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- Overview
- Anatomy and Histology
- Cryo-Electron Microscopy
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- Gene Targeting and Transgenics
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Export 3323 results:
Author Title Type [ Year
Filters: First Letter Of Last Name is S [Clear All Filters]
2025
Sun Y, Squires JR, Hoffmann A, Zhang Y, Minor A, Singh A, Scholten D, Mao C, Luo Y, Fang D et al..
2025. Abstract 2420: Deep learning enables automated detection of circulating tumor cell-immune cell interactions with prognostic insights in cancer. Cancer Research. 85:2420-2420.
Sun Y, Squires JR, Hoffmann A, Zhang Y, Minor A, Singh A, Scholten D, Mao C, Luo Y, Fang D et al..
2025. Abstract 2420: Deep learning enables automated detection of circulating tumor cell-immune cell interactions with prognostic insights in cancer. Cancer Research. 85:2420-2420.
Sun Y, Squires JR, Hoffmann A, Zhang Y, Minor A, Singh A, Scholten D, Mao C, Luo Y, Fang D et al..
2025. Abstract 2420: Deep learning enables automated detection of circulating tumor cell-immune cell interactions with prognostic insights in cancer. Cancer Research. 85:2420-2420.
Sun Y, Squires JR, Hoffmann A, Zhang Y, Minor A, Singh A, Scholten D, Mao C, Luo Y, Fang D et al..
2025. Abstract 2420: Deep learning enables automated detection of circulating tumor cell-immune cell interactions with prognostic insights in cancer. Cancer Research. 85:2420-2420.
Sun Y, Squires JR, Hoffmann A, Zhang Y, Minor A, Singh A, Scholten D, Mao C, Luo Y, Fang D et al..
2025. Abstract 2420: Deep learning enables automated detection of circulating tumor cell-immune cell interactions with prognostic insights in cancer. Cancer Research. 85:2420-2420.
Hillsley A, Stein J, Tillberg PW, Stern DL, Funke J.
2025. A Bayesian Model to Count the Number of Two-State Emitters in a Diffraction Limited Spot.. Nano Lett.
Hillsley A, Stein J, Tillberg PW, Stern DL, Funke J.
2025. A Bayesian Model to Count the Number of Two-State Emitters in a Diffraction Limited Spot.. Nano Lett.
Wolff T, Eddison M, Chen N, Nern A, Sundaramurthi P, Sitaraman D, Rubin GM.
2025. Cell type-specific driver lines targeting the Drosophila central complex and their use to investigate neuropeptide expression and sleep regulation. elife.
Wolff T, Eddison M, Chen N, Nern A, Sundaramurthi P, Sitaraman D, Rubin GM.
2025. Cell type-specific driver lines targeting the Drosophila central complex and their use to investigate neuropeptide expression and sleep regulation. elife.
Stringer C, Pachitariu M.
2025. Cellpose3: one-click image restoration for improved cellular segmentation.. Nat Methods.
Pachitariu M, Rariden M, Stringer C.
2025. Cellpose-SAM: superhuman generalization for cellular segmentation. bioRxiv.
Deb D, Both G-J, Bezzam E, Kohli A, Yang S, Chaware A, Allier C, Cai C, Anderberg G, M. Eybposh H et al..
2025. Chromatix: a differentiable, GPU-accelerated wave-optics library. bioRxiv.
Deb D, Both G-J, Bezzam E, Kohli A, Yang S, Chaware A, Allier C, Cai C, Anderberg G, M. Eybposh H et al..
2025. Chromatix: a differentiable, GPU-accelerated wave-optics library. bioRxiv.
Deb D, Both G-J, Bezzam E, Kohli A, Yang S, Chaware A, Allier C, Cai C, Anderberg G, M. Eybposh H et al..
2025. Chromatix: a differentiable, GPU-accelerated wave-optics library. bioRxiv.
Csillag V, Forastieri C, Szücs GMartina, Vidal ITalaya, Bizzozzero MHiriart, Lavis LD, Calvigioni D, Fuzik J.
2025. Collateral connectomes of Esr1-positive hypothalamic neurons modulate defensive behavior plasticity. bioRxiv.
Pentimalli TMassimo, Schallenberg S, León-Periñán D, Legnini I, Theurillat I, Thomas G, Boltengagen A, Fritzsche S, Nimo J, Ruff L et al..
2025. Combining spatial transcriptomics and ECM imaging in 3D for mapping cellular interactions in the tumor microenvironment.. Cell Syst. :101261.
Stürner T, Brooks P, Capdevila LSerratosa, Morris BJ, Javier A, Fang S, Gkantia M, Cachero S, Beckett IR, Marin EC et al..
2025. Comparative connectomics of Drosophila descending and ascending neurons.. Nature.
Stürner T, Brooks P, Capdevila LSerratosa, Morris BJ, Javier A, Fang S, Gkantia M, Cachero S, Beckett IR, Marin EC et al..
2025. Comparative connectomics of Drosophila descending and ascending neurons.. Nature.
Stürner T, Brooks P, Capdevila LSerratosa, Morris BJ, Javier A, Fang S, Gkantia M, Cachero S, Beckett IR, Marin EC et al..
2025. Comparative connectomics of Drosophila descending and ascending neurons.. Nature.
Stürner T, Brooks P, Capdevila LSerratosa, Morris BJ, Javier A, Fang S, Gkantia M, Cachero S, Beckett IR, Marin EC et al..
2025. Comparative connectomics of Drosophila descending and ascending neurons.. Nature.
Erginkaya M, Cruz T, Brotas M, Steck K, Nern A, Torrão F, Varela N, Bock D, Reiser M, M Chiappe E.
2025. A competitive disinhibitory network for robust optic flow processing in Drosophila. Nat Neurosci..
Keller JA, Kwak IS, Stark AK, Pachitariu M, Branson K, Dudman JT.
2025. Cortical control of innate behavior from subcortical demonstration. bioRxiv.
Lollar MJ, Kim E, Stern DL, Pool JE.
2025. Courtship song differs between African and European populations of Drosophila melanogaster and involves a strong effect locus. G3 Genes|Genomes|Genetics.
Pachitariu M, Zhong L, Gracias A, Minisi A, Lopez C, Stringer C.
2025. A critical initialization for biological neural networks. bioRxiv.
Zocchi D, Nguyen M, Marquez-Legorreta E, Siwanowicz I, Singh C, Prober DA, Hillman EMC, Ahrens MB.
2025. Days-old zebrafish rapidly learn to recognize threatening agents through noradrenergic and forebrain circuits.. Curr Biol. 35(1):163-176.e4.