Connection
Paul Kulesa to Neural Crest
This is a "connection" page, showing publications Paul Kulesa has written about Neural Crest.
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Connection Strength |
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16.674 |
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McLennan R, Giniunaite R, Hildebrand K, Teddy JM, Kasemeier-Kulesa JC, Bolanos L, Baker RE, Maini PK, Kulesa PM. Colec12 and Trail signaling confine cranial neural crest cell trajectories and promote collective cell migration. Dev Dyn. 2023 05; 252(5):629-646.
Score: 0.819
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Morrison JA, McLennan R, Teddy JM, Scott AR, Kasemeier-Kulesa JC, Gogol MM, Kulesa PM. Single-cell reconstruction with spatial context of migrating neural crest cells and their microenvironments during vertebrate head and neck formation. Development. 2021 11 15; 148(22).
Score: 0.753
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Kasemeier-Kulesa JC, Spengler JA, Muolo CE, Morrison JA, Woolley TE, Schnell S, Kulesa PM. The embryonic trunk neural crest microenvironment regulates the plasticity and invasion of human neuroblastoma via TrkB signaling. Dev Biol. 2021 12; 480:78-90.
Score: 0.740
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McKinney MC, Kulesa PM. Live Imaging of the Neural Crest Cell Epithelial-to-Mesenchymal Transition in the Chick Embryo. Methods Mol Biol. 2021; 2179:107-114.
Score: 0.708
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McKinney MC, McLennan R, Giniunaite R, Baker RE, Maini PK, Othmer HG, Kulesa PM. Visualizing mesoderm and neural crest cell dynamics during chick head morphogenesis. Dev Biol. 2020 05 15; 461(2):184-196.
Score: 0.667
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McLennan R, McKinney MC, Teddy JM, Morrison JA, Kasemeier-Kulesa JC, Ridenour DA, Manthe CA, Giniunaite R, Robinson M, Baker RE, Maini PK, Kulesa PM. Neural crest cells bulldoze through the microenvironment using Aquaporin 1 to stabilize filopodia. Development. 2020 01 09; 147(1).
Score: 0.662
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Dyson L, Holmes A, Li A, Kulesa PM. A chemotactic model of trunk neural crest cell migration. Genesis. 2018 09; 56(9):e23239.
Score: 0.601
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Morrison JA, McLennan R, Wolfe LA, Gogol MM, Meier S, McKinney MC, Teddy JM, Holmes L, Semerad CL, Box AC, Li H, Hall KE, Perera AG, Kulesa PM. Single-cell transcriptome analysis of avian neural crest migration reveals signatures of invasion and molecular transitions. Elife. 2017 12 04; 6.
Score: 0.572
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McLennan R, Bailey CM, Schumacher LJ, Teddy JM, Morrison JA, Kasemeier-Kulesa JC, Wolfe LA, Gogol MM, Baker RE, Maini PK, Kulesa PM. DAN (NBL1) promotes collective neural crest migration by restraining uncontrolled invasion. J Cell Biol. 2017 10 02; 216(10):3339-3354.
Score: 0.560
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Morrison JA, McKinney MC, Kulesa PM. Resolving in vivo gene expression during collective cell migration using an integrated RNAscope, immunohistochemistry and tissue clearing method. Mech Dev. 2017 12; 148:100-106.
Score: 0.554
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McKinney MC, McLennan R, Kulesa PM. Angiopoietin 2 signaling plays a critical role in neural crest cell migration. BMC Biol. 2016 12 15; 14(1):111.
Score: 0.535
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McLennan R, Schumacher LJ, Morrison JA, Teddy JM, Ridenour DA, Box AC, Semerad CL, Li H, McDowell W, Kay D, Maini PK, Baker RE, Kulesa PM. VEGF signals induce trailblazer cell identity that drives neural crest migration. Dev Biol. 2015 Nov 01; 407(1):12-25.
Score: 0.488
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McLennan R, Schumacher LJ, Morrison JA, Teddy JM, Ridenour DA, Box AC, Semerad CL, Li H, McDowell W, Kay D, Maini PK, Baker RE, Kulesa PM. Neural crest migration is driven by a few trailblazer cells with a unique molecular signature narrowly confined to the invasive front. Development. 2015 Jun 01; 142(11):2014-25.
Score: 0.479
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Ridenour DA, McLennan R, Teddy JM, Semerad CL, Haug JS, Kulesa PM. The neural crest cell cycle is related to phases of migration in the head. Development. 2014 Mar; 141(5):1095-103.
