Karen J. Liu, Ph.D.

Affiliations: 
University of California, Berkeley, Berkeley, CA, United States 
Area:
neural development
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"Karen Liu"
Mean distance: 20.36 (cluster 11)
 

Parents

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Richard Harland grad student 2003 UC Berkeley
 (Novel molecular regulators of neural development.)
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Publications

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Lodge EJ, Barrell WB, Liu KJ, et al. (2023) The Fuzzy planar cell polarity protein (FUZ), necessary for primary cilium formation, is essential for pituitary development. Journal of Anatomy
Khokha MK, Liu KJ, Wallingford JB. (2020) Challenges and opportunities at the interface of birth defects, human genetics and developmental biology. Development (Cambridge, England). 147
Okuchi Y, Reeves J, Ng SS, et al. (2020) Wnt-modified materials mediate asymmetric stem cell division to direct human osteogenic tissue formation for bone repair. Nature Materials
Alharatani R, Ververi A, Beleza-Meireles A, et al. (2020) Novel truncating mutations in CTNND1 cause a dominant craniofacial and cardiac syndrome. Human Molecular Genetics
Okuhara S, Birjandi AA, Adel Al-Lami H, et al. (2019) Temporospatial sonic hedgehog signalling is essential for neural crest-dependent patterning of the intrinsic tongue musculature. Development (Cambridge, England). 146
Gonzalez Malagon SG, Dobson L, Muñoz AML, et al. (2019) Dissection, Culture and Analysis of Primary Cranial Neural Crest Cells from Mouse for the Study of Neural Crest Cell Delamination and Migration. Journal of Visualized Experiments : Jove
Barrell WB, Griffin JN, Harvey JL, et al. (2019) Induction of Neural Crest Stem Cells From Bardet-Biedl Syndrome Patient Derived hiPSCs. Frontiers in Molecular Neuroscience. 12: 139
Alharatani R, Griffin JN, Liu KJ. (2019) Expression of the guanine nucleotide exchange factor, RAPGEF5, during mouse and human embryogenesis. Gene Expression Patterns : Gep. 119057
Doro D, Liu A, Grigoriadis AE, et al. (2019) The Osteogenic Potential of the Neural Crest Lineage May Contribute to Craniosynostosis. Molecular Syndromology. 10: 48-57
Onesto V, Barrell WB, Okesola M, et al. (2019) A quantitative approach for determining the role of geometrical constraints when shaping mesenchymal condensations. Biomedical Microdevices. 21: 44
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