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Richard Gordon
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2020 – today
- 2024
- [j30]Bradly Alicea, Suroush Bastani, Natalie K. Gordon, Susan Crawford-Young, Richard Gordon:
The Molecular Basis of Differentiation Wave Activity in Embryogenesis. Biosyst. 243: 105272 (2024) - [j29]Richard Gordon:
The chromolinker hypothesis: Are eukaryotic genomes also circular? Biosyst. 244: 105280 (2024) - 2023
- [j28]Abir U. Igamberdiev, Richard Gordon:
Macroevolution, differentiation trees, and the growth of coding systems. Biosyst. 234: 105044 (2023) - 2022
- [j27]Bradly Alicea, Richard Gordon, Thomas E. Portegys:
Data-Theoretical Synthesis of the Early Developmental Process. Neuroinformatics 20(1): 7-23 (2022) - [c7]Richard Gordon, Donald K. Grimm, Fan Bai:
Crowd-sensing driving environments using headway dynamics (demo paper). SIGSPATIAL/GIS 2022: 101:1-101:4 - 2021
- [j26]Richard Gordon:
Are we on the cusp of a new paradigm for biology? The illogic of molecular developmental biology versus Janus-faced control of embryogenesis via differentiation waves. Biosyst. 203: 104367 (2021) - [j25]Richard Gordon, Robert Stone:
A short tutorial on the Janus-faced logic of differentiation waves and differentiation trees and their evolution. Biosyst. 205: 104414 (2021) - [j24]George E. Mikhailovsky, Richard Gordon:
LUCA to LECA, the Lucacene: A model for the gigayear delay from the first prokaryote to eukaryogenesis. Biosyst. 205: 104415 (2021) - [j23]George E. Mikhailovsky, Richard Gordon, Abir U. Igamberdiev:
Editorial: Symbiogenesis and progressive evolution. Biosyst. 206: 104429 (2021) - [j22]Luigia Santella, Richard Gordon, Zhan Chen, Jack A. Tuszynski:
Editorial: Waves in fertilization, cell division and embryogenesis. Biosyst. 210: 104560 (2021) - 2020
- [j21]George E. Mikhailovsky, Richard Gordon:
Shuffling type of biological evolution based on horizontal gene transfer and the biosphere gene pool hypothesis. Biosyst. 193-194: 104131 (2020) - [j20]Natalie K. Gordon, Zhan Chen, Richard Gordon, Yuting Zou:
French flag gradients and Turing reaction-diffusion versus differentiation waves as models of morphogenesis. Biosyst. 196: 104169 (2020)
2010 – 2019
- 2019
- [j19]Richard Gordon, Natalie K. Gordon:
The differentiation code. Biosyst. 184 (2019) - 2018
- [j18]Abir U. Igamberdiev, Richard Gordon, Bradly Alicea, Vladimir G. Cherdantsev:
Computational, theoretical, and experimental approaches to morphogenesis. Biosyst. 173: 1-3 (2018) - [j17]Richard Gordon:
The publications of embryologist Lev V. Beloussov. Biosyst. 173: 4-6 (2018) - [j16]Lev V. Beloussov, Richard Gordon:
Two ways for interpreting Driesch's law: "Positional information" and morphogenetic fields. Biosyst. 173: 7-9 (2018) - [j15]Susan J. Crawford-Young, Smat Dittapongpitch, Richard Gordon, Kyle I. S. Harrington:
Acquisition and reconstruction of 4D surfaces of axolotl embryos with the flipping stage robotic microscope. Biosyst. 173: 214-220 (2018) - [j14]Bradly Alicea, Richard Gordon:
Cell differentiation processes as spatial networks: Identifying four-dimensional structure in embryogenesis. Biosyst. 173: 235-246 (2018) - [j13]Bradly Alicea, Thomas E. Portegys, Diana Gordon, Richard Gordon:
Morphogenetic processes as data: Quantitative structure in the Drosophila eye imaginal disc. Biosyst. 173: 256-265 (2018) - 2016
