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Neurotransmitters affecting time perception

Neurotransmitters affecting time perception
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摘要 BACKGROUND: It has been demonstrated that dopamine and acetylcholine are the main neurotransmitters that affect time perception, which is also affected by other neurotransmitters. OBJECTIVE: To summarize how the neurotransmitter affect the time perception, and put forward the perspectives for further study on time perception. RETRIEVE STRATEGY: An online search for related literatures published in English was conducted in Elsevier SDOL (ScienceDirect Online) database from May 1990 to March 2007 using key words of "timing neurotransmitter". Totally 69 literatures were collected, and they were primarily checked. Inclusive criteria: Reviews and experimental studies; correlative studies of timing neurotransmitter. Exclusive criteria: Repeated studies. LITERATURE EVALUATION: The literatures were mainly sourced from Cognitive Brain Research and Neuroscience, and they were analyzed according to the inclusive criteria. Nineteen of them were involved, and all were experimental studies and reviews. DATA SYNTHESIS: The studies on time perception are developed mainly concentrating on dopamine and acetylcholine. Dopamine D2 receptors mainly affect the speed of internal clock. Dopamine receptors play an important role in both timing excitation and inhibition, which suggests the bi-directional regulation of dopamine. Injection of dopamine agonist can affect the attention to timing information. Injection of BW813U (antagonist of acetylcholine) can induce memory disorder, which indicates the effect of acetylcholine on timing memory, and further study shows that it is the effect of acetylcholine in precentral medial area. In a word, the study on the neurotransmitters affecting time perception is still at the primary stage. CONCLUSION: Dopamine and acetylcholine are the neurotransmitters known to be related to time perception. Dopamine in the basal ganglia is related to internal-clock in the range of seconds and minutes; Acetylcholine in prefrontal cortex is related to the mechanisms of temporal memory and attention. Studies of neurotransmitter provide an approach to acknowledge on the neuromechanism of time perception. BACKGROUND: It has been demonstrated that dopamine and acetylcholine are the main neurotransmitters that affect time perception, which is also affected by other neurotransmitters. OBJECTIVE: To summarize how the neurotransmitter affect the time perception, and put forward the perspectives for further study on time perception. RETRIEVE STRATEGY: An online search for related literatures published in English was conducted in Elsevier SDOL (ScienceDirect Online) database from May 1990 to March 2007 using key words of "timing neurotransmitter". Totally 69 literatures were collected, and they were primarily checked. Inclusive criteria: Reviews and experimental studies; correlative studies of timing neurotransmitter. Exclusive criteria: Repeated studies. LITERATURE EVALUATION: The literatures were mainly sourced from Cognitive Brain Research and Neuroscience, and they were analyzed according to the inclusive criteria. Nineteen of them were involved, and all were experimental studies and reviews. DATA SYNTHESIS: The studies on time perception are developed mainly concentrating on dopamine and acetylcholine. Dopamine D2 receptors mainly affect the speed of internal clock. Dopamine receptors play an important role in both timing excitation and inhibition, which suggests the bi-directional regulation of dopamine. Injection of dopamine agonist can affect the attention to timing information. Injection of BW813U (antagonist of acetylcholine) can induce memory disorder, which indicates the effect of acetylcholine on timing memory, and further study shows that it is the effect of acetylcholine in precentral medial area. In a word, the study on the neurotransmitters affecting time perception is still at the primary stage. CONCLUSION: Dopamine and acetylcholine are the neurotransmitters known to be related to time perception. Dopamine in the basal ganglia is related to internal-clock in the range of seconds and minutes; Acetylcholine in prefrontal cortex is related to the mechanisms of temporal memory and attention. Studies of neurotransmitter provide an approach to acknowledge on the neuromechanism of time perception.
机构地区 School of Psychology
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2007年第12期740-743,共4页 中国神经再生研究(英文版)
关键词 time perception DOPAMINE ACETYLCHOLINE time perception dopamine acetylcholine
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参考文献19

  • 1[1]Fraisse P.Perception and estimation of time.Annu Rev Psychol 1984;35:1-36
  • 2[2]Allan LG.The influence of the scalar timing model on human timing research.Behav Process 1998:44:101-17
  • 3[3]Meck WH.Neuropharmacology of timing and time perception.Brain Res Cogn Brain Res 1996;3(3-4):227-42
  • 4[4]Meck WH.Frontal cortex lesions eliminate the clock speed effect of dopaminergic drugs on interval timing.Brain Res 2006;1108(1):157-67
  • 5[5]Robertson GS,Vincent SR,Fibiger HC.D1 and D2 dopamine receptor differentially regulate c-fos expression in striatonigral and striatopallidal neurons.Neuroscience 1992;49(2):285-96
  • 6[6]Dragunow M,Robertson GS,Faull RL,et al.D2 dopamine receptor antagonists induce Fos and related proteins in rat striatal neurons.Neuroscience 1990:37(2):287-94
  • 7[7]Umemiya M,Raymond LA,Dopaminergic modulation of excitatory postsynaptic currents in rat neostriatal neurons.J Neurophysiol 1997;78(3):1248-55
  • 8[8]Hsu KS,Huang CC,Yang CH,et al.Presynaptic D2 dopaminergic receptors mediate inhibition of excitatory synaptic transmission in rat neostriatum.Brain Res 1995;690(2):264-8
  • 9[9]Juranyi Z,Zigmond MJ,Harsing LG Jr.[3H]Dopamine release in striatum in response to cortical stimulation in a corticostriatal slice preparation.J Neurosci Methods 2003;126(1):57-67
  • 10[10]Gerfen CR,Keefe KA,Gauda EB.D1 and D2 dopamine receptor function in the striatum:coactivation of D1-and D2-dopamine receptors on separate populations of neurons results in potentiated immediate early gene response in D1-containing neurons.J Neurosci 1995;15(12):8167-76

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