Biopolymers

2006
Raviv U, Needleman DJ, Safinya CR. Cationic membranes complexed with oppositely charged microtubules: hierarchical self-assembly leading to bio-nanotubes. Journal of Physics: Condensed Matter [Internet]. 2006;18 (28) :S1271. Publisher's Version
2005
Raviv U, Needleman DJ, Li Y, Miller HP, Wilson L, Safinya CR. Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends. Proceedings of the National Academy of Sciences of the United States of America [Internet]. 2005;102 (32) :11167-11172. Publisher's Version
Needleman DJ, Jones JB, Raviv U, Ojeda-Lopez MA, Miller HP, Li Y, Wilson L, Safinya CR. Supramolecular assembly of biological molecules purified from bovine nerve cells: from microtubule bundles and necklaces to neurofilament networks. Journal of Physics: Condensed Matter [Internet]. 2005;17 (45) :S3225. Publisher's Version
Needleman DJ, Ojeda-Lopez MA, Raviv U, Ewert K, Miller HP, Wilson L, Safinya CR. Radial compression of microtubules and the mechanism of action of taxol and associated proteins. Biophysical journal [Internet]. 2005;89 (5) :3410-3423. Publisher's Version
2004
Needleman DJ, Ojeda-Lopez MA, Raviv U, Ewert K, Jones JB, Miller HP, Wilson L, Safinya CR. Synchrotron X-ray diffraction study of microtubules buckling and bundling under osmotic stress: a probe of interprotofilament interactions. Physical review letters [Internet]. 2004;93 (19) :198104. Publisher's Version
Needleman DJ, Ojeda-Lopez MA, Raviv U, Miller HP, Wilson L, Safinya CR. Higher-order assembly of microtubules by counterions: from hexagonal bundles to living necklaces. Proceedings of the National Academy of Sciences of the United States of America [Internet]. 2004;101 (46) :16099-16103. Publisher's Version

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