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B Phibbs

Publications and source records attributed to B Phibbs.

6 recordsLinked to original sources

One heart, two bodies: insight from the transplanted heart and its new electrocardiogram.

Cardiac transplantation provides a unique opportunity to record the electric field generated by a human heart in a new somatic environment. By examining pre- and posttransplantation electrocardiograms (ECGs), it is possible to address questions on the effect of rotation of the heart on its long axis on the surface ECG, the effect of thoracic anatomy on ECG voltage and predisposing factors for conduction defects observed after transplant surgery. To examine these questions, we reviewed a series of 35 matched donor and recipient ECGs. There were no differences in the mean height of the donors and recipients, but age, weight and body surface area were higher in the recipients (p less than 0.025). We found no significant differences in the mean heart rate or precordial voltage but the PR and QT intervals were shorter (p less than 0.025), and the precordial transitional zone was more to the left after transplantation (p less than 0.0005). New evidence of right bundle branch delay was found in 11 recipients and this was not related to pretransplantation hemodynamic factors or the period of ischemic arrest. Thus, there is indeed an anatomic basis for the ECG determination of clockwise rotation of the heart when the precordial transition zone is to the left. Age and body habitus, per se, do not appear to affect precordial voltage and evidence of right bundle delay in the transplant recipient appears to be related to the altered position of the heart and not to injury or changes in right ventricular hemodynamics.

Adolescent

The differential diagnosis of bigeminal rhythms.

Bigeminal rhythms may arise from ectopic firing or from failure of impulse generation or conduction. In atrial bigeminy a premature atrial beat beat follows each sinus beat. If the PAC is not conducted bradycardia may result; if it is symptomatic treatment with digitalis or quinidine is indicated. Junctional bigeminy may be coupled to sinus beats or may accompany atrial fibrillation. Ventricular bigeminy, the most common type of bigeminy involving ectopic firing, usually requires treatment with suppressive drugs. Concealed bigeminy manifested as PVCs separated by an odd number of sinus beats has the same clinical implications as ventricular bigeminy. Re-entrant premature beats may also be triggered by an artificial ventricular pacemaker. Bigeminy associated with delayed impulse conduction is most often caused by a 3:2 Wenckebach block at the A-V junction but the block may also be at the S-A node or around an ectopic pacemaker. Conduction or production delay may produce "escape-capture" bigeminy in which successive beats are produced by the dominant pacemaker and an alternate one. Implantation of an artificial pacemaker may be appropriate. It is important for the observer to be able to identify the mechanism of any bigeminal rhythm since crucial clinical decisions may attend such identification.

Arrhythmias, Cardiac