Zobrazeno 1 - 10
of 68
pro vyhledávání: '"M, Giménez y Ribotta"'
Publikováno v:
Neuroscience. 95:173-182
Transection of the spinal cord yields a permanent deficit due to the interruption of descending and ascending tracts which subserve the supraspinal control of spinal cord functions. We have shown previously that transplantation below the level of the
Publikováno v:
Experimental Brain Research. 113:443-454
Locomotor movements are programmed in a specialised neuronal network that is localised in the central nervous system and referred to as the central pattern generator (CPG) for locomotion. This CPG can be activated by pharmacological agents such as mo
Autor:
R.N. Cooper, Didier Orsal, Delphine Feraboli-Lohnherr, G. Butler-Browne, M Giménez y Ribotta, A. Privat
Publikováno v:
Journal of Neuroscience Research. 46:324-329
A suspension of monoaminergic embryonic neurons was transplanted into the spinal cord of paraplegic rats. Enzyme histochemical, morphometric, and biochemical analyses of the hindlimb musculature were carried out 2-5 months later to determine the cons
Autor:
A Legrand, N.-U. Rajaofetra, Alain Privat, M Giménez y Ribotta, Gérard Alonso, Françoise Sandillon, M. Mersel, C Morin-Richaud, D. Bochelen
Publikováno v:
Journal of Neuroscience Research. 41:79-95
In the present study, following previous experience with electrolytic lesion of the rat brain, and subsequent reduction of reactive gliosis with 7 beta-hydroxycholesterol derivatives (Bochelen et al.: Neuroscience 51:827-834, 1992), we have performed
Autor:
J M, Luque, M, Giménez y Ribotta
Publikováno v:
Histology and histopathology. 19(1)
A great deal of interest has attracted the attention of researchers on the potential use of (neural) stem cells in cell replacement or restorative therapies for heretofore incurable CNS pathologies such as brain stroke, spinal cord injury, Parkinson'
Publikováno v:
Proceedings of the National Academy of Sciences of the United States of America. 100(15)
The lack of axonal regeneration in the injured adult mammalian spinal cord leads to permanent functional disabilities. The inability of neurons to regenerate their axon is appreciably due to an inhospitable environment made of an astrocytic scar. We
Autor:
D, Orsal, J Y, Barthe, M, Antri, D, Feraboli-Lohnherr, A, Yakovleff, M, Giménez y Ribotta, A, Privat, J, Provencher, S, Rossignol
Publikováno v:
Progress in brain research. 137
Autor:
Janyne Provencher, Myriam Antri, A Yakovleff, D. Orsal, Alain Privat, J.-Y. Barthe, D Feraboli-Lohnherr, Serge Rossignol, M Giménez y Ribotta
Publisher Summary This chapter develops a strategy to supply the sublesional spinal cord with missing supraspinal neurotransmitters by two different approaches to stimulate and improve functional recovery of locomotor activity in spinal rats. The fir
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::c8d012f246085e0be99477b621097ec4
https://doi.org/10.1016/s0079-6123(02)37018-3
https://doi.org/10.1016/s0079-6123(02)37018-3
Publikováno v:
Progress in brain research. 132
Autor:
M, Giménez y Ribotta
Publikováno v:
Histology and histopathology. 16(3)
Treatment of neurodegenerative diseases by classical pharmacotherapy is restricted by blood-brain barrier which prevents access to the brain of potentially therapeutic molecules. Recent progress in the knowledge of pathophysiological molecular proces