Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)


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Motor preparation in a memorised delay task. Experimental Brain Research , Reynolds, J. Journal of Neuroscience 24, Gurney, K. Computational models of the basal ganglia: from membranes to robots. Trends in Neurosciences 27, Brain Research , , McFarlane, J. Dissociation of hypertension and fixed interval responding in two separate strains of genetically hypertensive rat.

Dopamine neuron systems in the brain: an update - Semantic Scholar

Behavioural Brain Research , Neural mechanisms of reward-related motor learning, Current Opinion in Neurobiology 13, [Invited article]. A state-dependent trigger for electrophysiological recording at predetermined membrane potentials. Journal of Neuroscience Methods, 13, McNaughton, N. Hebb, pandemonium and catastrophic hypermnesia: the hippocampus as a suppressor of inappropriate associations.

Cortex , 39, Tunstall, M. Inhibitory interactions between spiny projection neurons in the rat striatum. Journal of Neurophysiology Dopamine-dependent plasticity of corticostriatal synapses. Neural Networks Kerr, J. A cellular mechanism of reward-related learning.


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Nature , Anson, J. Parameter precuing and motor preparation. Motor Control 4, Dopamine and synaptic plasticity in the neostriatum. Journal of Anatomy , Substantia nigra dopamine regulates synaptic plasticity and membrane potential fluctuations in the rat neostriatum, in vivo. Neuroscience 99, Modulation by dopamine of rat corticostriatal input. Advances in Pharmacology 42, Striatal mechanisms in Parkinson's disease: New insights from computer modelling.

Dopamine and Neural Pathways - Physiology and Pharmacology

Artificial Intelligence in Medicine 13, Regulation of action potential firing in spiny neurons of the rat neostriatum in vivo. Journal of Neurophysiology 79, Effects of potassium channel blockers on synaptic plasticity in the corticostriatal pathway. Neuropharmacology 37, Mohagheghi, A. Foreperiod length, but not memory, affects human reaction time in a precued delayed response.

Motor Control 2, Parr-Brownlie, L.

تفاصيل ال٠نتج

Does having to remember the position of a target improve reaction time? A formalisation of the neural assembly concept 1.

Volume 21. Dopamine

Constraints on neural assembly size. Biological Cybernetics 77, Basal ganglia: Structure and computations. Network, Computation in Neural Systems 8, Dopamine reverses the depression of rat cortico-striatal synapses which normally follows high frequency stimulation of cortex in vitro. Neuroscience 70, Effects of local connectivity on striatal function: Simulation and analysis of a model.

Synapse 20, Interactions of glutamate and dopamine in a computational model of the striatum: Relevance to Parkinson's disease. Journal of Computational Neuroscience 2, Cortical cell assemblies: A possible mechanism for motor programs. Journal of Motor Behaviour 26, Corticostriatal interactions in neuromotor programming.

Human Movement Science 12, Progress in Brain Research 99, Alexander, M. Analysis of striatal dynamics: The existence of two modes of behaviour. Journal of Theoretical Biology , Abraham, W. Heterosynaptic long-term depression is facilitated by blockade of inhibition in area CA1 of the hippocampus. Brain Research , The involvement of L-type calcium channels in heterosynaptic long-term depression in the hippocampus. Neuroscience Letters , Miller, R. Corticostriatal cell assemblies in selective attention and in representation of predictable and controllable events. Concepts in Neuroscience 2, Striatal dopamine in motor activation and reward-mediated learning.

School of Biosciences

Steps towards a unifying model. Journal of Neural Transmission 80, Dopamine D-1 and D-2 receptors in relation to reward and performance: a case for the D-1 receptor as a primary site of therapeutic action of neuroleptic drugs. Gating of cortical input to the striatum. In: Steiner, H. ISBN pp Plenz, D. The striatal skeleton: Medium spiny projection neurons and their lateral connections. Neuromodulation and neurodynamics of striatal inhibitory networks: implications for Parkinson's disease.

Dopamine Synthesis by Non-Dopaminergic Neurons as an Effective Mechanism of Neuroplasticity

Editor: Kuei Y. Bolam, J. Bergman, H. Molecules, microcircuits and motivated behaviour: Microcircuits in the striatum; in: S. Grillner and A. Graybiel eds Microcircuits: the interface between neurons and global brain function. Dahlem Workshop Report Hyland, B. Frontostriatal mechanisms in reinforcement: implications for ADHD. Bezard, Nova Science Publishers, Inc.

Nicholson, and R. Nicholson and R. Graybiel, M. DeLong and S. Dopamine regulation of synaptic plasticity in the neostriatum: A cellular model of reinforcement. In: Brain dynamics and the Striatal Complex. Miller and J. Neural dynamics and surround inhibition in the neostriatum: A possible connection.

In: Brain Dynamics and the Striatal Complex.

Basal ganglia control of sequential activity in cerebral cortex: A model. Neurotransmitters Dopamine Hydrochloride. Transmitter Device Component. Citations Publications citing this paper.

Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy) Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)
Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy) Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)
Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy) Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)
Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy) Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)
Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy) Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)
Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy) Dopamine, Volume 21 (Handbook of Chemical Neuroanatomy)

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