Wang, Y.; Wang, P.; Liu, C.; Chen, W.; Wang, P.; Jiang, L.
Hydrogen-Rich Saline Attenuates Chronic Allodynia after Bone Fractures via Reducing Spinal CXCL1/CXCR2-Mediated Iron Accumulation in Mice. Brain Sci. 2022, 12, 1610.
https://doi.org/10.3390/brainsci12121610
AMA Style
Wang Y, Wang P, Liu C, Chen W, Wang P, Jiang L.
Hydrogen-Rich Saline Attenuates Chronic Allodynia after Bone Fractures via Reducing Spinal CXCL1/CXCR2-Mediated Iron Accumulation in Mice. Brain Sciences. 2022; 12(12):1610.
https://doi.org/10.3390/brainsci12121610
Chicago/Turabian Style
Wang, Yanting, Pei Wang, Cuicui Liu, Wei Chen, Pingping Wang, and Lili Jiang.
2022. "Hydrogen-Rich Saline Attenuates Chronic Allodynia after Bone Fractures via Reducing Spinal CXCL1/CXCR2-Mediated Iron Accumulation in Mice" Brain Sciences 12, no. 12: 1610.
https://doi.org/10.3390/brainsci12121610
APA Style
Wang, Y., Wang, P., Liu, C., Chen, W., Wang, P., & Jiang, L.
(2022). Hydrogen-Rich Saline Attenuates Chronic Allodynia after Bone Fractures via Reducing Spinal CXCL1/CXCR2-Mediated Iron Accumulation in Mice. Brain Sciences, 12(12), 1610.
https://doi.org/10.3390/brainsci12121610