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E Jarvis

Publications and source records attributed to E Jarvis.

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Sequences and studies of bacteriophage T4 rII mutants.

We have sequenced more than 80 mutants of the bacteriophage T4 rIIA and rIIB genes. These include deletions about whose origin we have speculated, mutations affecting the rIIB promoters, various pseudo-revertants of the rII- phenotype, including mutations that bring about the reinitiation of translation following termination, mutations that affect regulation of rIIB translation by regA, the toxic minute plaquing mutants FC237 and FC238 and their detoxifiers, and many more of the classic frameshifts from the Cambridge collection. These mutants have been sequenced using dideoxy-mediated chain termination by either Escherichia coli DNA polymerase using single-stranded DNA as a template or by avian retroviral reverse transcriptase using mRNA or DNA as the template molecule. We list the sequence changes of the mutants with pertinent historic and phenotypic data. The mutants that facilitate translation reinitiation are discussed, and we discuss a model that could account for the generation of many of the mutations.

Base Sequence

Defibrillation with the sequential pulse technique: reproducibility with repeated shocks.

The development of the automatic implantable defibrillator has created the need to assess the effects of interventions on defibrillation success. However, first it is important to determine the spontaneous variability of defibrillation threshold (DFT) over time. We repeatedly determined DFT over a maximum of 2-1/2 hours in open-chested, halothane-anesthetized pigs. Ten seconds after induction of fibrillation, defibrillation was attempted by passing a sequential pulse shock through an indwelling catheter and patch electrodes. Ninety-seven fibrillation episodes (FEs) were induced in eight pigs, with a maximum of 30 shocks in an animal. DFT remained stable and fitted a flat least-squares regression equation (y = 6.35 + 0.0055x, where x is the ventricular FE number and y is the DFT, r = 0.0115, p = NS). The mean DFT over time for the eight animals was 7.6 +/- 1.9 J (range 4.8 to 16.3 J). The inter-animal variability for DFT was 3.7 J and the mean intra-animal DFT variability over time was 3.6 +/- 2.3 J (range 0 to 6.8 J). We conclude that, using our methodology, DFT is reproducible and consistent over at least 2 hours. This model provides the basis to assess the effects of acute interventions on the ability to defibrillate.

Anesthesia, Inhalation

In right good company.

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