Nature Neuroscience

Displaying 1 - 25 of 25
DeSpenza, T., Kiziltug, E., Allington, G., Barson, D. G., McGee, S., O’Connor, D., Robert, S. M., Mekbib, K. Y., Nanda, P., Greenberg, A. B. W., Singh, A., Duy, P. Q., Mandino, F., Zhao, S., Lynn, A., Reeves, B. C., Marlier, A., Getz, S. A., Nelson-Williams, C., … Kahle, K. T. (2025). PTEN mutations impair CSF dynamics and cortical networks by dysregulating periventricular neural progenitors. Nature Neuroscience. https://doi.org/10.1038/s41593-024-01865-3
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Nguyen, T. B., Miramontes, R., Chillon-Marinas, C., Maimon, R., Vazquez-Sanchez, S., Lau, A. L., McClure, N. R., Wu, Z., Wang, K. Q., England, W. E., Singha, M., Stocksdale, J. T., Heath, M., Jang, K.-H., Jung, S., Ling, K., Jafar-nejad, P., McKnight, J. I., Ho, L. N., … Thompson, L. M. (2025). Aberrant splicing in Huntington’s disease accompanies disrupted TDP-43 activity and altered m6A RNA modification. Nature Neuroscience, 28(2), 280–292. https://doi.org/10.1038/s41593-024-01850-w
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Mizes, K. G. C., Lindsey, J., Escola, G. S., & Ölveczky, B. P. (2024). The role of motor cortex in motor sequence execution depends on demands for flexibility. Nature Neuroscience, 27(12), 2466–2475. https://doi.org/10.1038/s41593-024-01792-3
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Fowler, S. L., Behr, T. S., Turkes, E., O’Brien, D. P., Cauhy, P. M., Rawlinson, I., Edmonds, M., Foiani, M. S., Schaler, A., Crowley, G., Bez, S., Ficulle, E., Tsefou, E., Fischer, R., Geary, B., Gaur, P., Miller, C., D’Acunzo, P., Levy, E., … Ryskeldi-Falcon, B. (2024). Tau filaments are tethered within brain extracellular vesicles in Alzheimer’s disease. Nature Neuroscience. https://doi.org/10.1038/s41593-024-01801-5
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Tuddenham, J. F., Taga, M., Haage, V., Marshe, V. S., Roostaei, T., White, C., Lee, A. J., Fujita, M., Khairallah, A., Zhang, Y., Green, G., Hyman, B., Frosch, M., Hopp, S., Beach, T. G., Serrano, G. E., Corboy, J., Habib, N., Klein, H.-U., … De Jager, P. L. (2024). A cross-disease resource of living human microglia identifies disease-enriched subsets and tool compounds recapitulating microglial states. Nature Neuroscience, 27(12), 2521–2537. https://doi.org/10.1038/s41593-024-01764-7
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Kassraian, P., Bigler, S. K., Gilly Suarez, D. M., Shrotri, N., Barnett, A., Lee, H.-J., Young, W. S., & Siegelbaum, S. A. (2024). The hippocampal CA2 region discriminates social threat from social safety. Nature Neuroscience, 27(11), 2193–2206. https://doi.org/10.1038/s41593-024-01771-8
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Shahriar, S., Biswas, S., Zhao, K., Akcan, U., Tuohy, M. C., Glendinning, M. D., Kurt, A., Wayne, C. R., Prochilo, G., Price, M. Z., Stuhlmann, H., Brekken, R. A., Menon, V., & Agalliu, D. (2024). VEGF-A-mediated venous endothelial cell proliferation results in neoangiogenesis during neuroinflammation. Nature Neuroscience, 27(10), 1904–1917. https://doi.org/10.1038/s41593-024-01746-9
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Christenson, M. P., Sanz Diez, A., Heath, S. L., Saavedra-Weisenhaus, M., Adachi, A., Nern, A., Abbott, L. F., & Behnia, R. (2024). Hue selectivity from recurrent circuitry in Drosophila. Nature Neuroscience, 27(6), 1137–1147. https://doi.org/10.1038/s41593-024-01640-4
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Lefèvre-Arbogast, S., Chaker, J., Mercier, F., Barouki, R., Coumoul, X., Miller, G. W., David, A., & Samieri, C. (2024). Assessing the contribution of the chemical exposome to neurodegenerative disease. Nature Neuroscience, 27(5), 812–821. https://doi.org/10.1038/s41593-024-01627-1
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Kunz, L., Staresina, B. P., Reinacher, P. C., Brandt, A., Guth, T. A., Schulze-Bonhage, A., & Jacobs, J. (2024). Ripple-locked coactivity of stimulus-specific neurons and human associative memory. Nature Neuroscience, 27(3), 587–599. https://doi.org/10.1038/s41593-023-01550-x
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Mizes, K. G. C., Lindsey, J., Escola, G. S., & Ölveczky, B. P. (2023). Dissociating the contributions of sensorimotor striatum to automatic and visually guided motor sequences. Nature Neuroscience, 26(10), 1791–1804. https://doi.org/10.1038/s41593-023-01431-3
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Dridi, H., Liu, Y., Reiken, S., Liu, X., Argyrousi, E. K., Yuan, Q., Miotto, M. C., Sittenfeld, L., Meddar, A., Soni, R. K., Arancio, O., Lacampagne, A., & Marks, A. R. (2023). Heart failure-induced cognitive dysfunction is mediated by intracellular Ca2+ leak through ryanodine receptor type 2. Nature Neuroscience, 26(8), 1365–1378. https://doi.org/10.1038/s41593-023-01377-6
