The enigmatic mossy cell of the dentate gyrus
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Neuroscience
Link
http://www.nature.com/articles/nrn.2016.87.pdf
Reference152 articles.
1. Jinde, S. et al. Hilar mossy cell degeneration causes transient dentate granule cell hyperexcitability and impaired pattern separation. Neuron 76, 1189–1200 (2012). This study examined the consequence of ablating mossy cells with the most selective approach to date. Although some CA3 pyramidal cells were also affected, the results showed that mossy cells have an important role in the dentate gyrus network.
2. Hsu, T. T., Lee, C. T., Tai, M. H. & Lien, C. C. Differential recruitment of dentate gyrus interneuron types by commissural versus perforant pathways. Cereb. Cortex 26, 2715–2727 (2016). This study used optogenetics in hippocampal slices to show that mossy cells could excite or inhibit granule cells; the authors found that the major effect was inhibition.
3. Amaral, D.G., Scharfman, H. E. & Lavenex, P. The dentate gyrus: fundamental neuroanatomical organization (dentate gyrus for dummies). Prog. Brain Res. 163, 3–22 (2007).
4. Steward, O. & Scoville, S. A. Cells of origin of entorhinal cortical afferents to the hippocampus and fascia dentata of the rat. J. Comp. Neurol. 169, 347–370 (1976).
5. Witter, M. P. The perforant path: projections from the entorhinal cortex to the dentate gyrus. Prog. Brain Res. 163, 43–61 (2007).
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