Curthoys, I.S.; Smith, C.M.; Burgess, A.M.; Dlugaiczyk, J.
A Review of Neural Data and Modelling to Explain How a Semicircular Canal Dehiscence (SCD) Causes Enhanced VEMPs, Skull Vibration Induced Nystagmus (SVIN), and the Tullio Phenomenon. Audiol. Res. 2023, 13, 418-430.
https://doi.org/10.3390/audiolres13030037
AMA Style
Curthoys IS, Smith CM, Burgess AM, Dlugaiczyk J.
A Review of Neural Data and Modelling to Explain How a Semicircular Canal Dehiscence (SCD) Causes Enhanced VEMPs, Skull Vibration Induced Nystagmus (SVIN), and the Tullio Phenomenon. Audiology Research. 2023; 13(3):418-430.
https://doi.org/10.3390/audiolres13030037
Chicago/Turabian Style
Curthoys, Ian S., Christopher M. Smith, Ann M. Burgess, and Julia Dlugaiczyk.
2023. "A Review of Neural Data and Modelling to Explain How a Semicircular Canal Dehiscence (SCD) Causes Enhanced VEMPs, Skull Vibration Induced Nystagmus (SVIN), and the Tullio Phenomenon" Audiology Research 13, no. 3: 418-430.
https://doi.org/10.3390/audiolres13030037
APA Style
Curthoys, I. S., Smith, C. M., Burgess, A. M., & Dlugaiczyk, J.
(2023). A Review of Neural Data and Modelling to Explain How a Semicircular Canal Dehiscence (SCD) Causes Enhanced VEMPs, Skull Vibration Induced Nystagmus (SVIN), and the Tullio Phenomenon. Audiology Research, 13(3), 418-430.
https://doi.org/10.3390/audiolres13030037