Linda J. Richards

Affiliations: 
University of Queensland, Saint Lucia, Queensland, Australia 
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"Linda Richards"
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Publications

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Wu D, Richards LJ, Zhao Z, et al. (2022) A diffusion MRI-based spatiotemporal continuum of the embryonic mouse brain for probing gene-neuroanatomy connections. Proceedings of the National Academy of Sciences of the United States of America. 119
Morcom L, Gobius I, Marsh AP, et al. (2021) DCC regulates astroglial development essential for telencephalic morphogenesis and corpus callosum formation. Elife. 10
Edwards TJ, Fenlon LR, Dean RJ, et al. (2020) Altered structural connectivity networks in a mouse model of complete and partial dysgenesis of the corpus callosum. Neuroimage. 116868
Szczupak D, Liu C, Yen CCC, et al. (2020) Long Long-distance aberrant heterotopic connectivity in a mouse strain with a high incidence of callosal anomalies. Neuroimage. 116875
Paolino A, Fenlon LR, Kozulin P, et al. (2020) Differential timing of a conserved transcriptional network underlies divergent cortical projection routes across mammalian brain evolution. Proceedings of the National Academy of Sciences of the United States of America
Adams A, Albin S, Amunts K, et al. (2020) Erratum: International Brain Initiative: An Innovative Framework for Coordinated Global Brain Research Efforts (Neuron (2020) 105(2) (212–216), (S0896627320300027), (10.1016/j.neuron.2020.01.002)) Neuron. 105
Lennox AL, Hoye ML, Jiang R, et al. (2020) Pathogenic DDX3X Mutations Impair RNA Metabolism and Neurogenesis during Fetal Cortical Development. Neuron
Chen KS, Bridges CR, Lynton Z, et al. (2019) Transcription factors NFIA and NFIB induce cellular differentiation in high-grade astrocytoma. Journal of Neuro-Oncology
Zenker M, Bunt J, Schanze I, et al. (2019) Variants in nuclear factor I genes influence growth and development. American Journal of Medical Genetics. Part C, Seminars in Medical Genetics
Pajtler KW, Wei Y, Okonechnikov K, et al. (2019) YAP1 subgroup supratentorial ependymoma requires TEAD and nuclear factor I-mediated transcriptional programmes for tumorigenesis. Nature Communications. 10: 3914
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