Lesion‐induced sprouting of hippocampal mossy fiber collaterals to the fascia dentata in developing and adult rats
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Summary
A lesion‐induced formation of an abnormal projection of hippo‐ campal mossy fiber collaterals to the molecular layer of the fascia dentata was studied in rats.
- Type
- article
- Published
- 1981-08-10
- Cited by
- 228
- References
- 54
- OpenAlex
- https://openalex.org/W2093783490
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24362034
Keywords
Fascia dentata, Perforant path, Hippocampal formation, Biology, Sprouting
References
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- Changes in the Timm sulfide silver staining pattern of the rat hippocampus and fascia dentata following early postnatal deafferentation.
- The distribution of septal projections to the hippocampus of the rat
- Proximity as a factor in the regulation of aberrant axonal growth in postnatally deafferented fascia dentata.
- Ipsilateral afferents to the commissural zone of the fascia dentata, demonstrated in decommissurated rats by silver impregnation
- Growing central axons deprived of normal target neurones by neonatal X-ray irradiation still terminate in a precisely laminated fashion
- Associational and commissural collaterals of neurons in the hippocampal formation (hilus fasciae dentatae and subfield CA3).
- Lesion‐induced rerouting of hippocampal mossy fibers in developing but not in adult rats
- Special axo‐dendritic synapses in the hippocampal cortex: Electron and light microscopic studies on the layer of mossy fibers
- Organization of the mossy fiber system of the rat studied in extended hippocampi. II. Experimental analysis of fiber distribution with silver impregnation methods
- An electron microscopic study of lesion-induced synaptogenesis in the dentate gyrus of the adult rat. I. Magnitude and time course of degeneration.
- Extended commissural and ipsilateral projections in postnatally deentorhinated hippocampus and fascia dentata demonstrated in rats by silver impregnation.
- Distribution of hippocampal mossy fibers in the rat. An experimental study with silver impregnation methods
Cited by
- Synaptic reorganization by mossy fibers in human epileptic fascia dentata.
- Kainate binding sites in the hippocampal mossy fibers: localization and plasticity.
- Synaptic organization of intracellularly stained CA3 pyramidal neurons in slice cultures of rat hippocampus.
- Hippocampal mossy fiber sprouting is not impaired in brain-derived neurotrophic factor-deficient mice
- Synaptic connections from multiple subfields contribute to granule cell hyperexcitability in hippocampal slice cultures.
- The dentate mossy fibers: structural organization, development and plasticity.
- Molecular markers of reactive plasticity.
- Synaptic Contacts of Neurons of Fascia Dentata Transplants with Nonspecific Targets in Neocortex of Recipients
- HIPPOCAMPAL ASSOCIATIONAL AND COMMISSURAL PATHWAYS; ANATOMICAL AND ELECTROPHYSIOLOGICAL STUDIES IN THE RAT
- Histochemistry of zinc and copper.
- Xenografting of fetal mouse hippocampal tissue to the brain of adult rats: effects of Cyclosporin A treatment
- Transneuronal changes in the lesioned entorhinal—hippocampal system
- Evidence of functional mossy fiber sprouting in hippocampal formation of kainic acid-treated rats
- Mossy fiber synaptic reorganization induced by kindling: time course of development, progression, and permanence
- Cellular and molecular correlates to plasticity during recovery from injury in the developing mammalian brain.
- 5-HT2c and NMDA receptors, IP3, cGMP and cAMP functional regulation in pilocarpine induced temporal lobe epilepsy in rats: neuroprotective role of Bacopa Monnieri
- Dentate Gyrus Basket Cell GABAA Receptors Are Blocked by Zn2+ via Changes of Their Desensitization Kinetics: AnIn Situ Patch-Clamp and Single-Cell PCR Study
- Physiological and Structural Evidence for Hippocampal Involvement in Persistent Seizure Susceptibility after Traumatic Brain Injury
- Altered patterns of dynorphin immunoreactivity suggest mossy fiber reorganization in human hippocampal epilepsy
- Alteration of long-lasting structural and functional effects of kainic acid in the hippocampus by brief treatment with phenobarbital
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