Megan T. Valentine, Ph.D.

University of California, Santa Barbara, Santa Barbara, CA, United States 
 2003 Harvard University, Cambridge, MA, United States 
condensed matter, colloidal dispersions, rheology
"Megan Valentine"
Mean distance: 21.7
Cross-listing: Physics Tree


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David A. Weitz grad student 2003 Harvard (Physics Tree)
 (Mechanical and microstructural properties of biological materials.)


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Dezhi Yu grad student 2014 UC Santa Barbara (Physics Tree)
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Wilcox JC, Lopez BJ, Campàs O, et al. (2016) Improved calibration of the nonlinear regime of a single-beam gradient optical trap. Optics Letters. 41: 2386-9
Yu D, Feinstein SC, Valentine MT. (2015) Effects of wild type tau and disease-linked tau mutations on microtubule organization and intracellular trafficking. Journal of Biomechanics
Lopez BJ, Valentine MT. (2015) The +TIP coordinating protein EB1 is highly dynamic and diffusive on microtubules, sensitive to GTP analog, ionic strength, and EB1 concentration. Cytoskeleton (Hoboken, N.J.)
Filippidi E, DeMartini DG, Malo de Molina P, et al. (2015) The microscopic network structure of mussel (Mytilus) adhesive plaques. Journal of the Royal Society, Interface / the Royal Society. 12
Lopez BJ, Valentine MT. (2015) Molecular control of stress transmission in the microtubule cytoskeleton. Biochimica Et Biophysica Acta. 1853: 3015-24
Desmond KW, Zacchia NA, Waite JH, et al. (2015) Dynamics of mussel plaque detachment. Soft Matter. 11: 6832-9
Zacchia NA, Valentine MT. (2015) Design and optimization of arrays of neodymium iron boron-based magnets for magnetic tweezers applications. The Review of Scientific Instruments. 86: 053704
Vaca C, Shlomovitz R, Yang Y, et al. (2015) Bond breaking dynamics in semiflexible networks under load. Soft Matter. 11: 4899-911
Lopez BJ, Valentine MT. (2014) Mechanical effects of EB1 on microtubules depend on GTP hydrolysis state and presence of paclitaxel. Cytoskeleton (Hoboken, N.J.). 71: 530-41
Yu D, LaPointe NE, Guzman E, et al. (2014) Tau proteins harboring neurodegeneration-linked mutations impair kinesin translocation in vitro. Journal of Alzheimer's Disease : Jad. 39: 301-14
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