Rahul Munshi
Affiliations: | 2012-2018 | Physics | State University of New York, Buffalo, Buffalo, NY, United States |
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Publications
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Castellanos-Rubio I, Rodrigo I, Munshi R, et al. (2019) Outstanding heat loss via nano-octahedra above 20 nm in size: from wustite-rich nanoparticles to magnetite single-crystals. Nanoscale |
Castellanos-Rubio I, Munshi R, Qin Y, et al. (2018) Multilayered inorganic-organic microdisks as ideal carriers for high magnetothermal actuation: assembling ferrimagnetic nanoparticles devoid of dipolar interactions. Nanoscale |
Munshi R, Qadri SM, Pralle A. (2018) Transient Magnetothermal Neuronal Silencing Using the Chloride Channel Anoctamin 1 (TMEM16A). Frontiers in Neuroscience. 12: 560 |
Munshi R, Qadri S, Pralle A. (2018) Magnetothermal Deep Brain Neuromodulation in Awake, Freely Moving Mice Biophysical Journal. 114: 670a |
Munshi R, Qadri SM, Zhang Q, et al. (2017) Magneto-thermal genetic deep brain stimulation of motor behaviors in awake, freely moving mice. Elife. 6 |
Munshi R, Qadri SM, Zhang Q, et al. (2017) Author response: Magnetothermal genetic deep brain stimulation of motor behaviors in awake, freely moving mice Elife |
Munshi R, Parker S, Castellanos-Rubio I, et al. (2017) Bidirectional Magnetothermal Modulation of Neuronal Activity in Behaving Mice Biophysical Journal. 112: 286a |
Zhang Q, Castellanos-Rubio I, Munshi R, et al. (2015) Model Driven Optimization of Magnetic Anisotropy of Exchange-coupled Core-Shell Ferrite Nanoparticles for Maximal Hysteretic Loss. Chemistry of Materials : a Publication of the American Chemical Society. 27: 7380-7387 |
Zhang Q, Castellanos-Rubio I, Munshi R, et al. (2015) Model Driven Optimization of Magnetic Anisotropy of Exchange-Coupled Core-Shell Ferrite Nanoparticles for Maximal Hysteretic Loss Chemistry of Materials. 27: 7380-7387 |
Munshi R, Castellanos-Rubio I, Pralle A. (2015) Local Temperature Evolution during Nanoparticle Hyperthermia Probed by Fluorescence Thermometry Biophysical Journal. 108: 208a |