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Kayla R. Nygaard
Kayla R. Nygaard
Curriculum Fellow, Harvard University
在 hms.harvard.edu 的电子邮件经过验证
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Activity-dependent translation dynamically alters the proteome of the perisynaptic astrocyte process
D Sapkota, MSJ Kater, K Sakers, KR Nygaard, Y Liu, SK Koester, SB Fass, ...
Cell reports 41 (3), 2022
252022
Erroneous inference based on a lack of preference within one group: Autism, mice, and the social approach task
KR Nygaard, SE Maloney, JD Dougherty
Autism Research 12 (8), 1171-1183, 2019
252019
Functions of Gtf2i and Gtf2ird1 in the developing brain: transcription, DNA binding and long-term behavioral consequences
ND Kopp, KR Nygaard, Y Liu, KB McCullough, SE Maloney, HW Gabel, ...
Human molecular genetics 29 (9), 1498-1519, 2020
192020
Activity dependent translation in astrocytes dynamically alters the proteome of the perisynaptic astrocyte process
D Sapkota, MSJ Kater, K Sakers, KR Nygaard, Y Liu, AM Lake, ...
BioRxiv, 2020.04. 08.033027, 2020
72020
Extensive characterization of a Williams syndrome murine model shows Gtf2ird1‐mediated rescue of select sensorimotor tasks, but no effect on enhanced social …
KR Nygaard, SE Maloney, RG Swift, KB McCullough, RE Wagner, ...
Genes, Brain and Behavior 22 (4), e12853, 2023
62023
Oxytocin receptor activation does not mediate associative fear deficits in a Williams Syndrome model
KR Nygaard, RG Swift, RM Glick, RE Wagner, SE Maloney, GG Gould, ...
Genes, Brain and Behavior 21 (1), e12750, 2022
52022
Extensive Behavioral Phenotyping of Williams Syndrome Locus Relevant Mouse Models to Assess Contributions of Oxytocin and Gtf2ird1
KR Nygaard
Washington University in St. Louis, 2022
2022
Investigating the Role of Oxytocin in Behavioral Phenotypes of a Complete Deletion Mouse Model of Williams Syndrome
KR Nygaard, N Kopp, S Maloney, J Dougherty
ANNALS OF NEUROLOGY 86, S40-S41, 2019
2019
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