• Title of article

    Effects of Preload, Afterload and Inotropy on Dynamics of Ischemic Segmental Wall Motion

  • Author/Authors

    Stefano Perlini MD، نويسنده , , Theo E. Meyer MBChB، نويسنده , , FCP(SA)، نويسنده , , DPhil، نويسنده , , Pierre Foëx MD، نويسنده , , Dphil، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1997
  • Pages
    10
  • From page
    846
  • To page
    855
  • Abstract
    Objectives. This study sought to explore the separate and combined effects of changes in preload, afterload and contractility on the dynamics of systolic bulging. Background. The extent of ischemic systolic bulging has been shown to be mechanically disadvantageous to left ventricular pump performance. The factors that determine ischemic segmental wall motion have not been systematically studied. Methods. Fourteen beagles were instrumented with sonomicrometers, micromanometer pressure gauges and balloon in the inferior ven cava. Regional function was evaluated before and after 90 s of proximal left circumflex coronary artery occlusion. Occlusions were repeated after increasing systolic pressure by 5 to 10 (afterload I) and 15 to 20 mm Hg (afterload II) with graded aortic occlusion during inotropic stimulation with dobutamine (2.5 and 5 μg/kg body weight per min intravenously), with simultaneous 5-μg/kg per min dobutamine infusion and afterload II and during 2.5% halothane (negative inotrope) concentration. 20-min recovery period was allowed between each stage of the experiment so that regional function returned to its preocclusion level. Ischemic wall motion was characterized by percent systolic bulging and its peak positive systolic lengthening rate (+dL/dt). Results. Because bulging is markedly influenced by regional preload, systolic bulging was characterized over wide range of end-diastolic lengths of the ischemic segment during caval balloon occlusion. During each intervention, decrease in regional preload increased the extent of percent systolic bulging. This preload dependency was more pronounced with dobutamine infusions. An increase in afterload was not associated with increased percent systolic bulging at any given preload. At predetermined preload, bulging was not appreciably altered when an increase in left ventricular systolic pressure was not associated with change in peak positive first derivative of left ventricular pressure (+dP/dt) but was significantly worse when peak +dP/dt increased. Dobutamine caused dose-dependent increase in percent systolic bulging and peak +dL/dt that was positively correlated with peak +dP/dt. Conclusions. By using different loading and inotropic interventions and analyzing the regional wall motion behavior over range of regional preloads, we can conclude that preload and rate of pressure (tension) development are the principal determinants of systolic bulging. Increases in left ventricular pressure alone had minimal effect on systolic bulging.
  • Keywords
    ECG , Electrocardiogram , dP/dt , first derivative of left ventricular pressure , +dP/dt , dL/dt , first derivative of systolic lengthening rate of myocardial segment , +dL/dt , peak positive dL/dt , peak positive dP/dt
  • Journal title
    JACC (Journal of the American College of Cardiology)
  • Serial Year
    1997
  • Journal title
    JACC (Journal of the American College of Cardiology)
  • Record number

    479959