Omileke, D.; Bothwell, S.W.; Pepperall, D.; Beard, D.J.; Coupland, K.; Patabendige, A.; Spratt, N.J.
Decreased Intracranial Pressure Elevation and Cerebrospinal Fluid Outflow Resistance: A Potential Mechanism of Hypothermia Cerebroprotection Following Experimental Stroke. Brain Sci. 2021, 11, 1589.
https://doi.org/10.3390/brainsci11121589
AMA Style
Omileke D, Bothwell SW, Pepperall D, Beard DJ, Coupland K, Patabendige A, Spratt NJ.
Decreased Intracranial Pressure Elevation and Cerebrospinal Fluid Outflow Resistance: A Potential Mechanism of Hypothermia Cerebroprotection Following Experimental Stroke. Brain Sciences. 2021; 11(12):1589.
https://doi.org/10.3390/brainsci11121589
Chicago/Turabian Style
Omileke, Daniel, Steven W. Bothwell, Debbie Pepperall, Daniel J. Beard, Kirsten Coupland, Adjanie Patabendige, and Neil J. Spratt.
2021. "Decreased Intracranial Pressure Elevation and Cerebrospinal Fluid Outflow Resistance: A Potential Mechanism of Hypothermia Cerebroprotection Following Experimental Stroke" Brain Sciences 11, no. 12: 1589.
https://doi.org/10.3390/brainsci11121589
APA Style
Omileke, D., Bothwell, S. W., Pepperall, D., Beard, D. J., Coupland, K., Patabendige, A., & Spratt, N. J.
(2021). Decreased Intracranial Pressure Elevation and Cerebrospinal Fluid Outflow Resistance: A Potential Mechanism of Hypothermia Cerebroprotection Following Experimental Stroke. Brain Sciences, 11(12), 1589.
https://doi.org/10.3390/brainsci11121589