Michael Cahill, PhD
Affiliations: | Mount Sinai School of Medicine | Icahn School of Medicine at Mount Sinai, New York, NY, United States |
Area:
NeuroscienceGoogle:
"Michael Cahill"Mean distance: 16.06 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorPeter Penzes | grad student | 2011 | Northwestern | |
(The Role of Kalirin in Dendritic Pathology.) |
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Publications
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Bjornson KJ, Cahill ME. (2024) Assessing protein distribution and dendritic spine morphology relationships using structured illumination microscopy in cultured neurons. Star Protocols. 5: 102829 |
Bjornson KJ, Vanderplow AM, Yang Y, et al. (2023) Stress-mediated dysregulation of the Rap1 small GTPase impairs hippocampal structure and function. Iscience. 26: 107566 |
Bjornson KJ, Vanderplow AM, Yang Y, et al. (2023) Aberrant regulation of the Rap1 small GTPase in response to escalating, intermittent stress produces hippocampal synaptic and cognitive dysfunction. Biorxiv : the Preprint Server For Biology |
Vanderplow AM, Eagle AL, Kermath BA, et al. (2021) Akt-mTOR hypoactivity in bipolar disorder gives rise to cognitive impairments associated with altered neuronal structure and function. Neuron |
Kermath BA, Vanderplow AM, Cahill ME. (2019) Dysregulated Prefrontal Cortical RhoA Signal Transduction in Bipolar Disorder with Psychosis: New Implications for Disease Pathophysiology. Cerebral Cortex (New York, N.Y. : 1991) |
Xie Z, Shapiro LP, Cahill ME, et al. (2018) Kalirin-7 prevents dendritic spine dysgenesis induced by amyloid beta-derived oligomers. The European Journal of Neuroscience |
Cahill ME, Bagot RC, Gancarz AM, et al. (2016) Bidirectional Synaptic Structural Plasticity after Chronic Cocaine Administration Occurs through Rap1 Small GTPase Signaling. Neuron. 89: 566-82 |
Russell TA, Blizinsky KD, Cobia DJ, et al. (2014) A sequence variant in human KALRN impairs protein function and coincides with reduced cortical thickness. Nature Communications. 5: 4858 |
Wang X, Cahill ME, Werner CT, et al. (2013) Kalirin-7 mediates cocaine-induced AMPA receptor and spine plasticity, enabling incentive sensitization. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 11012-22 |
Cahill ME, Remmers C, Jones KA, et al. (2013) Neuregulin1 signaling promotes dendritic spine growth through kalirin. Journal of Neurochemistry. 126: 625-35 |