Grad, M.; Nir, A.; Levy, G.; Trangle, S.S.; Shapira, G.; Shomron, N.; Assaf, Y.; Barak, B.
Altered White Matter and microRNA Expression in a Murine Model Related to Williams Syndrome Suggests That miR-34b/c Affects Brain Development via Ptpru and Dcx Modulation. Cells 2022, 11, 158.
https://doi.org/10.3390/cells11010158
AMA Style
Grad M, Nir A, Levy G, Trangle SS, Shapira G, Shomron N, Assaf Y, Barak B.
Altered White Matter and microRNA Expression in a Murine Model Related to Williams Syndrome Suggests That miR-34b/c Affects Brain Development via Ptpru and Dcx Modulation. Cells. 2022; 11(1):158.
https://doi.org/10.3390/cells11010158
Chicago/Turabian Style
Grad, Meitar, Ariel Nir, Gilad Levy, Sari Schokoroy Trangle, Guy Shapira, Noam Shomron, Yaniv Assaf, and Boaz Barak.
2022. "Altered White Matter and microRNA Expression in a Murine Model Related to Williams Syndrome Suggests That miR-34b/c Affects Brain Development via Ptpru and Dcx Modulation" Cells 11, no. 1: 158.
https://doi.org/10.3390/cells11010158
APA Style
Grad, M., Nir, A., Levy, G., Trangle, S. S., Shapira, G., Shomron, N., Assaf, Y., & Barak, B.
(2022). Altered White Matter and microRNA Expression in a Murine Model Related to Williams Syndrome Suggests That miR-34b/c Affects Brain Development via Ptpru and Dcx Modulation. Cells, 11(1), 158.
https://doi.org/10.3390/cells11010158