17 results on '"Yelhekar, Tushar D"'
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2. A multipleArc(mArc) tagging system to uncover the organizational principles of multiple memories
3. Spatiotemporal Mapping and Molecular Basis of Whole-brain Circuit Maturation
4. Npas4 Is a Critical Regulator of Learning-Induced Plasticity at Mossy Fiber-CA3 Synapses during Contextual Memory Formation
5. Development and validation of an in vitro model system to study peripheral sensory neuron development and injury
6. Npas4 Is a Critical Regulator of Learning-Induced Plasticity at Mossy Fiber-CA3 Synapses during Contextual Memory Formation
7. Npas4 Is a Critical Regulator of Learning-Induced Plasticity at Mossy Fiber-CA3 Synapses during Contextual Memory Formation
8. Contribution of Resting Conductance, GABA(A)-Receptor Mediated Miniature Synaptic Currents and Neurosteroid to Chloride Homeostasis in Central Neurons
9. Contribution of Resting Conductance, GABAA-Receptor Mediated Miniature Synaptic Currents and Neurosteroid to Chloride Homeostasis in Central Neurons
10. How to Properly Measure a Current-Voltage Relation? -Interpolation vs. Ramp Methods Applied to Studies of GABA(A) Receptors
11. Commentary: Chloride Regulation : a Dynamic Equilibrium Crucial for Synaptic Inhibition
12. Commentary: Chloride Regulation: A Dynamic Equilibrium Crucial for Synaptic Inhibition
13. How to Properly Measure a Current-Voltage Relation?—Interpolation vs. Ramp Methods Applied to Studies of GABAA Receptors
14. How to Properly Measure a Current-Voltage Relation?--Interpolation vs. Ramp Methods Applied to Studies of GABAA Receptors.
15. A multiple Arc (mArc) tagging system to uncover the organizational principles of multiple memories.
16. Spatiotemporal Mapping and Molecular Basis of Whole-brain Circuit Maturation.
17. Contribution of Resting Conductance, GABA A -Receptor Mediated Miniature Synaptic Currents and Neurosteroid to Chloride Homeostasis in Central Neurons.
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