Use of c-fos to identify activity-dependent spinal neurons after stepping in intact adult rats
Author:
Publisher
Springer Science and Business Media LLC
Subject
Clinical Neurology,Neurology,General Medicine
Link
http://www.nature.com/articles/3101862.pdf
Reference50 articles.
1. Alberini CM, Ghirardi M, Huang YY, Nguyen PV, Kandel ER . A molecular switch for the consolidation of long-term memory: cAMP-inducible gene expression. Ann N Y Acad Sci 1995; 758: 261–286.
2. Chiasson BJ, Hong MG, Robertson HA . Putative roles for the inducible transcription factor c-fos in the central nervous system: studies with antisense oligonucleotides. Neurochem Int 1997; 31: 459–475.
3. Morgan JI, Curran T . Stimulus–transcription coupling in the nervous system: involvement of the inducible proto-oncogenes fos and jun. Annu Rev Neurosci 1991; 14: 421–451.
4. Craner SL, Hoffman GE, Lund JS, Humphrey AL, Lund RD . cFos labeling in rat superior colliculus: activation by normal retinal pathways and pathways from intracranial retinal transplants. Exp Neurol 1992; 117: 219–229.
5. Hannibal J, Vrang N, Card JP, Fahrenkrug J . Light-dependent induction of cFos during subjective day and night in PACAP-containing ganglion cells of the retinohypothalamic tract. J Biol Rhythms 2001; 16: 457–470.
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