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Titlebook: Use of Nanoparticles in Neuroscience; Fidel Santamaria,Xomalin G. Peralta Book 2018 Springer Science+Business Media LLC 2018 photo-stimula

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Genetically Encoded Nanoparticles for Neural Modulation,e channels and genetically encoded ferritin to generate intracellular nanoparticles, it is possible to activate or inhibit genetically targeted neurons using radiofrequency (RF) or magnetic fields. This technology provides an additional technique for rapid neural regulation in freely moving organisms.
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Comparative Analysis of Neurotoxic Potential of Synthesized, Native, and Physiological Nanoparticleparative analysis of the neuromodulatory effects of synthesized detonation nanodiamonds, carbon dots, nanoparticles from native volcanic ash, and physiological ferritin-based nanoparticles using similar methodological approaches.
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Using the Whole Cell Patch Clamp Technique to Study the Effect of Nanoparticles in Hippocampal Neurischarge and neuronal evoked action potentials, recording of sodium current and potassium current, and recording of glutamatergic synaptic transmission as an example. Our goal is to provide readers with guidelines on how to take the advantage of patch-clamp in the study of nanoparticles in neuroscience.
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