El Mahmoudi, N.; Marouane, E.; Rastoldo, G.; Pericat, D.; Watabe, I.; Lapotre, A.; Tonetto, A.; Chabbert, C.; Tighilet, B.
Microglial Dynamics Modulate Vestibular Compensation in a Rodent Model of Vestibulopathy and Condition the Expression of Plasticity Mechanisms in the Deafferented Vestibular Nuclei. Cells 2022, 11, 2693.
https://doi.org/10.3390/cells11172693
AMA Style
El Mahmoudi N, Marouane E, Rastoldo G, Pericat D, Watabe I, Lapotre A, Tonetto A, Chabbert C, Tighilet B.
Microglial Dynamics Modulate Vestibular Compensation in a Rodent Model of Vestibulopathy and Condition the Expression of Plasticity Mechanisms in the Deafferented Vestibular Nuclei. Cells. 2022; 11(17):2693.
https://doi.org/10.3390/cells11172693
Chicago/Turabian Style
El Mahmoudi, Nada, Emna Marouane, Guillaume Rastoldo, David Pericat, Isabelle Watabe, Agnes Lapotre, Alain Tonetto, Christian Chabbert, and Brahim Tighilet.
2022. "Microglial Dynamics Modulate Vestibular Compensation in a Rodent Model of Vestibulopathy and Condition the Expression of Plasticity Mechanisms in the Deafferented Vestibular Nuclei" Cells 11, no. 17: 2693.
https://doi.org/10.3390/cells11172693
APA Style
El Mahmoudi, N., Marouane, E., Rastoldo, G., Pericat, D., Watabe, I., Lapotre, A., Tonetto, A., Chabbert, C., & Tighilet, B.
(2022). Microglial Dynamics Modulate Vestibular Compensation in a Rodent Model of Vestibulopathy and Condition the Expression of Plasticity Mechanisms in the Deafferented Vestibular Nuclei. Cells, 11(17), 2693.
https://doi.org/10.3390/cells11172693