Score: 0.441
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Kulesa PM, Morrison JA, Bailey CM. The neural crest and cancer: a developmental spin on melanoma. Cells Tissues Organs. 2013; 198(1):12-21.
Score: 0.420
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Wynn ML, Rupp P, Trainor PA, Schnell S, Kulesa PM. Follow-the-leader cell migration requires biased cell-cell contact and local microenvironmental signals. Phys Biol. 2013 Jun; 10(3):035003.
Score: 0.419
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McKinney MC, Fukatsu K, Morrison J, McLennan R, Bronner ME, Kulesa PM. Evidence for dynamic rearrangements but lack of fate or position restrictions in premigratory avian trunk neural crest. Development. 2013 Feb; 140(4):820-30.
Score: 0.408
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Bailey CM, Morrison JA, Kulesa PM. Melanoma revives an embryonic migration program to promote plasticity and invasion. Pigment Cell Melanoma Res. 2012 Sep; 25(5):573-83.
Score: 0.395
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McKinney MC, Kulesa PM. In vivo calcium dynamics during neural crest cell migration and patterning using GCaMP3. Dev Biol. 2011 Oct 15; 358(2):309-17.
Score: 0.370
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McKinney MC, Stark DA, Teddy J, Kulesa PM. Neural crest cell communication involves an exchange of cytoplasmic material through cellular bridges revealed by photoconversion of KikGR. Dev Dyn. 2011 Jun; 240(6):1391-401.
Score: 0.361
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Kulesa PM, Teddy JM, Smith M, Alexander R, Cooper CH, Lansford R, McLennan R. Multispectral fingerprinting for improved in vivo cell dynamics analysis. BMC Dev Biol. 2010 Sep 24; 10:101.
Score: 0.348
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Kulesa PM, Gammill LS. Neural crest migration: patterns, phases and signals. Dev Biol. 2010 Aug 15; 344(2):566-8.
Score: 0.339
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Kulesa PM, Bailey CM, Kasemeier-Kulesa JC, McLennan R. Cranial neural crest migration: new rules for an old road. Dev Biol. 2010 Aug 15; 344(2):543-54.
Score: 0.338
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McLennan R, Teddy JM, Kasemeier-Kulesa JC, Romine MH, Kulesa PM. Vascular endothelial growth factor (VEGF) regulates cranial neural crest migration in vivo. Dev Biol. 2010 Mar 01; 339(1):114-25.
Score: 0.330
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Kulesa PM, Lefcort F, Kasemeier-Kulesa JC. The migration of autonomic precursor cells in the embryo. Auton Neurosci. 2009 Nov 17; 151(1):3-9.
Score: 0.324
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Kasemeier-Kulesa JC, Teddy JM, Postovit LM, Seftor EA, Seftor RE, Hendrix MJ, Kulesa PM. Reprogramming multipotent tumor cells with the embryonic neural crest microenvironment. Dev Dyn. 2008 Oct; 237(10):2657-66.
Score: 0.303
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Kulesa PM, Teddy JM, Stark DA, Smith SE, McLennan R. Neural crest invasion is a spatially-ordered progression into the head with higher cell proliferation at the migratory front as revealed by the photoactivatable protein, KikGR. Dev Biol. 2008 Apr 15; 316(2):275-87.
Score: 0.290
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Rupp PA, Kulesa PM. A role for RhoA in the two-phase migratory pattern of post-otic neural crest cells. Dev Biol. 2007 Nov 01; 311(1):159-71.
Score: 0.281
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Kasemeier-Kulesa JC, Bradley R, Pasquale EB, Lefcort F, Kulesa PM. Eph/ephrins and N-cadherin coordinate to control the pattern of sympathetic ganglia. Development. 2006 Dec; 133(24):4839-47.
Score: 0.266
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McLennan R, Kulesa PM. In vivo analysis reveals a critical role for neuropilin-1 in cranial neural crest cell migration in chick. Dev Biol. 2007 Jan 01; 301(1):227-39.
Score: 0.261
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Kulesa PM, Lu CC, Fraser SE. Time-lapse analysis reveals a series of events by which cranial neural crest cells reroute around physical barriers. Brain Behav Evol. 2005; 66(4):255-65.
Score: 0.247
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Teddy JM, Kulesa PM. In vivo evidence for short- and long-range cell communication in cranial neural crest cells. Development. 2004 Dec; 131(24):6141-51.
