Sensitivity and spatial resolution of transvenous leads in implantable cardioverter defibrillator


Abstract:

It has been previously documented that the main features and sensing performance of electrograms (EGMs) recorded in implantable cardioverter defibrillators (ICDs) depend on lead configuration. Although this dependence has been ascribed to differences in lead sensitivity and spatial resolution, the quantification of these two properties on ICD has not yet been attempted. In this paper, an operative framework to study the spatial resolution of ICD transvenous leads is presented. We propose to quantify the spatial resolution of ICD transvenous leads based on a new characterization called lead resolution volume (ResV). We analyzed the sensitivity distribution and the ResV of two unipolar (tipcan and coilcan ) and two bipolar (true or tipring and integrated or tipcoil) ICD transvenous lead configurations. A detailed 3-D model of the human thorax based on the visible human man dataset was used to compute the lead sensitivity and computer simulations of simple cardiac dynamics were used to quantify the ResV. Differences in the sensitivity distribution throughout the ventricular myocardium (VM) were observed for each lead configuration. In our computer model of the human thorax, the ResV was found to comprise 7%, 35%, 45%, and 70% of the VM for true bipolar, integrated bipolar, tipcan unipolar, and coilcan unipolar ICD leads, respectively. Furthermore, our analysis shows that the spatial resolution depends on both lead sensitivity and cardiac dynamics, and therefore, it can vary for different heart rhythms. © 2009 IEEE.

Año de publicación:

2009

Keywords:

  • Transvenous leads
  • Implantable cardioverter defibrillator (ICD)
  • Unipolar lead
  • Resolution volume
  • Lead field
  • Spatial resolution
  • sensitivity
  • Bipolar lead

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Enfermedad cardiovascular

Áreas temáticas:

  • Enfermedades
  • Fisiología humana
  • Cirugía y especialidades médicas afines