Hypothalamus

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Aleksic, S., Fleysher, R., Weiss, E. F., Tal, N., Darby, T., Blumen, H. M., Vazquez, J., Ye, K. Q., Gao, T., Siegel, S. M., Barzilai, N., Lipton, M. L., & Milman, S. (2024). Hypothalamic MRI-derived microstructure is associated with neurocognitive aging in humans. Neurobiology of Aging, 141, 102–112. https://doi.org/10.1016/j.neurobiolaging.2024.05.018
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Pollatou, A., Holland, C. M., Stockton, T. J., Peterson, B. S., Scheinost, D., Monk, C., & Spann, M. N. (2024). Mapping Early Brain–Body Interactions: Associations of Fetal Heart Rate Variation with Newborn Brainstem, Hypothalamic, and Dorsal Anterior Cingulate Cortex Functional Connectivity. The Journal of Neuroscience, 44(22), e2363232024. https://doi.org/10.1523/jneurosci.2363-23.2024
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Zambon, A., Rico, L. C., Herman, M., Gundacker, A., Telalovic, A., Hartenberger, L.-M., Kuehn, R., Romanov, R. A., Hussaini, S. A., Harkany, T., & Pollak, D. D. (2022). Gestational immune activation disrupts hypothalamic neurocircuits of maternal care behavior. Molecular Psychiatry, 29(4), 859–873. https://doi.org/10.1038/s41380-022-01602-x
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Herb, B. R., Glover, H. J., Bhaduri, A., Colantuoni, C., Bale, T. L., Siletti, K., Hodge, R., Lein, E., Kriegstein, A. R., Doege, C. A., & Ament, S. A. (2023). Single-cell genomics reveals region-specific developmental trajectories underlying neuronal diversity in the human hypothalamus. Science Advances, 9(45). https://doi.org/10.1126/sciadv.adf6251
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