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902 results on '"Striatal dopamine"'

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1. Dietary supplementation with 1‐kestose induces altered locomotor activity and increased striatal dopamine levels with a change in gut microbiota in male mice.

2. Dietary supplementation with 1‐kestose induces altered locomotor activity and increased striatal dopamine levels with a change in gut microbiota in male mice

3. Obstructive Sleep Apnea and Striatal Dopamine Availability in Parkinson's Disease.

5. Altered striatal dopamine levels in Parkinson’s disease VPS35 D620N mutant transgenic aged mice

6. Detailed visual assessment of striatal dopaminergic depletion in patients with idiopathic normal pressure hydrocephalus: unremarkable or not?

7. Neuroprotective and Neurorestorative Effects of Holothuria scabra Extract in the MPTP/MPP+-Induced Mouse and Cellular Models of Parkinson’s Disease

8. Striatal Dopamine Deficit and Motor Impairment in Idiopathic Normal Pressure Hydrocephalus.

9. Neuroprotective and Neurorestorative Effects of Holothuria scabra Extract in the MPTP/MPP+-Induced Mouse and Cellular Models of Parkinson's Disease.

10. Detailed visual assessment of striatal dopaminergic depletion in patients with idiopathic normal pressure hydrocephalus: unremarkable or not?

11. The possible role of cerium oxide (CeO2) nanoparticles in prevention of neurobehavioral and neurochemical changes in 6-hydroxydopamine-induced parkinsonian disease

12. Effect of striatal dopamine on Pavlovian bias. A large [¹⁸F]-DOPA PET study

13. Separate gut-brain circuits for fat and sugar reinforcement combine to promote overeating.

15. Cortical dopamine reduces the impact of motivational biases governing automated behaviour

16. Clinical correlation but no elevation of striatal dopamine synthesis capacity in two independent cohorts of medication-free individuals with schizophrenia

17. A Monoiodotyrosine Challenge Test in a Parkinson’s Disease Model

19. The Relationships between Dopaminergic, Glutamatergic, and Cognitive Functioning in 22q11.2 Deletion Syndrome: A Cross-Sectional, Multimodal 1H-MRS and 18F-Fallypride PET Study

22. The possible role of cerium oxide (CeO2) nanoparticles in prevention of neurobehavioral and neurochemical changes in 6-hydroxydopamine-induced parkinsonian disease.

23. Dopamine and the interdependency of time perception and reward

26. Striatal dopamine dissociates methylphenidate effects on value-based versus surprise-based reversal learning

27. Interactions between hippocampal activity and striatal dopamine in people at clinical high risk for psychosis: relationship to adverse outcomes

32. Cerium oxide nanoparticles could ameliorate behavioral and neurochemical impairments in 6-hydroxydopamine induced Parkinson's disease in rats.

34. Striatal Dopamine Deficit and Motor Impairment in Idiopathic Normal Pressure Hydrocephalus

35. Spatial Normalization Using Early-Phase [18F]FP-CIT PET for Quantification of Striatal Dopamine Transporter Binding

36. Pearls and Pitfalls of Quantitative Software Analysis of Dopamine Transporter SPECT

37. Striatal Dopamine Responses to Feeding are Altered in People with Obesity

38. Heterogeneity in striatal dopamine circuits: Form and function in dynamic reward seeking

39. Effects of average reward rate on vigor as a function of individual variation in striatal dopamine

46. A Spectrum of Time Horizons for Dopamine Signals

47. Striatal dopamine transporter availability is not associated with food craving in lean and obese humans; a molecular imaging study

48. Dopamine Circuit Mechanisms of Addiction-Like Behaviors

49. Characterization of striatal dopamine projections across striatal subregions in behavioral flexibility

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