*, DT White*, SP Kambhampati*, GL Casado, TM Fu, ... Communications biology 6 (1), 534, 2023 | 7 | 2023 |