CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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100%; open Kanatani, K., & Chou, T.-C. (1989) Find in CUMINCAD Shape from Texture: General Principle , Artificial Intelligence, 38(1), 1-48. Available at: https://doi.org/1.116/4-372(89)966-

50%; open Chase, S (1989) Find in CUMINCAD Shapes and shape grammars: from mathematical model to computer implementation , Environment and Planning B: Planning and Design 16(2), pp. 215-242

50%; open Chase, S. C. (1989) Find in CUMINCAD Shape and shape grammar - from mathematical model to computer implementation , Environment and Planning B: Planning and Design, 16, pp. 215–242

50%; open Chase, S. (1989) Find in CUMINCAD Shapes and Shape Grammars: from mathematical model to computer implementation , Environment and Planning B: Planning and Design, v16, pp. 216-242

50%; open Chase, S. (1989) Find in CUMINCAD Shapes and Shape Grammars: from mathematical model to computer implementation , Environment and Planning B: Planning and Design, v16, pp. 216-242

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and shape grammars: from mathematical model to computerimplementation , Environment and Planning B: Planning and Design 16, pp. 215-242

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and Shape Grammars: from Mathematical Model to Computer Implementation , Environment and Planning B: Planning and Design, 16: 215-242

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and shape grammars : from mathematical model to computer implementation , Planning and Design 16(2):215-241

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and Shape Grammars: From Mathematical Model to Computer Implementation , Environment and Planning B: Planning and Design 16 pp. 215-242

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and shape grammars: from mathematical model to computer implementation , Environment and planning B: planning & design, 16, 215–42

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and shape grammars: from mathematical model to computer implementation , Environment and Planning B: Planning and Design 16:2 215-242

50%; open Chase, S.C. (1989) Find in CUMINCAD Shapes and shape grammars: from mathematical mode to computer implementation , Planning and Design 162, 215-241

50%; open Chase, SC (1989) Find in CUMINCAD Shape and shape grammars: from mathematical model to computer implementation , Environment and Planning B: Planning and Design, 16, pp. 215-242

50%; open Chose, S.C. (1989) Find in CUMINCAD Shapes and Shape Grammars: From Mathematical Model to Computer Implementation , Environment and Planning B: Planning and Design, 16(2), 215-242

50%; open Blake, A., Bulthoff, H. H., & Sheinberg, D. (1993) Find in CUMINCAD Shape from Texture: Ideal Observers and Human Psychophysics , Vision Research, 33(12), 1723-1737. Available at: https://doi.org/1.116/42-6989(93)937-w

50%; open Clerc, M., & Mallat, S. (2002) Find in CUMINCAD The Texture Gradient Equation for Recovering Shape from Texture , IEEE Transactions on Pattern Analysis and Machine Intelligence, 24(4), 536-549. Available at: https://doi.org/1.119/34.99356

50%; open Grasl T and Economou A (2018) Find in CUMINCAD From Shapes to Topologies and Back: An Introduction to a General Parametric Shape Grammar Interpreter, Artificial Intelligence for Engineering Design , Anal Manufacturing 2018; 32(2): 208–224, DOI: 10.1017/S0890060417000506.

50%; open Grasl, T and Economou, A (2018) Find in CUMINCAD From shapes to topologies and back: an introduction to a general parametric shape grammar interpreter , EDAM, 32, pp. 208-24

50%; open Grasl, T and Economou, A (2018) Find in CUMINCAD From shapes to topologies and back: an introduction to a general parametric shape grammar interpreter , Artificial Intelligence for Engineering Design, Analysis and Manufacturing, 32(2), p. 208-224

50%; open Todd, James T. and Lore Thaler. (2010) Find in CUMINCAD The perception of 3D shape from texture based on directional width gradients , Journal of Vision 10(5):17, 1-13

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