Alper, S.R., Dorsky, R.I., 2022. Unique advantages of zebrafish larvae as a model for spinal cord regeneration. Front. Mol. Neurosci. 15, 983336.
|
Faini, G., Tanese, D., Molinier, C., Telliez, C., Hamdani, M., Blot, F., Tourain, C., de Sars, V., Del Bene, F., Forget, B.C., et al., 2023. Ultrafast light targeting for high-throughput precise control of neuronal networks. Nat. Commun. 14, 1888.
|
Francoeur, N., Sen, R., 2021. Advances in cardiac development and regeneration using zebrafish as a model system for high-throughput research. J. Dev. Biol. 9, 40.
|
Ma, D., Xue, Y., Zhang, Y., Sun, Y., Meng, A., Liu, F., 2016. The rising zebrafish research in China: Meeting report of the 3rd Chinese Zebrafish Principal Investigator Meeting & the Inaugural Meeting of China Zebrafish Society. J. Genet. Genomics 43, 617-620.
|
Ratnayake, D., Nguyen, P.D., Rossello, F.J., Wimmer, V.C., Tan, J.L., Galvis, L.A., Julier, Z., Wood, A.J., Boudier, T., Isiaku, A.I., et al., 2021. Macrophages provide a transient muscle stem cell niche via NAMPT secretion. Nature 591, 281-287.
|
Wang, Y., Liu, Q., Tang, F., Yan, L., Qiao, J., 2019. Epigenetic regulation and risk factors during the development of human gametes and early embryos. Annu. Rev. Genomics Hum. Genet. 20, 21-40.
|
Zhang, C., Brunt, L., Ono, Y., Rogers, S., Scholpp, S., 2024a. Cytoneme-mediated transport of active Wnt5b-Ror2 complexes in zebrafish. Nature 625, 126-133.
|
Zhang, Y., Kang, Z., Liu, M., Wang, L., Liu, F., 2024b. Single-cell omics identifies inflammatory signaling as a trans-differentiation trigger in mouse embryos. Dev. Cell 59, 961-978.
|
Zhang, Y., Liu, F., 2024. The evolving views of hematopoiesis: from embryo to adulthood and from in vivo to in vitro. J. Genet. Genomics 51, 3-15.
|