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References

1
Johan Åqvist. A simple way to calculate the axis of an tex2html_wrap_inline6854-helix. Computers and Chemistry, 10(2):97-99, 1986.

2
David J. Bacon and Wayne F. Anderson. A fast algorithm for rendering space-filling molecule pictures. J. Mol. Graphics, 6:219-220, 1988.

3
Jon A. Christopher, Rosmarie Swanson, and Thomas O. Baldwin. Algorithms for finding the axis of a helix: fast rotational and parametric least-squares methods. Computers & Chem., 20:339-345, 1996.

4
Stephen V. Evans. SETOR: hardware lighted three-dimensional solid model representations of macromolecules. J. Mol. Graphics, 11:134-138, 1993.

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Wolfgang Kabsch and Chris Sander. Dictionary of protein secondary structure: pattern recognition of hydrogen-bonded and geometrical figures. Biopolymers, 22:2577-2637, 1983.

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Peter C. Kahn. Defining the axis of a helix. Computers & Chemistry, 13:185-189, 1989.

7
Per J. Kraulis. MOLSCRIPT: a program to produce both detailed and schematic plots of protein structures. Journal of Applied Crystallography, 24:946-950, 1991.

8
A. L. Mackay. Quaternion transformation of molecular orientation. Acta. Cryst., A40:165-166, 1984.

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Ethan A. Merritt and Michael E. P. Murphy. Raster3d version 2.0, a program for photorealistic molecular graphics. Acta Cryst., D50:869-873, 1994.

10
Jackie Neider, Tom Davis, and Mason Woo. The OpenGL Programming Guide: the Official Guide to Learning OpenGL. Addison-Wesley Publishing Co., Reading, MA, 1993.

11
Anthony Nicholls, Kim Sharp, and Barry Honig. Protein folding and association: insights from the interfacial and thermodynamic properties of hydrocarbons. Proteins: Struct. Func. Gen., 11:281-296, 1991.

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A. Shrake and J.A. Rupley. Environment and exposure to solvent of protein atoms: lysozyme and insulin. J. Mol. Biol., 79:351-357, 1973.

Appendices:


Jon Christopher
Tue Sep 14 16:44:48 CDT 1999