Publications
This page features selected articles from Rowland Fellows published during (or shortly after) their fellowship periods.
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271 results
271 results
2026
Banks, E., Bárdy, P., Tran, N., Nguyen, P., Stojilković, B., Gozzi, K., Maqbool, A., & Le, T. (2026). A bacterial CARD-NLR-like immune system controls the release of gene transfer agents. Nature Microbiology. https://doi.org/10.1038/s41564-026-02316-4
Banks, E., Bárdy, P., Tran, N., Nguyen, P., Stojilković, B., Gozzi, K., Maqbool, A., & Le, T. (2026). A bacterial CARD-NLR-like immune system controls the release of gene transfer agents. Nature Microbiology. https://doi.org/10.1038/s41564-026-02316-4
Shen, J., Stangel, A., Sung, S., El Baggari, I., Sun, K., & Hovden, R. (2026). Melting of Charge Density Waves in Low Dimensions. Matter.
Shen, J., Stangel, A., Sung, S., El Baggari, I., Sun, K., & Hovden, R. (2026). Melting of Charge Density Waves in Low Dimensions. Matter.
Suchandra, P., & Raayai, S. (2026). Impact of the formation angle on the drag of bio-inspired V-formations. ArXiv:2604.23052.
Suchandra, P., & Raayai, S. (2026). Impact of the formation angle on the drag of bio-inspired V-formations. ArXiv:2604.23052.
Seymoure, B., Deitsch, J., Hyder, P., Sanchez, B., Pollard, K., Rios, I., Robinson-Griffiths, E., Saenz-Arreola, S., Horne, L., Da Cunha, O., Neria, O., Mead, J., Daszak, I., & Owens, A. (2026). Glare more than uplight attracts flying insects to artificial lights. Biological Conservation.
Seymoure, B., Deitsch, J., Hyder, P., Sanchez, B., Pollard, K., Rios, I., Robinson-Griffiths, E., Saenz-Arreola, S., Horne, L., Da Cunha, O., Neria, O., Mead, J., Daszak, I., & Owens, A. (2026). Glare more than uplight attracts flying insects to artificial lights. Biological Conservation.
Shi, S., Tender, G., Xiong, J., Buff, J., Park, H., Mendiola, J., Wilson, E., Abu-Remaileh, M., Bertozzi, C., & Wyss-Coray, T. (2026). Mucin-binding protein shuttles enable delivery of brain-targeted therapeutics. BioRxiv. https://doi.org/10.64898/2026.03.22.713512v2
Shi, S., Tender, G., Xiong, J., Buff, J., Park, H., Mendiola, J., Wilson, E., Abu-Remaileh, M., Bertozzi, C., & Wyss-Coray, T. (2026). Mucin-binding protein shuttles enable delivery of brain-targeted therapeutics. BioRxiv. https://doi.org/10.64898/2026.03.22.713512v2
Ashoka, A., Lim, J., Rao, A., & Zimin, D. (2026). Electric Field Resolved Image Formation in a Widefield Optical Microscope. ArXiv:2603.02362.
Ashoka, A., Lim, J., Rao, A., & Zimin, D. (2026). Electric Field Resolved Image Formation in a Widefield Optical Microscope. ArXiv:2603.02362.
Singh, R., Chinni, A., Cannistraci, E., Salinas, R., Yadav, S., Gozzi, K., & Schumacher, M. (2026). Transcription activation mechanism of a noncanonical DNA damage response pathway by the WYL-activator, DriD. Science Advances. https://doi.org/10.1126/sciadv.aec6337
Singh, R., Chinni, A., Cannistraci, E., Salinas, R., Yadav, S., Gozzi, K., & Schumacher, M. (2026). Transcription activation mechanism of a noncanonical DNA damage response pathway by the WYL-activator, DriD. Science Advances. https://doi.org/10.1126/sciadv.aec6337
Guldner, I., Wagner, V., Moran-Losada, P., Shi, S., Chen, K., Meese, B., Oh, H., Guen, Y., Lu, N., Wong, P., To, N., Garceau, D., Guo, Z., Luo, J., Sasner, M., Keller, A., Yang, A., Cheung, T., & Wyss-Coray, T. (2026). Synaptic proteins that aggregate and degrade slower with aging accumulate in microglia. Nature. https://doi.org/10.1101/2025.05.20.654652v1
Guldner, I., Wagner, V., Moran-Losada, P., Shi, S., Chen, K., Meese, B., Oh, H., Guen, Y., Lu, N., Wong, P., To, N., Garceau, D., Guo, Z., Luo, J., Sasner, M., Keller, A., Yang, A., Cheung, T., & Wyss-Coray, T. (2026). Synaptic proteins that aggregate and degrade slower with aging accumulate in microglia. Nature. https://doi.org/10.1101/2025.05.20.654652v1
2025
Iwasaki, K., Kawano, S., Cassod, A., Neuhauser, C., & Rayshubskiy, A. (2025). Drosophila learn to prefer immobile spherical objects through repeated physical interaction. Current Biology.
Iwasaki, K., Kawano, S., Cassod, A., Neuhauser, C., & Rayshubskiy, A. (2025). Drosophila learn to prefer immobile spherical objects through repeated physical interaction. Current Biology.
Awad, J., Brar, G., Cadwalader, E., Dillard, D., Esposito, L., Evans, E., Gula, S., Jarošík, G., Khelifa, S., Lewis, J., Lowery, S., Magagula, S., McLachlan, J., Murphy, S., Ngubane, S., Orrock, J., Owens, A., Pollet, M., Samways, J., … Samways, M. (2025). Defining the decline: A glossary relevant to insect decline. Journal of Insect Science.
Awad, J., Brar, G., Cadwalader, E., Dillard, D., Esposito, L., Evans, E., Gula, S., Jarošík, G., Khelifa, S., Lewis, J., Lowery, S., Magagula, S., McLachlan, J., Murphy, S., Ngubane, S., Orrock, J., Owens, A., Pollet, M., Samways, J., … Samways, M. (2025). Defining the decline: A glossary relevant to insect decline. Journal of Insect Science.
Edwards, M., Kar, N., Freitas, D., Zhang, L., Wahab, O., & Baker, L. (2025). Size and Shape Effects on Nanoparticle-Catalyzed Reactions Enabled by High-Throughput Variable-Temperature Desorption Electrospray Ionization Mass Spectrometry. Analytical Chemistry. https://doi.org/10.1021/acs.analchem.5c02537
Edwards, M., Kar, N., Freitas, D., Zhang, L., Wahab, O., & Baker, L. (2025). Size and Shape Effects on Nanoparticle-Catalyzed Reactions Enabled by High-Throughput Variable-Temperature Desorption Electrospray Ionization Mass Spectrometry. Analytical Chemistry. https://doi.org/10.1021/acs.analchem.5c02537
Chan, W., Daszak, I., Buntin, G., Cook, D., Crow, W., Huang, F., Huseth, A., Kesheimer, K., Ludwick, D., Paula-Moraes, S., Reisig, D., & Owens, A. (2025). Historical behavioral data disentangle evolutionary and environmental drivers of recent declines in insect attraction to light. Proceedings of the Royal Society B.
Chan, W., Daszak, I., Buntin, G., Cook, D., Crow, W., Huang, F., Huseth, A., Kesheimer, K., Ludwick, D., Paula-Moraes, S., Reisig, D., & Owens, A. (2025). Historical behavioral data disentangle evolutionary and environmental drivers of recent declines in insect attraction to light. Proceedings of the Royal Society B.