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    Andrea Chiba

    TitleProfessor
    SchoolUniversity of California, San Diego
    DepartmentCognitive Science
    Address9500 Gilman Drive #0515
    CA La Jolla 92093
    Phone858-822-1817
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      Collapse Research 
      Collapse Research Activities and Funding
      Behavioral, Physiological, and Quantitative Models of Pro-Social Behavior
      NIH/NIMH R01MH110514Aug 1, 2016 - Apr 30, 2019
      Role: Principal Investigator
      REGULATION OF ATTENTION BY AN AMYGDALA/CORTICAL SYSTEM
      NIH/NIMH F32MH010999Mar 23, 1995
      Role: Principal Investigator

      Collapse Bibliographic 
      Collapse Publications
      Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can login to make corrections and additions, or contact us for help.
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      1. Minces V, Pinto L, Dan Y, Chiba A. Cholinergic shaping of neural correlations. Proc Natl Acad Sci U S A. 2017 May 30; 114(22):5725-5730. PMID: 28507133.
        View in: PubMed
      2. Rangel LM, Chiba A, Quinn LK. Theta and beta oscillatory dynamics in the dentate gyrus reveal a shift in network processing state during cue encounters. Front Syst Neurosci. 2015; 9:96. PMID: 26190979.
        View in: PubMed
      3. Tingley D, Alexander AS, Quinn LK, Chiba A, Nitz DA. Cell assemblies of the Basal forebrain. J Neurosci. 2015 Feb 18; 35(7):2992-3000. PMID: 25698736.
        View in: PubMed
      4. Tingley D, Alexander AS, Kolbu S, de Sa VR, Chiba A, Nitz DA. Task-phase-specific dynamics of basal forebrain neuronal ensembles. Front Syst Neurosci. 2014; 8:174. PMID: 25309352.
        View in: PubMed
      5. Rangel LM, Alexander AS, Aimone JB, Wiles J, Gage FH, Chiba A, Quinn LK. Temporally selective contextual encoding in the dentate gyrus of the hippocampus. Nat Commun. 2014 Feb 12; 5:3181. PMID: 24518986.
        View in: PubMed
      6. Oros N, Chiba A, Nitz DA, Krichmar JL. Learning to ignore: a modeling study of a decremental cholinergic pathway and its influence on attention and learning. Learn Mem. 2014 Feb; 21(2):105-18. PMID: 24443744.
        View in: PubMed
      7. Khalil AK, Minces V, McLoughlin G, Chiba A. Group rhythmic synchrony and attention in children. Front Psychol. 2013; 4:564. PMID: 24032021.
        View in: PubMed
      8. Rangel LM, Quinn LK, Chiba A, Gage FH, Aimone JB. A hypothesis for temporal coding of young and mature granule cells. Front Neurosci. 2013; 7:75. PMID: 23717259.
        View in: PubMed
      9. Minces VH, Alexander AS, Datlow M, Alfonso SI, Chiba A. The role of visual cortex acetylcholine in learning to discriminate temporally modulated visual stimuli. Front Behav Neurosci. 2013; 7:16. PMID: 23519084.
        View in: PubMed
      10. Avery MC, Nitz DA, Chiba A, Krichmar JL. Simulation of cholinergic and noradrenergic modulation of behavior in uncertain environments. Front Comput Neurosci. 2012; 6:5. PMID: 22319488.
        View in: PubMed
      11. de Barbaro K, Chiba A, Deák GO. Micro-analysis of infant looking in a naturalistic social setting: insights from biologically based models of attention. Dev Sci. 2011 Sep; 14(5):1150-60. PMID: 21884330.
        View in: PubMed
      12. Quinn LK, Nitz DA, Chiba A. Learning-dependent dynamics of beta-frequency oscillations in the basal forebrain of rats. Eur J Neurosci. 2010 Nov; 32(9):1507-15. PMID: 21039960.
        View in: PubMed
      13. Nagahara AH, Merrill DA, Coppola G, Tsukada S, Schroeder BE, Shaked GM, Wang L, Blesch A, Kim A, Conner JM, Rockenstein E, Chao MV, Koo EH, Geschwind D, Masliah E, Chiba A, Tuszynski MH. Neuroprotective effects of brain-derived neurotrophic factor in rodent and primate models of Alzheimer's disease. Nat Med. 2009 Mar; 15(3):331-7. PMID: 19198615.
        View in: PubMed
      14. Córdova CA, Said BO, McCarley RW, Baxter MG, Chiba A, Strecker RE. Sleep deprivation in rats produces attentional impairments on a 5-choice serial reaction time task. Sleep. 2006 Jan; 29(1):69-76. PMID: 16453983; PMCID: PMC3628810.
      15. Conner JM, Chiba A, Tuszynski MH. The basal forebrain cholinergic system is essential for cortical plasticity and functional recovery following brain injury. Neuron. 2005 Apr 21; 46(2):173-9. PMID: 15848797.
        View in: PubMed
      16. Conner JM, Culberson A, Packowski C, Chiba A, Tuszynski MH. Lesions of the Basal forebrain cholinergic system impair task acquisition and abolish cortical plasticity associated with motor skill learning. Neuron. 2003 Jun 5; 38(5):819-29. PMID: 12797965.
        View in: PubMed
      17. Merrill DA, Karim R, Darraq M, Chiba A, Tuszynski MH. Hippocampal cell genesis does not correlate with spatial learning ability in aged rats. J Comp Neurol. 2003 Apr 28; 459(2):201-7. PMID: 12640670.
        View in: PubMed
      18. Chiba A, Kesner RP, Jackson PA. Two forms of spatial memory: a double dissociation between the parietal cortex and the hippocampus in the rat. Behav Neurosci. 2002 Oct; 116(5):874-83. PMID: 12369807.
        View in: PubMed
      19. Merrill DA, Chiba A, Tuszynski MH. Conservation of neuronal number and size in the entorhinal cortex of behaviorally characterized aged rats. J Comp Neurol. 2001 Oct 1; 438(4):445-56. PMID: 11559900.
        View in: PubMed
      20. Chiba A, Bushnell PJ, Oshiro WM, Gallagher M. Selective removal of cholinergic neurons in the basal forebrain alters cued target detection. Neuroreport. 1999 Sep 29; 10(14):3119-23. PMID: 10549833.
        View in: PubMed
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