Peng Yin
Affiliations: | Systems Biology | Harvard Medical School, Boston, MA, United States |
Area:
Molecular TechnologyWebsite:
http://www.fas.harvard.edu/~biophys/Peng_Yin.htmGoogle:
"Peng Yin"Bio:
http://yin.hms.harvard.edu/people/yin.peng/index.html
http://www.genealogy.math.ndsu.nodak.edu/id.php?id=95966
Parents
Sign in to add mentorJohn H. Reif | grad student | 2005 | Duke (MathTree) | |
(DNA based self -assembly and nano-device: Theory and practice.) | ||||
Niles A. Pierce | post-doc | 2005-2009 | Caltech | |
Erik Winfree | post-doc | 2005-2009 | Caltech |
Children
Sign in to add traineeCasey N Grun | research assistant | (Microtree) | |
Dileep D. Monie | research assistant | Harvard (Neurotree) | |
Florian Schueder | research assistant | 2014-2015 | Harvard (Physics Tree) |
Yu Wang | grad student | 2013- | |
John P. Sadowski | grad student | 2014 | Harvard |
Mingjie Dai | grad student | 2010-2016 | Harvard |
Hanquan Su | post-doc | 2020- | Harvard Medical School |
Sarah Sandler | post-doc | 2024- | Harvard Medical School |
Ralf Jungmann | post-doc | 2014 | Harvard (Physics Tree) |
Brian Beliveau | post-doc | 2015-2018 | Harvard Medical School (FlyTree) |
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Publications
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Wang S, Shin TW, Yoder HB, et al. (2024) Single-shot 20-fold expansion microscopy. Nature Methods |
Lun XK, Sheng K, Yu X, et al. (2024) Signal amplification by cyclic extension enables high-sensitivity single-cell mass cytometry. Nature Biotechnology |
Wang Y, Liu X, Zeng Y, et al. (2024) Multiplexed in situ protein imaging using DNA-barcoded antibodies with extended hybridization chain reactions. Nucleic Acids Research |
Stein J, Ericsson M, Nofal M, et al. (2024) Cryosectioning-enabled super-resolution microscopy for studying nuclear architecture at the single protein level. Biorxiv : the Preprint Server For Biology |
Hong F, Kishi JY, Delgado RN, et al. (2023) Thermal-plex: fluidic-free, rapid sequential multiplexed imaging with DNA-encoded thermal channels. Nature Methods |
Wintersinger CM, Minev D, Ershova A, et al. (2023) Author Correction: Multi-micron crisscross structures grown from DNA-origami slats. Nature Nanotechnology |
Wintersinger CM, Minev D, Ershova A, et al. (2022) Multi-micron crisscross structures grown from DNA-origami slats. Nature Nanotechnology |
Sarkar D, Kang J, Wassie AT, et al. (2022) Revealing nanostructures in brain tissue via protein decrowding by iterative expansion microscopy. Nature Biomedical Engineering |
van der Linden AJ, Pieters PA, Bartelds MW, et al. (2022) DNA Input Classification by a Riboregulator-Based Cell-Free Perceptron. Acs Synthetic Biology. 11: 1510-1520 |
Mathur D, Samanta A, Ancona MG, et al. (2021) Understanding Förster Resonance Energy Transfer in the Sheet Regime with DNA Brick-Based Dye Networks. Acs Nano |