Score: 0.232
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Kulesa P, Ellies DL, Trainor PA. Comparative analysis of neural crest cell death, migration, and function during vertebrate embryogenesis. Dev Dyn. 2004 Jan; 229(1):14-29.
Score: 0.218
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Martinson WD, McLennan R, Teddy JM, McKinney MC, Davidson LA, Baker RE, Byrne HM, Kulesa PM, Maini PK. Dynamic fibronectin assembly and remodeling by leader neural crest cells prevents jamming in collective cell migration. Elife. 2023 04 19; 12.
Score: 0.208
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Kulesa PM, Kasemeier-Kulesa JC, Morrison JA, McLennan R, McKinney MC, Bailey C. Modelling Cell Invasion: A Review of What JD Murray and the Embryo Can Teach Us. Bull Math Biol. 2021 02 17; 83(4):26.
Score: 0.179
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Kulesa P, Bronner-Fraser M, Fraser S. In ovo time-lapse analysis after dorsal neural tube ablation shows rerouting of chick hindbrain neural crest. Development. 2000 Jul; 127(13):2843-52.
Score: 0.171
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Kulesa PM, Fraser SE. In ovo time-lapse analysis of chick hindbrain neural crest cell migration shows cell interactions during migration to the branchial arches. Development. 2000 Mar; 127(6):1161-72.
Score: 0.167
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Giniunaite R, McLennan R, McKinney MC, Baker RE, Kulesa PM, Maini PK. An interdisciplinary approach to investigate collective cell migration in neural crest. Dev Dyn. 2020 03; 249(3):270-280.
Score: 0.164
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Giniunaite R, Baker RE, Kulesa PM, Maini PK. Modelling collective cell migration: neural crest as a model paradigm. J Math Biol. 2020 01; 80(1-2):481-504.
Score: 0.162
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Kulesa PM, Fraser SE. Neural crest cell dynamics revealed by time-lapse video microscopy of whole embryo chick explant cultures. Dev Biol. 1998 Dec 15; 204(2):327-44.
Score: 0.154
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Kasemeier-Kulesa JC, Kulesa PM. The convergent roles of CD271/p75 in neural crest-derived melanoma plasticity. Dev Biol. 2018 12 01; 444 Suppl 1:S352-S355.
Score: 0.147
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Schumacher LJ, Kulesa PM, McLennan R, Baker RE, Maini PK. Multidisciplinary approaches to understanding collective cell migration in developmental biology. Open Biol. 2016 06; 6(6).
Score: 0.129
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Bailey CM, Kulesa PM. Dynamic interactions between cancer cells and the embryonic microenvironment regulate cell invasion and reveal EphB6 as a metastasis suppressor. Mol Cancer Res. 2014 Sep; 12(9):1303-13.
Score: 0.112
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McLennan R, Dyson L, Prather KW, Morrison JA, Baker RE, Maini PK, Kulesa PM. Multiscale mechanisms of cell migration during development: theory and experiment. Development. 2012 Aug; 139(16):2935-44.
Score: 0.098
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Wynn ML, Kulesa PM, Schnell S. Computational modelling of cell chain migration reveals mechanisms that sustain follow-the-leader behaviour. J R Soc Interface. 2012 Jul 07; 9(72):1576-88.
Score: 0.095
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Kulesa PM, Kasemeier-Kulesa JC, Teddy JM, Margaryan NV, Seftor EA, Seftor RE, Hendrix MJ. Reprogramming metastatic melanoma cells to assume a neural crest cell-like phenotype in an embryonic microenvironment. Proc Natl Acad Sci U S A. 2006 Mar 07; 103(10):3752-7.
Score: 0.063
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Kasemeier-Kulesa JC, Kulesa PM, Lefcort F. Imaging neural crest cell dynamics during formation of dorsal root ganglia and sympathetic ganglia. Development. 2005 Jan; 132(2):235-45.
Score: 0.058
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Kasemeier-Kulesa JC, McLennan R, Romine MH, Kulesa PM, Lefcort F. CXCR4 controls ventral migration of sympathetic precursor cells. J Neurosci. 2010 Sep 29; 30(39):13078-88.
Score: 0.022
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Hendrix MJ, Seftor EA, Seftor RE, Kasemeier-Kulesa J, Kulesa PM, Postovit LM. Reprogramming metastatic tumour cells with embryonic microenvironments. Nat Rev Cancer. 2007 Apr; 7(4):246-55.
Score: 0.017
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Connection Strength
The connection strength for concepts is the sum of the scores for each matching publication.
Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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