• Aucun résultat trouvé

Physical chitosan microhydrogels as scaffolds for spinal cord injury restoration and axon regeneration

N/A
N/A
Protected

Academic year: 2021

Partager "Physical chitosan microhydrogels as scaffolds for spinal cord injury restoration and axon regeneration"

Copied!
50
0
0

Texte intégral

Références

Documents relatifs

Curdlan is insoluble in water and in most organic solvents, though it is soluble in  dilute  alkali  (0.25  M  NaOH)  and  dimethyl  sulfoxide.  Formic  acid 

Après une lésion de la moelle épinière, l’excitotoxicité qui résulte d’une activation massive des récepteurs glutamater- giques, augmente la concentration intracellulaire des

Caldwell, 1995). To implement LTPA as an intervention to promote psychological well-being in the SCI population, it is necessary to explore this area more thoroughly. Thus, the

Transplantation of bone marrow stromal cell-derived Schwann cells promotes axonal regeneration and functional recovery after complete transection of adult rat spinal cord.

ing minor exposure to hydrogen sulfide: implications for forensic analysis of poisoning.. (2004) Fatal hydro- gen sulfide poisoning at a

Consequently, for the case of impregnation of HT scaffolds using different protocols (Table 1), the weight of chitosan gained during scaffold impregnation was expected to

That is, the linear temporal relationship [24,35] and the velocity coupling [36] between these joints are preserved, but at the cost of other reorganizational changes. The main

Different granulometry of miscanthus (0.2–0.5 cm and 1–2 cm) and rice husks (1–2 cm) have been used with and without textile to evaluate the effect of reinforcements particle size