Iron oxide nanoparticles and magnetic field exposure promote functional recovery by attenuating free radical-induced damage in rats with spinal cord transection
Ajay Pal,1 Anand Singh,2 Tapas C Nag,3 Parthaprasad Chattopadhyay,2 Rashmi Mathur,1 Suman Jain1 1Department of Physiology, 2Department of Biochemistry, 3Department of Anatomy, All India Institute of Medical Sciences, New Delhi, India Background: Iron oxide nanoparticles (IONPs) can attenuate oxidati...
Guardado en:
Autores principales: | Pal A, Singh A, Nag TC, Chattopadhyay P, Mathur R, Jain S |
---|---|
Formato: | article |
Lenguaje: | EN |
Publicado: |
Dove Medical Press
2013
|
Materias: | |
Acceso en línea: | https://doaj.org/article/d0ef489c7434467db8e2768cf542153d |
Etiquetas: |
Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
|
Ejemplares similares
-
Electromagnetic Field Stimulation Attenuates Phasic Nociception after Complete Spinal Cord Injury in Rats
por: Suneel Kumar, et al.
Publicado: (2021) -
Aortic Impingement in Displaced Traumatic Spine Fracture with Complete Spinal Cord Transection: A Case Report
por: Asma Anan Mohammed, et al.
Publicado: (2021) -
Lithium promotes recovery after spinal cord injury
por: Ying-Jie Zhao, et al.
Publicado: (2022) -
Brain-controlled modulation of spinal circuits improves recovery from spinal cord injury
por: Marco Bonizzato, et al.
Publicado: (2018) -
Anxiolytics may promote locomotor function recovery in spinal cord injury patients
por: Pierre A Guertin
Publicado: (2008)