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1 d transmission electron microscopy and X-ray small angle scattering.
2 ficant neutron scattering techniques, namely small angle scattering.
3 ic and dynamic light scattering, and neutron small angle scattering.
4 ormidable challenge, particularly when using small-angle scattering.
5 polar couplings (RDCs), chemical shifts, and small-angle scattering.
6 ns, combined with X-ray crystallographic and small-angle scattering analyses, indicate that pH affect
7 es were determined by numerical inversion of small angle scattering and isothermal magnetisation data
10 assembly mechanisms by the X-ray scattering (small-angle scattering and total scattering) of solution
13 ains-determined by X-ray crystallography and small angle scattering-as well as kinetics experiments d
14 diffusion of electron momenta is enabled by small-angle scattering at the surfaces instead of the ro
15 v.wwpdb.org), small angle scattering data by Small Angle Scattering Biological Data Bank SASBDB (sasb
17 d structures by PDB-Dev (pdb-dev.wwpdb.org), small angle scattering data by Small Angle Scattering Bi
19 rr complex is experimentally determined from small angle scattering data to present the first structu
20 idual amino acid side chains, implied by the small angle scattering data, could have significant effe
23 a generally useful tool for the analysis of small-angle scattering data from concentrated macromolec
26 ir ligands; SASBDB, a primary repository for small-angle scattering data of various macromolecular co
27 the VEGF-E/VEGFR-2 ECD complex derived from small-angle scattering data provided evidence for homoty
28 structure at room temperature to explain the small-angle scattering data, as it is consistent with a
29 estoration of soluble protein structure from small-angle scattering data, we construct a general mult
33 Three examples are given of application to small-angle scattering from pressure-induced unfolding o
34 flectivity (XRR) and grazing incidence X-ray small-angle scattering (GISAXS) reveal that unfunctional
36 14 A using a synchrotron X-ray source and a small-angle scattering instrument adapted for single cry
41 can reconstruct the assembled structure from small-angle scattering measurements using the computatio
44 24I, derived using electron microscopy (EM), small-angle scattering (neutron and X-ray), and detailed
46 this respect, experimental information from small-angle scattering of X-ray radiation in solution (S
48 of probing ultrastructure ordering, such as small-angle scattering of X-rays or neutrons, can be app
49 een developed that allows observation of the small angle scattering profile of an integral membrane p
51 However, to date the quantification in the small angle scattering regime is severely limited by the
53 eat spacings (5.0 nm at 55 degrees C) in the small-angle scattering region which first appears at app
61 atial beam modulation, allows for mapping of small-angle scattering signals and hence addressing micr
64 idopsis thaliana; AtCESA1CatD) determined by small-angle scattering techniques and provides the first
65 s, such as nuclear magnetic resonance (NMR), small-angle scattering techniques, and single-molecule F
71 with statistical coil ensemble modeling and small-angle scattering, to analyze the conformational be
72 er solution, the micelle contribution to the small angle scattering vanishes, and the molecular weigh
76 we introduce an imaging method that combines small-angle scattering with tensor tomography to probe n