Anastasia Kiyonaga • UCSD Profiles (original) (raw)

  1. Windows to the goal: Pupillary working memory signatures prospectively adapt to task demands. bioRxiv. 2025 Dec 10. Dong Y, Hung YC, Xie C, Kiyonaga A. PMID: 41427276; PMCID: PMC12712902.
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  2. Sensory reformatting for a working visual memory. Trends Cogn Sci. 2025 Dec; 29(12):1120-1135. Kiyonaga A, Serences JT. PMID: 41067992; PMCID: PMC12782179.
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    Translation:HumansAnimals
  3. Beyond Routine Maintenance: Current Trends in Working Memory Research. J Cogn Neurosci. 2025 Jun 01; 37(6):1035-1052. Adam KCS, Klatt LI, Miller JA, Rösner M, Fukuda K, Kiyonaga A. PMID: 39792640.
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    Translation:HumansAnimals
  4. Lateral prefrontal cortex controls interplay between working memory and actions. bioRxiv. 2024 Sep 18. Kiyonaga A, Miller JA, D'Esposito M. PMID: 39345454; PMCID: PMC11429898.
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  5. Connecting past and present. Elife. 2024 Aug 13; 13. Yang S, Kiyonaga A. PMID: 39136204; PMCID: PMC11321760.
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    Translation:HumansAnimals
  6. Ocular working memory signals are flexible to behavioral priority and subjective imagery strength. J Neurophysiol. 2024 07 01; 132(1):162-176. Dong Y, Kiyonaga A. PMID: 38836298; PMCID: PMC11383386.
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    Translation:Humans
  7. Structured memory representations develop at multiple time scales in hippocampal-cortical networks. bioRxiv. 2023 Apr 07. Tambini A, Miller J, Ehlert L, Kiyonaga A, D'Esposito M. PMID: 37066263; PMCID: PMC10104124.
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  8. Long-term learning transforms prefrontal cortex representations during working memory. Neuron. 2022 11 16; 110(22):3805-3819.e6. Miller JA, Tambini A, Kiyonaga A, D'Esposito M. PMID: 36240768; PMCID: PMC9768795.
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    Translation:HumansAnimals
  9. Hemisphere-specific Parietal Contributions to the Interplay between Working Memory and Attention. J Cogn Neurosci. 2021 07 01; 33(8):1428-1441. Kiyonaga A, Powers JP, Chiu YC, Egner T. PMID: 34496381; PMCID: PMC9422895.
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    Translation:Humans
  10. Prioritized verbal working memory content biases ongoing action. J Exp Psychol Hum Percept Perform. 2020 10 22; 46(12):1443-1457. Miller JA, Kiyonaga A, Ivry RB, D'Esposito M. PMID: 33090834; PMCID: PMC8808692.
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  11. Practical Considerations for Navigating Registered Reports. Trends Neurosci. 2019 09; 42(9):568-572. Kiyonaga A, Scimeca JM. PMID: 31470913; PMCID: PMC9380892.
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    Translation:HumansAnimals
  12. We Need a Taxonomy of Working Memory. J Cogn. 2019 Aug 08; 2(1):35. Kiyonaga A. PMID: 31517245; PMCID: PMC6688547.
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  13. Reaffirming the Sensory Recruitment Account of Working Memory. Trends Cogn Sci. 2018 03; 22(3):190-192. Scimeca JM, Kiyonaga A, D'Esposito M. PMID: 29475635.
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  14. Neural Representation of Working Memory Content Is Modulated by Visual Attentional Demand. J Cogn Neurosci. 2017 Dec; 29(12):2011-2024. Kiyonaga A, Dowd EW, Egner T. PMID: 28777056; PMCID: PMC6138828.
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    Translation:Humans
  15. Serial Dependence across Perception, Attention, and Memory. Trends Cogn Sci. 2017 07; 21(7):493-497. Kiyonaga A, Scimeca JM, Bliss DP, Whitney D. PMID: 28549826; PMCID: PMC5516910.
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    Translation:Humans
  16. Reduced Risk-Taking following Disruption of the Intraparietal Sulcus. Front Neurosci. 2016; 10:588. Coutlee CG, Kiyonaga A, Korb FM, Huettel SA, Egner T. PMID: 28066171; PMCID: PMC5179562.
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  17. Center-Surround Inhibition in Working Memory. Curr Biol. 2016 Jan 11; 26(1):64-8. Kiyonaga A, Egner T. PMID: 26711496; PMCID: PMC4713284.
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    Translation:Humans
  18. Attentional guidance by working memory differs by paradigm: an individual-differences approach. Atten Percept Psychophys. 2015 Apr; 77(3):704-12. Dowd EW, Kiyonaga A, Egner T, Mitroff SR. PMID: 25737257.
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    Translation:Humans
  19. Resource-sharing between internal maintenance and external selection modulates attentional capture by working memory content. Front Hum Neurosci. 2014; 8:670. Kiyonaga A, Egner T. PMID: 25221499; PMCID: PMC4145435.
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  20. The working memory stroop effect: when internal representations clash with external stimuli. Psychol Sci. 2014 Aug; 25(8):1619-29. Kiyonaga A, Egner T. PMID: 24958685; PMCID: PMC4275427.
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    Translation:Humans
  21. Dissociable causal roles for left and right parietal cortex in controlling attentional biases from the contents of working memory. Neuroimage. 2014 Oct 15; 100:200-5. Kiyonaga A, Korb FM, Lucas J, Soto D, Egner T. PMID: 24945665; PMCID: PMC4209476.
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    Translation:Humans
  22. Working memory as internal attention: toward an integrative account of internal and external selection processes. Psychon Bull Rev. 2013 Apr; 20(2):228-42. Kiyonaga A, Egner T. PMID: 23233157; PMCID: PMC3594067.
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    Translation:Humans
  23. A parieto-medial temporal pathway for the strategic control over working memory biases in human visual attention. J Neurosci. 2012 Dec 05; 32(49):17563-71. Soto D, Greene CM, Kiyonaga A, Rosenthal CR, Egner T. PMID: 23223280; PMCID: PMC6621679.
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    Translation:Humans
  24. Cognitive control over working memory biases of selection. Psychon Bull Rev. 2012 Aug; 19(4):639-46. Kiyonaga A, Egner T, Soto D. PMID: 22528872; PMCID: PMC3394896.
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    Translation:Humans
  25. The influence of concentrative meditation training on the development of attention networks during early adolescence. Front Psychol. 2011; 2:153. Baijal S, Jha AP, Kiyonaga A, Singh R, Srinivasan N. PMID: 21808627; PMCID: PMC3137946.
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  26. Working-memory-triggered dynamic adjustments in cognitive control. J Exp Psychol Learn Mem Cogn. 2010 Jul; 36(4):1036-42. Jha AP, Kiyonaga A. PMID: 20565219.
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    Translation:Humans
  27. Examining the protective effects of mindfulness training on working memory capacity and affective experience. Emotion. 2010 Feb; 10(1):54-64. Jha AP, Stanley EA, Kiyonaga A, Wong L, Gelfand L. PMID: 20141302.
    View in: PubMed Mentions: 184 Fields:
    Translation:HumansCTClinical Trials

This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.

This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.

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