Key result
Serial measurements of lead impedance significantly increased after electrode fixation in the ventricle (median increase 197 ohms unipolar; P=0.0001) and atrium (47 ohms unipolar; P=0.0069).
Why the study?
Do serial measurements of helical screw pacemaker lead impedance confirm appropriate electrode fixation in patients undergoing pacemaker implantation?
Observational (n=31)
Do serial measurements of helical screw pacemaker lead impedance confirm appropriate electrode fixation in patients undergoing pacemaker implantation?
p-value: p=0.0001
Comparing serial measurements of lead impedance before and after electrode fixation is a valid electrical method of confirming appropriate fixation of helical screw electrodes.
May support serial impedance for real-time fixation confirmation; leaves open prospective validation before routine adoption.
The purpose of this study was to determine whether serial measurements of helical screw pacemaker lead impedance could reliably confirm electrode fixation in the right atrium and right ventricle. Fixation is generally assessed fluoroscopically, which can be misleading because the myocardium is radiolucent. Alternatively, because the electrical conductivity of blood is greater than that of myocardium, serial measurements of the lead impedance might be expected to show an impedance increase with appropriate fixation of the pacemaker electrode when the electrode becomes embedded in myocardial tissue. Impedance measurements were made during the placement of 23 atrial and 28 ventricular active fixation electrodes in 31 consecutive patients. Impedance measurements were recorded in unipolar and bipolar electrode configurations with the electrode free floating in the chamber, unfixed (with exposed screws) but touching the endocardial surface, and after fixation. No significant impedance differences were found between free-floating and unfixed electrode positions. With fixation, the lead impedance increased significantly in the ventricle (P = 0.0001, unipolar and bipolar) and the atrium (P = 0.0069 unipolar and 0.0052 bipolar). Typical increases, reflected by median values, were 197 ohms unipolar and 203 ohms bipolar in the ventricle and 47 ohms unipolar and 53 ohms bipolar in the atrium for electrodes with permanently exposed or retractable screw designs. Comparing serial measurements of lead impedance before and after electrode fixation is a valid electrical method of confirming appropriate fixation of helical screw electrodes.
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Roelke et al. (2000) conducted an observational in Pacemaker implantation (n=31). Serial measurements of lead impedance vs. Free-floating and unfixed electrode positions was evaluated on Lead impedance increase after fixation (p=0.0001). Serial measurements of lead impedance significantly increased after electrode fixation in the ventricle (median increase 197 ohms unipolar; P=0.0001) and atrium (47 ohms unipolar; P=0.0069).
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