articleTop 1% cited
Uniqueness of <i>ab initio</i> shape determination in small-angle scattering
Journal of Applied Crystallography · 2003 · Vol. 36(3) · pp. 860–864
В. В. Волков✉(Russian Academy of Sciences)Dmitri I. Svergun
Abstract
Scattering patterns from geometrical bodies with different shapes and anisometry (solid and hollow spheres, cylinders, prisms) are computed and the shapes are reconstructed ab initio using envelope function and bead modelling methods. A procedure is described to analyze multiple solutions provided by bead modeling methods and to estimate stability and reliability of the shape reconstruction. It is demonstrated that flat shapes are more difficult to restore than elongated ones and types of shapes are indicated, which require additional information for reliable shape reconsrtuction from the scattering data.
Geophysical Methods and ApplicationsSeismic Imaging and Inversion TechniquesSynthetic Aperture Radar (SAR) Applications and TechniquesScatteringEnvelope (radar)SPHERESAb initioStability (learning theory)UniquenessMaterials scienceSmall-angle scatteringPhysicsGeometry
Citations
1,948
FWCI
61.15
field-weighted impact
References
3
Percentile
100%
vs. same field & year
Citations per year
Cited by
Self-Assembly Strategies for Integrating Light Harvesting and Charge Separation in Artificial Photosynthetic Systems
Accounts of Chemical Research · 2009 · 1,303 citations
New developments in the<i>ATSAS</i>program package for small-angle scattering data analysis
Journal of Applied Crystallography · 2012 · 1,946 citations
<i>ATSAS 2.8</i>: a comprehensive data analysis suite for small-angle scattering from macromolecular solutions
Journal of Applied Crystallography · 2017 · 1,406 citations
<i>DAMMIF</i>, a program for rapid<i>ab-initio</i>shape determination in small-angle scattering
Journal of Applied Crystallography · 2009 · 2,034 citations
Small‐angle scattering for structural biology—Expanding the frontier while avoiding the pitfalls
Protein Science · 2010 · 429 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
