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N Hedin

Publications and source records attributed to N Hedin.

2 recordsLinked to original sources

Lead extraction. Indications and techniques.

Each of the extraction techniques and their ancillary tools was reported as used successfully; however, until now, no technique has been successful when used in more than a few isolated instances. The technique for intravascular countertraction and the associated tools described in this paper were devised and selected in an attempt to develop one technique to be used on all patients, with all types of leads, and with a very low complication rate. Its versatility permitted single or multiple lead extractions combined with the precision of selecting and extracting a specific lead. In our experience, as well as the experience of others, the techniques described in this paper have proved to be superior by minimizing the inherent risk and morbidity, allowing us to expand the indications for lead removal beyond septicemia and free-floating leads, to include infection, abandonment of pockets, and replacement of malfunctioning or fractured leads. Intravascular countertraction was a consistently safe and efficacious method of removing transvenous pacemaker leads regardless of the duration of the implant, thus permitting extractions in patients not considered candidates for a more extensive surgical procedure. Intravascular countertraction encompasses surgical and fluoroscopic techniques possessed by most physicians experienced in pacemaker and automatic implantable cardioverter defibrillator implants. However, there is a learning curve, predicating caution for the inexperienced physician. In addition, advanced surgical skills may be needed in handling associated conditions such as debridement and primary closure of chronically inflamed tissues, especially in submuscular pockets and sinus tracts in the neck. Although the potential for a cardiovascular complication is small, it does exist, and cardiovascular surgical backup is a recommended precaution.

Cardiopulmonary Bypass

Intravascular techniques for extraction of permanent pacemaker leads.

Intravascular techniques were used to extract 226 leads from 124 patients. Indications for lead extraction were life-threatening septicemia (30%), complications of free-floating leads (2%), abandonment of pockets (40%), and replacement of malfunctioning leads (28%). Extraction tools included flexible, telescoping sheaths advanced over the lead to dilate scar tissue and apply countertraction, deflection catheters, and wire basket snares. Countertraction is defined as the direct force of traction on the lead countered by the circumference of an extraction sheath. One hundred sixty-four leads were extracted through the superior vena cava by advancing the sheaths over the lead to the myocardial wall. Most of these leads passed through the subclavian vein. An approach through the inferior vena cava was used for the remaining 62 leads. The countertraction sheaths were passed from the femoral vein into the right atrium. A maneuvering catheter and an extracting snare were placed inside the sheaths. The lead was positioned by the maneuvering catheter, entangled in the extracting snare, and the sheaths advanced over the snare and lead to the myocardium. An atriotomy by means of a limited surgical approach was required to free one lead. One infected lead broke 5 cm from the electrode and was removed through a median sternotomy, ventriculotomy, and retrograde extraction. All patients had unremarkable recoveries. Intravascular countertraction techniques proved to be a viable alternative, minimizing the risks and morbidity of lead removal.

Adolescent