Kiss Bimbova, K.; Bacova, M.; Kisucka, A.; Gálik, J.; Ileninova, M.; Kuruc, T.; Magurova, M.; Lukacova, N.
Impact of Endurance Training on Regeneration of Axons, Glial Cells, and Inhibitory Neurons after Spinal Cord Injury: A Link between Functional Outcome and Regeneration Potential within the Lesion Site and in Adjacent Spinal Cord Tissue. Int. J. Mol. Sci. 2023, 24, 8616.
https://doi.org/10.3390/ijms24108616
AMA Style
Kiss Bimbova K, Bacova M, Kisucka A, Gálik J, Ileninova M, Kuruc T, Magurova M, Lukacova N.
Impact of Endurance Training on Regeneration of Axons, Glial Cells, and Inhibitory Neurons after Spinal Cord Injury: A Link between Functional Outcome and Regeneration Potential within the Lesion Site and in Adjacent Spinal Cord Tissue. International Journal of Molecular Sciences. 2023; 24(10):8616.
https://doi.org/10.3390/ijms24108616
Chicago/Turabian Style
Kiss Bimbova, Katarina, Maria Bacova, Alexandra Kisucka, Ján Gálik, Maria Ileninova, Tomas Kuruc, Martina Magurova, and Nadezda Lukacova.
2023. "Impact of Endurance Training on Regeneration of Axons, Glial Cells, and Inhibitory Neurons after Spinal Cord Injury: A Link between Functional Outcome and Regeneration Potential within the Lesion Site and in Adjacent Spinal Cord Tissue" International Journal of Molecular Sciences 24, no. 10: 8616.
https://doi.org/10.3390/ijms24108616
APA Style
Kiss Bimbova, K., Bacova, M., Kisucka, A., Gálik, J., Ileninova, M., Kuruc, T., Magurova, M., & Lukacova, N.
(2023). Impact of Endurance Training on Regeneration of Axons, Glial Cells, and Inhibitory Neurons after Spinal Cord Injury: A Link between Functional Outcome and Regeneration Potential within the Lesion Site and in Adjacent Spinal Cord Tissue. International Journal of Molecular Sciences, 24(10), 8616.
https://doi.org/10.3390/ijms24108616