Back to Long-Range Correlations in DNA
References (* = papers originally used by Asim)
J. Barral, A. Hasmy, J. Jiménez and A. Marcano, Nonlinear modeling technique for the analysis of DNA chains, Physical Review E 61, 1812-1815 (2000).
P. Bernaola-Galván, J. L. Oliver and R. Román-Roldán, Decomposition of DNA Sequence Complexity, Physical Review Letters 83, 3336-3339 (1999).
M. de Sousa Vieira, Statistics of DNA sequences: A low-frequency analysis, Physical Review E 60, 5932-5937 (1999).
R. Román-Roldán, P. Bernaola-Galvánand J. L. Oliver, Sequence Compositional Complexity of DNA through an Entropic Segmentation Method, Physical Review Letters 80, 1344-1347 (1998).
P. Allegrini, M. Buiatti, P. Grigolini and B. J. West, Non-Gaussian statistics of anomalous diffusion: The DNA sequences of prokaryotes, Physical Review E 58, 3640-3648 (1998).
X. Lu, Z. Sun, H. Chen and Y. Li, Characterizing self-similarity in bacteria DNA sequences, Physical Review E 58, 3578-3584 (1998).
G. Abramson, P. A. Alemany and H. A. Cerdeira, Noisy Lévy walk analog of two-dimensional DNA walks for chromosomes of S. cerevisiae, Physical Review E 58, 914-918 (1998).
P. Allegrini, M. Buiatti, P. Grigolini and B. J. West, Fractional Brownian motion as a nonstationary process: An alternative paradigm for DNA sequences, Physical Review E 57, 4558-4567 (1998).
N. V. Dokholyan, S. V. Buldyrev, S. Havlin and H. E. Stanley, Distribution of Base Pair Repeats in Coding and Noncoding DNA Sequences, Physical Review Letters 79, 5182-5185 (1997).
H. Herzel and I. Große, Correlations in DNA sequences: The role of protein coding segments, Physical Review E 55, 800-810 (1997).
P. Bernaola-Galván, R. Román-Roldán and J. L. Oliver, Compositional segmentation and long-range fractal correlations in DNA sequences , Physical Review E 53, 5181-5189 (1996). *
M. Ya. Azbel, Universality in a DNA statistical structure, Physical Review Letters 75, 168-171 (1995).
A. Arneodo, E. Bacry, P. V. Graves, and J. F. Muzy, Characterizing long-range correlations in DNA sequences from wavelet analysis, Physical Review Letters 74, 3293-3296 (1995).
P. Allegrini, M. Barbi, P. Grigolini, and B. J. West, Dynamical model for DNA sequences, Physical Review E 52, 5281-5296 (1995).
S. V. Buldyrev, A. L. Goldberger, S. Havlin, R. N. Mantegna, M. E. Matsa, C.-K. Peng, M. Simons and H. E. Stanley, Long-range correlation properties of coding and noncoding DNA sequences: GenBank analysis, Physical Review E 51, 5084-5091 (1995). *
R. N. Mantegna, S. V. Buldyrev, A. L. Goldberger, S. Havlin, C.-K. Peng, M. Simons and H. E. Stanley, Linguistic features of noncoding DNA sequences, Physical Review Letters 73, 3169-3172 (1994).
S. V. Buldyrev, A. L. Goldberger, S. Havlin, C.-K. Peng, M. Simons, F. Sciortino and H. E. Stanley, Long-range fractal correlations in DNA, Physical Review Letters 71, 1776 (1993). (Comment on the letter by R. F. Voss in PRL, 68, 3805)
S. V. Buldyrev, A. L. Goldberger, S. Havlin, C.-K. Peng, M. Simons and H. E. Stanley, Generalized Lévy-walk model for DNA nucleotide sequences, Physical Review E 47, 4514-4523 (1993). *
R. Voss, Evolution of Long-Range Fractal Correlations and 1/f Noise in DNA Base Sequences, Physical Review Letters 68, 3805-3808 (1992). *
TO ADD:
C. K. Peng et al, Long-range correlations in nucleotide sequences'', Nature 356, 168 (1992). *
W. Li et al, Europhysics Letters 17, 655 (1992). *
W. Li et al, Physica D 75, 3293 (1994).
S. Karlin and V. Brendal, Science 259, 677 (1993).