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Laura López-Mascaraque

Researcher at Spanish National Research Council

Publications -  81
Citations -  3335

Laura López-Mascaraque is an academic researcher from Spanish National Research Council. The author has contributed to research in topics: Olfactory bulb & Olfactory system. The author has an hindex of 31, co-authored 77 publications receiving 2990 citations. Previous affiliations of Laura López-Mascaraque include Salk Institute for Biological Studies & Washington University in St. Louis.

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Development, morphology and topography of chandeller cells in the auditory cortex of the cat

TL;DR: Using the Golgi method the development, morphology and topographic distribution of chandelier cells in the auditory cortex of the cat are studied and it is suggested that they may have a relation with callosal projecting pyramidal cells.
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Vasoactive intestinal polypeptide-immunoreactive neurons in the main olfactory bulb of the hedgehog (Erinaceus europaeus).

TL;DR: Results revealed that a high number of intrinsic neuronal types of the olfactory bulb of the hedgehog display a strong VIP immunoreactivity.
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The Influence of the Environment on Cajal–Retzius Cell Migration

TL;DR: Evidence is presented that the phenotype of -Retzius cells, as well as some of their migratory characteristics, is specified in the area where the cells are generated, and when implanted ectopically, these cells can follow new migratory routes, indicating that locally provided genetic cues along the migratory path nonautonomously influence the position of these cells emanating from different portions of the CH.
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Clonal Glial Response in a Multiple Sclerosis Mouse Model.

TL;DR: There are no compelling evidences that clonal relationship influences the position or function of astrocytes in the EAE model, and the coexistence of different astroglial clonal responses to the bran injury reveals the significance of development to determine theAstrocyte features that respond to brain injuries.
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Protein synthesis inhibitors delay transneuronal death in the piriform cortex of young adult rats.

TL;DR: Transneuronal death in the piriform (olfactory) cortex is analysed to confirm that the cell death observed was due to apoptosis, and tunel staining demonstrated that the dying cells in the Piriform cortex did indeed undergo apoptosis.