Measuring proteins and voids in proteins

H. Edelsbrunner, M. Facello, P. Fu, J. Liang, in:, IEEE, 1995, pp. 256–264.

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Abstract
Common geometric models for proteins and other molecules are the space filling diagram, the solvent accessible surface, and the molecular surface. We describe software that computes metric properties of these models, including volume and surface area. It also measures voids or empty space enclosed by the protein, and it keeps track of surface area contributions of individual atoms. The software is based on 3-dimensional alpha complexes and on inclusion-exclusion formulas with terms derived from the simplices in this complex.
Publishing Year
Date Published
1995-01-04
Page
256 - 264
Conference
HICSS: Hawaii International Conference on System Sciences
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Edelsbrunner H, Facello M, Fu P, Liang J. Measuring proteins and voids in proteins. In: IEEE; 1995:256-264. doi:10.1109/HICSS.1995.375331
Edelsbrunner, H., Facello, M., Fu, P., & Liang, J. (1995). Measuring proteins and voids in proteins (pp. 256–264). Presented at the HICSS: Hawaii International Conference on System Sciences, IEEE. https://doi.org/10.1109/HICSS.1995.375331
Edelsbrunner, Herbert, Michael Facello, Ping Fu, and Jie Liang. “Measuring Proteins and Voids in Proteins,” 256–64. IEEE, 1995. https://doi.org/10.1109/HICSS.1995.375331.
H. Edelsbrunner, M. Facello, P. Fu, and J. Liang, “Measuring proteins and voids in proteins,” presented at the HICSS: Hawaii International Conference on System Sciences, 1995, pp. 256–264.
Edelsbrunner H, Facello M, Fu P, Liang J. 1995. Measuring proteins and voids in proteins. HICSS: Hawaii International Conference on System Sciences 256–264.
Edelsbrunner, Herbert, et al. Measuring Proteins and Voids in Proteins. IEEE, 1995, pp. 256–64, doi:10.1109/HICSS.1995.375331.

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