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McKay, N. S., Gordon, B. A., Hornbeck, R. C., Dincer, A., Flores, S., Keefe, S. J., Joseph-Mathurin, N., Jack, C. R., Koeppe, R., Millar, P. R., Ances, B. M., Chen, C. D., Daniels, A., Hobbs, D. A., Jackson, K., Koudelis, D., Massoumzadeh, P., McCullough, A., Nickels, M. L., … la Fougère, C. (2023). Positron emission tomography and magnetic resonance imaging methods and datasets within the Dominantly Inherited Alzheimer Network (DIAN). Nature Neuroscience, 26(8), 1449–1460. https://doi.org/10.1038/s41593-023-01359-8
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Cain, A., Taga, M., McCabe, C., Green, G. S., Hekselman, I., White, C. C., Lee, D. I., Gaur, P., Rozenblatt-Rosen, O., Zhang, F., Yeger-Lotem, E., Bennett, D. A., Yang, H.-S., Regev, A., Menon, V., Habib, N., & De Jager, P. L. (2023). Multicellular communities are perturbed in the aging human brain and Alzheimer’s disease. Nature Neuroscience, 26(7), 1267–1280. https://doi.org/10.1038/s41593-023-01356-x
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Zhou, H., Li, M., Zhao, R., Sun, L., & Yang, G. (2023). A sleep-active basalocortical pathway crucial for generation and maintenance of chronic pain. Nature Neuroscience. https://doi.org/10.1038/s41593-022-01250-y
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Humphrey, J., Venkatesh, S., Hasan, R., Herb, J. T., de Paiva Lopes, K., Küçükali, F., Byrska-Bishop, M., Evani, U. S., Narzisi, G., Fagegaltier, D., Sleegers, K., Phatnani, H., Knowles, D. A., Fratta, P., & Raj, T. (2022). Integrative transcriptomic analysis of the amyotrophic lateral sclerosis spinal cord implicates glial activation and suggests new risk genes. Nature Neuroscience, 26(1), 150–162. https://doi.org/10.1038/s41593-022-01205-3
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Marshall, N. J., Glaser, J. I., Trautmann, E. M., Amematsro, E. A., Perkins, S. M., Shadlen, M. N., Abbott, L. F., Cunningham, J. P., & Churchland, M. M. (2022). Flexible neural control of motor units. Nature Neuroscience, 25(11), 1492–1504. https://doi.org/10.1038/s41593-022-01165-8
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Morizawa, Y. M., Matsumoto, M., Nakashima, Y., Endo, N., Aida, T., Ishikane, H., Beppu, K., Moritoh, S., Inada, H., Osumi, N., Shigetomi, E., Koizumi, S., Yang, G., Hirai, H., Tanaka, K., Tanaka, K. F., Ohno, N., Fukazawa, Y., & Matsui, K. (2022). Synaptic pruning through glial synapse engulfment upon motor learning. Nature Neuroscience, 25(11), 1458–1469. https://doi.org/10.1038/s41593-022-01184-5
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Bryois, J., Calini, D., Macnair, W., Foo, L., Urich, E., Ortmann, W., Iglesias, V. A., Selvaraj, S., Nutma, E., Marzin, M., Amor, S., Williams, A., Castelo-Branco, G., Menon, V., De Jager, P., & Malhotra, D. (2022). Cell-type-specific cis-eQTLs in eight human brain cell types identify novel risk genes for psychiatric and neurological disorders. Nature Neuroscience, 25(8), 1104–1112. https://doi.org/10.1038/s41593-022-01128-z
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Ammothumkandy, A., Ravina, K., Wolseley, V., Tartt, A. N., Yu, P.-N., Corona, L., Zhang, N., Nune, G., Kalayjian, L., Mann, J. J., Rosoklija, G. B., Arango, V., Dwork, A. J., Lee, B., Smith, J. A. D., Song, D., Berger, T. W., Heck, C., Chow, R. H., … Bonaguidi, M. A. (2022). Altered adult neurogenesis and gliogenesis in patients with mesial temporal lobe epilepsy. Nature Neuroscience, 25(4), 493–503. https://doi.org/10.1038/s41593-022-01044-2
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Johnson, E. C. B., Carter, E. K., Dammer, E. B., Duong, D. M., Gerasimov, E. S., Liu, Y., Liu, J., Betarbet, R., Ping, L., Yin, L., Serrano, G. E., Beach, T. G., Peng, J., De Jager, P. L., Haroutunian, V., Zhang, B., Gaiteri, C., Bennett, D. A., Gearing, M., … Seyfried, N. T. (2022). Large-scale deep multi-layer analysis of Alzheimer’s disease brain reveals strong proteomic disease-related changes not observed at the RNA level. Nature Neuroscience, 25(2), 213–225. https://doi.org/10.1038/s41593-021-00999-y
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Paulk, A. C., Kfir, Y., Khanna, A. R., Mustroph, M. L., Trautmann, E. M., Soper, D. J., Stavisky, S. D., Welkenhuysen, M., Dutta, B., Shenoy, K. V., Hochberg, L. R., Richardson, R. M., Williams, Z. M., & Cash, S. S. (2022). Large-scale neural recordings with single neuron resolution using Neuropixels probes in human cortex. Nature Neuroscience, 25(2), 252–263. https://doi.org/10.1038/s41593-021-00997-0
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