Publications

Found 902 results
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2025
Lee J, Kang R, Park S, Saliu IO, Son M, Voorhees JR, Dimitry JM, Quillin EI, Woodie LN, Lananna BV et al..  2025.  REV-ERBα regulates brain NAD+ levels and tauopathy via an NFIL3-CD38 axis.. Nat Aging.
Lee J, Kang R, Park S, Saliu IO, Son M, Voorhees JR, Dimitry JM, Quillin EI, Woodie LN, Lananna BV et al..  2025.  REV-ERBα regulates brain NAD+ levels and tauopathy via an NFIL3-CD38 axis.. Nat Aging.
Belchikov N, Hu W, Fan L, Joglekar A, He Y, Foord C, Jarroux J, Hsu J, Pollard S, Amin S et al..  2025.  A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain.. Cell Rep. 44(9):116198.
Belchikov N, Hu W, Fan L, Joglekar A, He Y, Foord C, Jarroux J, Hsu J, Pollard S, Amin S et al..  2025.  A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain.. Cell Rep. 44(9):116198.
Belchikov N, Hu W, Fan L, Joglekar A, He Y, Foord C, Jarroux J, Hsu J, Pollard S, Amin S et al..  2025.  A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain.. Cell Rep. 44(9):116198.
Belchikov N, Hu W, Fan L, Joglekar A, He Y, Foord C, Jarroux J, Hsu J, Pollard S, Amin S et al..  2025.  A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain.. Cell Rep. 44(9):116198.
Belchikov N, Hu W, Fan L, Joglekar A, He Y, Foord C, Jarroux J, Hsu J, Pollard S, Amin S et al..  2025.  A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain.. Cell Rep. 44(9):116198.
Belchikov N, Hu W, Fan L, Joglekar A, He Y, Foord C, Jarroux J, Hsu J, Pollard S, Amin S et al..  2025.  A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain.. Cell Rep. 44(9):116198.
Blackmon TJ, MacMahon JA, Bernardino PN, Hogans RE, Cheng M-Y, Vu J, Lee RDiana, Saito NH, Grodzki ACristina, Bruun DA et al..  2025.  Spatiotemporal perturbations of the plasminogen activation system in a rat model of acute organophosphate intoxication.. Acta Neuropathol Commun. 13(1):62.
Gao V, Chlebowicz J, Gaskin K, Briano JA, Komer LE, Pineda A, Jhalani S, Ahmad S, Uwaifo E, Black LS et al..  2025.  Synaptic vesicle-omics in mice captures signatures of aging and synucleinopathy.. Nat Commun. 16(1):4079.
Breves SL, Di Giammartino DCampigli, Nicholson J, Cirigliano S, Mahmood SRaza, Lee UJin, Martinez-Fundichely A, Jungverdorben J, Singhania R, Rajkumar S et al..  2025.  Three-dimensional regulatory hubs support oncogenic programs in glioblastoma.. Mol Cell. 85(7):1330-1348.e6.
Breves SL, Di Giammartino DCampigli, Nicholson J, Cirigliano S, Mahmood SRaza, Lee UJin, Martinez-Fundichely A, Jungverdorben J, Singhania R, Rajkumar S et al..  2025.  Three-dimensional regulatory hubs support oncogenic programs in glioblastoma.. Mol Cell. 85(7):1330-1348.e6.
Vargas-Ortiz J, Lin L, Martinez VK, Liu R-J, Babij R, Duan ZRan S, Wacks S, Sun L, Wang A, Khan S et al..  2025.  Translaminar synchronous neuronal activity is required for columnar synaptic strengthening in the mouse neocortex.. Nat Commun. 16(1):1296.
Vargas-Ortiz J, Lin L, Martinez VK, Liu R-J, Babij R, Duan ZRan S, Wacks S, Sun L, Wang A, Khan S et al..  2025.  Translaminar synchronous neuronal activity is required for columnar synaptic strengthening in the mouse neocortex.. Nat Commun. 16(1):1296.
Cohn B, Doerr M, Feliciano P, Fullerton SM, Hendriks S, Holm S, Hyun I, Jongsma K, Meagher KM, M Ross E et al..  2025.  Transparency and ongoing communication with participants in brain organoid research: Consensus of an interdisciplinary working group.. Stem Cell Reports. :102546.
Hes C, Tomlinson AJ, Michielsen L, Murdoch HJ, Soltani F, Kokoeva MV, Sabatini PV.  2025.  A unified rodent atlas reveals the cellular complexity and evolutionary divergence of the dorsal vagal complex.. Elife. 14
Hes C, Tomlinson AJ, Michielsen L, Murdoch HJ, Soltani F, Kokoeva MV, Sabatini PV.  2025.  A unified rodent atlas reveals the cellular complexity and evolutionary divergence of the dorsal vagal complex.. Elife. 14
Weis MA, Papadopoulos S, Hansel L, Lüddecke T, Celii B, Fahey PG, Wang EY, J Bae A, Bodor AL, Brittain D et al..  2025.  An unsupervised map of excitatory neuron dendritic morphology in the mouse visual cortex.. Nat Commun. 16(1):3361.
Weis MA, Papadopoulos S, Hansel L, Lüddecke T, Celii B, Fahey PG, Wang EY, J Bae A, Bodor AL, Brittain D et al..  2025.  An unsupervised map of excitatory neuron dendritic morphology in the mouse visual cortex.. Nat Commun. 16(1):3361.
Weis MA, Papadopoulos S, Hansel L, Lüddecke T, Celii B, Fahey PG, Wang EY, J Bae A, Bodor AL, Brittain D et al..  2025.  An unsupervised map of excitatory neuron dendritic morphology in the mouse visual cortex.. Nat Commun. 16(1):3361.
Cheng H, Miller D, Southwell N, Porcari P, Fischer JL, Taylor I, J Salbaum M, Kappen C, Hu F, Yang C et al..  2025.  Untargeted pixel-by-pixel metabolite ratio imaging as a novel tool for biomedical discovery in mass spectrometry imaging.. Elife. 13
Cheng H, Miller D, Southwell N, Porcari P, Fischer JL, Taylor I, J Salbaum M, Kappen C, Hu F, Yang C et al..  2025.  Untargeted pixel-by-pixel metabolite ratio imaging as a novel tool for biomedical discovery in mass spectrometry imaging.. Elife. 13
2026
Brown JA, Amir M, Yu S, Wong DSH, Gu J, Balaji U, Parkhurst CN, Hong S, Hart LR, Carrow HC et al..  2026.  Gut microbiota promotes immune tolerance at the maternal-fetal interface.. Cell. 189(1):196-214.e24.
Brown JA, Amir M, Yu S, Wong DSH, Gu J, Balaji U, Parkhurst CN, Hong S, Hart LR, Carrow HC et al..  2026.  Gut microbiota promotes immune tolerance at the maternal-fetal interface.. Cell. 189(1):196-214.e24.
Brown JA, Amir M, Yu S, Wong DSH, Gu J, Balaji U, Parkhurst CN, Hong S, Hart LR, Carrow HC et al..  2026.  Gut microbiota promotes immune tolerance at the maternal-fetal interface.. Cell. 189(1):196-214.e24.