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- Overview
- Anatomy and Histology
- Cryo-Electron Microscopy
- Electron Microscopy
- Flow Cytometry
- Gene Targeting and Transgenics
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- Integrative Imaging
- Invertebrate Shared Resource
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- Molecular Genomics
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Export 2193 results:
Author Title Type [ Year
] Filters: First Letter Of Last Name is C [Clear All Filters]
2023
Bonello TT, Cai D, Fletcher GC, Wiengartner K, Pengilly V, Lange KS, Liu Z, Lippincott-Schwartz J, Kavran JM, Thompson BJ.
2023. Phase separation of Hippo signalling complexes.. EMBO Journal. 42(6):e112863.
Covert I, Gala R, Wang T, Svoboda K, Sümbül U, Lee S-I.
2023. Predictive and robust gene selection for spatial transcriptomics.. Nature Communications. 14(1):2091.
Safaie M, Chang JC, Park J, Miller LE, Dudman JT, Perich MG, Gallego JA.
2023. Preserved neural dynamics across animals performing similar behaviour.. Nature.
Shen Y, Wen Y, Sposini S, Vishwanath AAmrapali, Abdelfattah AS, Schreiter ER, M Lemieux J, de Juan-Sanz J, Perrais D, Campbell RE.
2023. Rational Engineering of an Improved Genetically Encoded pH Sensor Based on Superecliptic pHluorin.. ACS Sensors. 8(8):3014-3022.
Vijayan V, Wang F, Wang K, Chakravorty A, Adachi A, Akhlaghpour H, Dickson BJ, Maimon G.
2023. A rise-to-threshold process for a relative-value decision.. Nature. 619(7970):563-571.
Miller AN, Houlihan PR, Matamala E, Cabezas-Bratesco D, Lee GYoung, Cristofori-Armstrong B, Dilan TL, Sanchez-Martinez S, Matthies D, Yan R et al..
2023. The SARS-CoV-2 accessory protein Orf3a is not an ion channel, but does interact with trafficking proteins. eLife.
Miller AN, Houlihan PR, Matamala E, Cabezas-Bratesco D, Lee GYoung, Cristofori-Armstrong B, Dilan TL, Sanchez-Martinez S, Matthies D, Yan R et al..
2023. The SARS-CoV-2 accessory protein Orf3a is not an ion channel, but does interact with trafficking proteins. eLife.
Miller AN, Houlihan PR, Matamala E, Cabezas-Bratesco D, Lee GYoung, Cristofori-Armstrong B, Dilan TL, Sanchez-Martinez S, Matthies D, Yan R et al..
2023. The SARS-CoV-2 accessory protein Orf3a is not an ion channel, but does interact with trafficking proteins. eLife.
Arthur BJ, Kim CM, Chen S, Preibisch S, Darshan R.
2023. A scalable implementation of the recursive least-squares algorithm for training spiking neural networks. Frontiers in Neuroinformatics.
Meissner GWilson, Nern A, Dorman Z, Depasquale GM, Forster K, Gibney T, Hausenfluck JH, He Y, Iyer NA, Jeter J et al..
2023. A searchable image resource of Drosophila GAL4-driver expression patterns with single neuron resolution.. eLife. 12
Meissner GWilson, Nern A, Dorman Z, Depasquale GM, Forster K, Gibney T, Hausenfluck JH, He Y, Iyer NA, Jeter J et al..
2023. A searchable image resource of Drosophila GAL4-driver expression patterns with single neuron resolution.. eLife. 12
Nichols AL, Blumenfeld Z, Luebbert L, Knox HJ, Muthusamy AK, Marvin JS, Kim CH, Grant SN, Walton DP, Cohen BN et al..
2023. Selective Serotonin Reuptake Inhibitors within Cells: Temporal Resolution in Cytoplasm, Endoplasmic Reticulum, and Membrane.. Journal of Neuroscience.
Abdelfattah AS, Zheng J, Singh A, Huang Y-C, Reep D, Tsegaye G, Tsang A, Arthur BJ, Rehorova M, Olson CVL et al..
2023. Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator. Neuron. 111(10):1547-1563.
Abdelfattah AS, Zheng J, Singh A, Huang Y-C, Reep D, Tsegaye G, Tsang A, Arthur BJ, Rehorova M, Olson CVL et al..
2023. Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator. Neuron. 111(10):1547-1563.
Abdelfattah AS, Zheng J, Singh A, Huang Y-C, Reep D, Tsegaye G, Tsang A, Arthur BJ, Rehorova M, Olson CVL et al..
2023. Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator. Neuron. 111(10):1547-1563.
Downie A.E, Oyesola O., Barre R.S, Caudron Q., Chen Y.-H., Dennis E.J, Garnier R., Kiwanuka K., Menezes A., Navarrete D.J et al..
2023. Social association predicts immunological similarity in rewilded mice. bioRxiv.
Downie A.E, Oyesola O., Barre R.S, Caudron Q., Chen Y.-H., Dennis E.J, Garnier R., Kiwanuka K., Menezes A., Navarrete D.J et al..
2023. Social association predicts immunological similarity in rewilded mice. bioRxiv.
Downie A.E, Oyesola O., Barre R.S, Caudron Q., Chen Y.-H., Dennis E.J, Garnier R., Kiwanuka K., Menezes A., Navarrete D.J et al..
2023. Social association predicts immunological similarity in rewilded mice. bioRxiv.
Downie AE, Oyesola O, Barre RS, Caudron Q, Chen Y-H, Dennis EJ, Garnier R, Kiwanuka K, Menezes A, Navarrete DJ et al..
2023. Spatiotemporal-social association predicts immunological similarity in rewilded mice.. Science Advances. 9(51):eadh8310.
Downie AE, Oyesola O, Barre RS, Caudron Q, Chen Y-H, Dennis EJ, Garnier R, Kiwanuka K, Menezes A, Navarrete DJ et al..
2023. Spatiotemporal-social association predicts immunological similarity in rewilded mice.. Science Advances. 9(51):eadh8310.
Downie AE, Oyesola O, Barre RS, Caudron Q, Chen Y-H, Dennis EJ, Garnier R, Kiwanuka K, Menezes A, Navarrete DJ et al..
2023. Spatiotemporal-social association predicts immunological similarity in rewilded mice.. Science Advances. 9(51):eadh8310.
Kumari R, Ven K, Chastney M, Peränen J, Aaron J, Almeida-Souza L, Kremneva E, Poincloux R, Chew T-L, Gunning PW et al..
2023. Specialized actin nanoscale layers control focal adhesion turnover. bioRxiv.
Kumari R, Ven K, Chastney M, Peränen J, Aaron J, Almeida-Souza L, Kremneva E, Poincloux R, Chew T-L, Gunning PW et al..
2023. Specialized actin nanoscale layers control focal adhesion turnover. bioRxiv.
Dombrovski M, Peek MY, Park J-Y, Vaccari A, Sumathipala M, Morrow C, Breads P, Zhao A, Kurmangaliyev YZ, Sanfilippo P et al..
2023. Synaptic gradients transform object location to action.. Nature. 613(7944):534-42.
