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Biomedical subjects

J Riazi

Publications and source records attributed to J Riazi.

2 recordsLinked to original sources

Oculocardiac reflex in near miss for sudden infant death syndrome infants.

To gain insight into the role of the vagus nerve in sudden infant death syndrome (SIDS), 180 infants ranging in age from 1 to 66 weeks were examined with respect to cardiac response to ocular compression. There were 35 near-miss infants, 76 normal siblings of SIDS victims, and 69 normal control infants. Asystoles within the control group ranged from 0.3 to 1.8 seconds. Ten of 35 (28%) near-miss infants and 10/76 (13%) siblings had asystoles greater than 2.0 seconds when first tested. When statistically compared, the near-miss infants were significantly different from both the control infants and the siblings (Kruskal-Wallis procedure: P less than .01, and P less than .05, respectively). It is concluded that in the first year of life a significant number of near-miss infants have an exaggerated cardiac response to ocular compression. Furthermore, the presence of prolonged asystoles in certain siblings indicates that vagal hypersensitivity, as manifested by ocular compression, may be, in part, hereditary.

Female↗

dnaT, dominant conditional-lethal mutation affecting DNA replication in Escherichia coli.

Normally, bacteria cease DNA replication in the absence of protein synthesis. A variety of treatments, such as thymine starvation or a shift-up to rich medium, lead to continued DNA replication in the absence of protein synthesis. Mutants are described which always terminate replication under these conditions. These conditional lethal mutants, dnaT1 and dnaT2, contransduce with serB and dnaC. The mutation also affects cell division. All aspects of the mutant phenotype (obligatory termination of replication, temperature sensitivity of DNA replication and growth, and aberrant cell division at permissive growth temperatures) were transdominant to the wild-type phenotype. Episomes carrying the dnaT mutation appeared to be unstable. The existence of such a dominant mutation was predicted by a model of chromosome termination proposed by Kogoma and Lark (J. Mol. Biol. 94:243-256, 1975).

Bacterial Proteins↗