- [p1]Richard Gordon:
Walking the Tightrope: The Dilemma of Hierarchical Instabilities in Turing's Morphogenesis. The Once and Future Turing 2016: 144-159 - 2014
- [j12]Bradly Alicea, Richard Gordon:
Toy models for macroevolutionary patterns and trends. Biosyst. 123: 54-66 (2014) - 2012
- [j11]Abir U. Igamberdiev, Lev V. Beloussov, Richard Gordon:
Editorial. Biosyst. 109(3): 241-242 (2012) - [j10]Jack A. Tuszynski, Richard Gordon:
A mean field Ising model for cortical rotation in amphibian one-cell stage embryos. Biosyst. 109(3): 381-389 (2012) - [j9]Kai Lu, Tong Cao, Richard Gordon:
A cell state splitter and differentiation wave working-model for embryonic stem cell development and somatic cell epigenetic reprogramming. Biosyst. 109(3): 390-396 (2012) - [j8]Comron Nouri, Jack A. Tuszynski, Mark W. Wiebe, Richard Gordon:
Simulation of the effects of microtubules in the cortical rotation of amphibian embryos in normal and zero gravity. Biosyst. 109(3): 444-449 (2012) - 2010
- [c6]Bruce Damer, Peter Newman, Richard Gordon, Tom Barbalet, David Deamer, Ryan Norkus:
The EvoGrid - A Framework for Distributed Artificial Chemistry Cameo Simulations Supporting Computational Origins of Life Endeavors. ALIFE 2010: 73-79
2000 – 2009
- 2006
- [c5]Isabelle P. F. Harouche, Cyrus Shafai, Richard Gordon:
Design and Simulation of a Microtweezers using a Controlled Displacement Comb Drive. CCECE 2006: 341-343 - 2003
- [c4]Robert A. Amar, Steven Dow, Richard Gordon, Muhammad Raafay Hamid, Chad Sellers:
Mobile ADVICE: an accessible device for visually impaired capability enhancement. CHI Extended Abstracts 2003: 918-919 - [c3]Cameron Melvin, Parimala Thulasiraman, Richard Gordon:
Parallel Algebraic Reconstruction Technique for Computed Tomography. PDPTA 2003: 532-536 - 2001
- [j7]C. Cristofre Martin, Richard Gordon:
The Evolution of Perception. Cybern. Syst. 32(3): 393-409 (2001)
1990 – 1999
- 1994
- [j6]Richard Gordon:
Evolution Escapes Rugged Fitness Landscapes by Gene Or Genome Doubling: the Blessing of Higher Dimensionality. Comput. Chem. 18(3): 325-331 (1994) - [j5]Natalie K. Björklund, Richard Gordon:
Surface Contraction and Expansion Waves Correlated with Differentiation in Axolotl Embryos - I. Prolegomenon and Differentiation During Invagination Through the Blastopore, As Shown by the Fate Map. Comput. Chem. 18(3): 333-345 (1994) - 1991
- [j4]Xiaohua Zhou, Richard Gordon:
Generation of noise in binary images. CVGIP Graph. Model. Image Process. 53(5): 476-478 (1991)
1980 – 1989
- 1987
- [j3]George Harauz, Richard Gordon, Marin van Heel:
Oblique sampling of projections for direct three-dimensional reconstruction. Comput. Vis. Graph. Image Process. 38(1): 81-89 (1987) - [c2]Richard Gordon:
What are those students really doing? SIGUCCS 1987: 493-500 - 1985
- [j2]Kirby A. Jaman, Richard Gordon, Rangaraj M. Rangayyan:
Display of 3D anisotropic images from limited-view computed tomograms. Comput. Vis. Graph. Image Process. 30(3): 345-361 (1985) - [c1]Richard Gordon:
How to hatch a handbook: the development of the VM/CMS Handbook. SIGUCCS 1985: 55-67
1970 – 1979
- 1971
- [j1]Richard Gordon, Gabor T. Herman:
Reconstruction of Pictures from Their Projections. Commun. ACM 14(12): 759-768 (1971)
Coauthor Index
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