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Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice

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Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords basal ganglia dopamine receptor globus pallidus presynaptic inhibition Parkinson's disease Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. 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Your Personal Message Print Citation Tools Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice Wei Wei , Li Li , Guoliang Yu , Shengyuan Ding , Chengyao Li , Fu-Ming Zhou Journal of Neurophysiology Nov 2013, 110 (9) 2203-2216; DOI: 10.1152/jn.00161.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice Wei Wei , Li Li , Guoliang Yu , Shengyuan Ding , Chengyao Li , Fu-Ming Zhou Journal of Neurophysiology Nov 2013, 110 (9) 2203-2216; DOI: 10.1152/jn.00161.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Unilateral electrical stimulation of rat locus coeruleus elicits bilateral response of norepinephrine neurons and sustained activation of medial prefrontal cortex Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback Organization of local horizontal functional interactions between neurons in the inferior temporal cortex of macaque monkeys Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice

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Publisher
The American Physiological Society
Copyright
Copyright © 2013 the American Physiological Society
ISSN
0022-3077
eISSN
1522-1598
DOI
10.1152/jn.00161.2013
pmid
23945778
Publisher site
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Abstract

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Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords basal ganglia dopamine receptor globus pallidus presynaptic inhibition Parkinson's disease Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. 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Your Personal Message Print Citation Tools Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice Wei Wei , Li Li , Guoliang Yu , Shengyuan Ding , Chengyao Li , Fu-Ming Zhou Journal of Neurophysiology Nov 2013, 110 (9) 2203-2216; DOI: 10.1152/jn.00161.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice Supersensitive presynaptic dopamine D2 receptor inhibition of the striatopallidal projection in nigrostriatal dopamine-deficient mice Wei Wei , Li Li , Guoliang Yu , Shengyuan Ding , Chengyao Li , Fu-Ming Zhou Journal of Neurophysiology Nov 2013, 110 (9) 2203-2216; DOI: 10.1152/jn.00161.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Unilateral electrical stimulation of rat locus coeruleus elicits bilateral response of norepinephrine neurons and sustained activation of medial prefrontal cortex Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback Organization of local horizontal functional interactions between neurons in the inferior temporal cortex of macaque monkeys Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Published: Nov 1, 2013

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