Valeria Cavalli

Affiliations: 
Washington University, Saint Louis, St. Louis, MO 
Area:
nerve regeneration
Google:
"Valeria Cavalli"
Mean distance: 14.96 (cluster 11)
 
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Publications

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Deng PY, Kumar A, Cavalli V, et al. (2024) Circuit-based intervention corrects excessive dentate gyrus output in the fragile X mouse model. Elife. 12
Deng PY, Kumar A, Cavalli V, et al. (2023) Circuit-based intervention corrects excessive dentate gyrus output in the Fragile X mouse model. Biorxiv : the Preprint Server For Biology
Feng R, Muraleedharan Saraswathy V, Mokalled MH, et al. (2023) Self-renewing macrophages in dorsal root ganglia contribute to promote nerve regeneration. Proceedings of the National Academy of Sciences of the United States of America. 120: e2215906120
Avraham O, Le J, Leahy K, et al. (2022) Analysis of neuronal injury transcriptional response identifies CTCF and YY1 as co-operating factors regulating axon regeneration. Frontiers in Molecular Neuroscience. 15: 967472
Deng PY, Kumar A, Cavalli V, et al. (2022) FMRP regulates GABA receptor channel activity to control signal integration in hippocampal granule cells. Cell Reports. 39: 110820
Avraham O, Chamessian A, Feng R, et al. (2022) Profiling the molecular signature of satellite glial cells at the single cell level reveals high similarities between rodents and humans. Pain
Lee B, Oh Y, Cho E, et al. (2022) FK506-binding protein-like and FK506-binding protein 8 regulate dual leucine zipper kinase degradation and neuronal responses to axon injury. The Journal of Biological Chemistry. 101647
Avraham O, Deng PY, Maschi D, et al. (2022) Disrupted Association of Sensory Neurons With Enveloping Satellite Glial Cells in Fragile X Mouse Model. Frontiers in Molecular Neuroscience. 14: 796070
Deng PY, Avraham O, Cavalli V, et al. (2021) Hyperexcitability of Sensory Neurons in Fragile X Mouse Model. Frontiers in Molecular Neuroscience. 14: 796053
Avraham O, Feng R, Ewan EE, et al. (2021) Profiling sensory neuron microenvironment after peripheral and central axon injury reveals key pathways for neural repair. Elife. 10
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