Long-term stress degenerates, but imipramine regenerates, noradrenergic axons in the rat cerebral cortex

scientific article published in October 1997

Long-term stress degenerates, but imipramine regenerates, noradrenergic axons in the rat cerebral cortex is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/S0006-3223(96)00502-1
P698PubMed publication ID9325562

P2093author name stringNakano K
Otani M
Nomura J
Kitayama I
Kayahara T
Murase S
Yaga T
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Efferent projections of nucleus locus coeruleus: topographic organization of cells of origin demonstrated by three-dimensional reconstructionQ39308232
Development of β-adrenergic receptor subsensitivity by antidepressantsQ40093742
Effects of mianserin and fluoxetine on axonal regeneration of brain catecholamine neuronsQ44540090
Quantitation of catecholamine neurons in the locus coeruleus in human brains of normal young and older adults and in depressionQ45359210
Involvement of phospholipase A2 in axonal regeneration of brain noradrenergic neurones.Q48307164
Quantitative cerebral anatomy in depression. A controlled magnetic resonance imaging studyQ48363247
Electrophysiological evidence for axonal degeneration of locus coeruleus neurons following long-term forced running stressQ48727833
Duration-dependent effects of repeated restraint stress on cortical projections of locus coeruleus neuronsQ48878322
Antidepressants induce regeneration of catecholaminergic axon terminals in the rat cerebral cortexQ49052452
Subcortical hyperintensity on magnetic resonance imaging: a comparison of normal and depressed elderly subjectsQ49115787
Electrophysiological evidence for terminal sprouting of locus coeruleus neurons following repeated mild stress.Q51753181
Effects of chronic imipramine treatment on glucocorticoid receptor immunoreactivity in various regions of the rat brainQ60050290
Subcortical abnormalities detected in bipolar affective disorder using magnetic resonance imaging. Clinical and neuropsychological significanceQ68691945
Chronic immobilization stress: evidence for decreases of 5-hydroxy-tryptamine immunoreactivity and for increases of glucocorticoid receptor immunoreactivity in various brain regions of the male ratQ69681024
Degeneration of locus coeruleus axons in stress-induced depression modelQ71674317
P433issue8
P407language of work or nameEnglishQ1860
P304page(s)687-696
P577publication date1997-10-01
P1433published inBiological PsychiatryQ4914961
P1476titleLong-term stress degenerates, but imipramine regenerates, noradrenergic axons in the rat cerebral cortex
P478volume42

Reverse relations

cites work (P2860)
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