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D Sokol

Publications and source records attributed to D Sokol.

5 recordsLinked to original sources

An algorithm for approximate tandem repeats.

A perfect single tandem repeat is defined as a nonempty string that can be divided into two identical substrings, e.g., abcabc. An approximate single tandem repeat is one in which the substrings are similar, but not identical, e.g., abcdaacd. In this paper we consider two criterions of similarity: the Hamming distance (k mismatches) and the edit distance (k differences). For a string S of length n and an integer k our algorithm reports all locally optimal approximate repeats, r = umacro û, for which the Hamming distance of umacro and û is at most k, in O(nk log (n/k)) time, or all those for which the edit distance of umacro and û is at most k, in O(nk log k log (n/k)) time. This paper concentrates on a more general type of repeat called multiple tandem repeats. A multiple tandem repeat in a sequence S is a (periodic) substring r of S of the form r = u(a)u', where u is a prefix of r and u' is a prefix of u. An approximate multiple tandem repeat is a multiple repeat with errors; the repeated subsequences are similar but not identical. We precisely define approximate multiple repeats, and present an algorithm that finds all repeats that concur with our definition. The time complexity of the algorithm, when searching for repeats with up to k errors in a string S of length n, is O(nka log (n/k)) where a is the maximum number of periods in any reported repeat. We present some experimental results concerning the performance and sensitivity of our algorithm. The problem of finding repeats within a string is a computational problem with important applications in the field of molecular biology. Both exact and inexact repeats occur frequently in the genome, and certain repeats occurring in the genome are known to be related to diseases in the human.

Algorithms↗

In vitro immunoglobulin response of fetal B-cells is influenced by perinatal infections and antibiotic treatment: a study in preterm infants.

UNLABELLED: The aim of our study was to analyse the influence of perinatal infections and administration of antibiotics on B-cell activity in blood cell cultures of preterm infants. We studied spontaneous and Escherichia coli induced immunoglobulin (Ig) secretion in 148 infants of 24 to 36 weeks of gestation: 53 healthy infants (Group I), 40 healthy infants receiving prophylactically antibiotics (Group II), 14 infants with intra-uterine infection (Group III) and 41 with nosocomial infection (Group IV). Spontaneous Ig secretion was significantly lower in neonates with intra-uterine infection (Group III) than in healthy infants of Group I. Nosocomial infections in Group IV increased spontaneous Ig synthesis, but only in the first days after birth. E. coli stimulation of peripheral blood mononuclear cells significantly increased Ig synthesis in healthy infants of Group I, whereas induced minimal Ig production in infected infants of Groups III and IV. Antibiotics given as prevention to Group II decreased Ig production in cell cultures as compared to healthy infants (Group I). CONCLUSION: The results indicate that perinatal infections and administration of antibiotics depress immunoglobulin secretion in cell cultures. We suggest that in vivo B-cell activity in infected preterm infants, and infants prophylactically receiving antibiotics, could also be depressed and result in decreased immunoglobulin production in these infants.

Antibiotic Prophylaxis↗