[1] Vinga S, Almeida J. Alignmentfree sequence comparisona review[J]. Bioinformatics, 2003, 19(4): 513-523.
[2] Hamori E, Ruskin J. H curves, a novel method of representation of nucleotide series especially suited for long DNA sequences[J]. Journal of Biological Chemistry, 1983, 258(2): 1318-1327.
[3] Zhang C T, Zhang R. Analysis of distribution of bases in the coding sequences by a diagrammatic technique[J]. Nucleic Acids Research, 1991, 19(22): 6313-6317.
[4] Zhang R, Zhang C T. Z curves, an intuitive tool for visualizing and analyzing the DNA sequences[J]. Biological Structure Dynamics, 1994, 11(4): 767-782.
[5] Nandy A. A new graphical representation and analysis of DNA sequence structure: I. Methodology and application to globin genes[J]. Current Science, 1994, 66: 309-314.
[6] Randic M, Vracko M, Nandy A, et al. On 3D graphical representation of DNA primary sequences and their numerical characterization[J]. Journal of Chemical Information and Computer Sciences, 2000, 40(5): 1235-1244.
[7] Zhang Y, Liao B, Ding K. On 2D graphical representation of DNA sequence of nondegeneracy[J]. Chemical Physics Letters, 2005, 411(1): 28-32.
[8] Zhang Y, Liao B, Ding K. On 3D Dcurves of DNA sequences[J]. Molecular Simulation, 2006, 32(1): 29-34.
[9] Jeffrey H J. Chaos game visualization of sequences[J]. Computers and Graphics, 1992, 16(1): 25-33.
[10] Wu D, Roberge J, Cork D J, et al. Computer visualization of long genomic sequences[C]. IEEE Conference on Visualization, 1993: 308-315.
[1]朱正阳,贺平安.基于密码子特征的蛋白质序列图形表示[J].浙江理工大学学报,2018,39-40(自科4):474.
ZHU Zhengyang,HE Pingan.Graphical representation of protein sequences based on codon[J].Journal of Zhejiang Sci-Tech University,2018,39-40(自科二):474.