Circulation Research, Vol 74, 1179-1187, Copyright © 1994 by American Heart Association
ARTICLES |
SC Rayhill, GT Daughters, LJ Castro, MA Niczyporuk, MR Moon, NB Ingels Jr, ML Stadius, GC Derby, AF Bolger and DC Miller
Department of Cardiovascular and Thoracic Surgery, Stanford University School of Medicine, Calif.
This investigation was designed to elucidate the dynamics of the left ventricular (LV) papillary muscles. Miniature tantalum myocardial markers were placed on the tip and base of each papillary muscle in six dogs. Markers were also implanted into the LV myocardium to define two orthogonal equatorial diameters and the long-axis dimension. Two weeks later, after recovery from thoracotomy, markers were visualized by biplane fluoroscopy, and video images were recorded during control conditions, after autonomic blockade, after inotropic stimulation with calcium, after methoxamine infusion (to increase afterload), and after blood volume augmentation (to increase preload). Two days later, radiographic recordings were made before and after occlusion of the left circumflex coronary artery. Computer-aided analysis of the video recordings was used to determine three-dimensional coordinates of the markers. It was found that before circumflex coronary occlusion, the dynamics of both papillary muscles closely mimicked the dynamics of the LV as a whole. The papillary muscles shortened during ejection and lengthened during diastole. Their lengths changed minimally during the isovolumic periods, and this behavior was not altered by any of the interventions except coronary occlusion. During circumflex coronary artery occlusion, the ischemic posterior papillary muscle lengthened during isovolumic contraction and most of ejection and shortened only when LV pressure began to fall. Hence, we believe that previous studies demonstrating papillary muscle lengthening during isovolumic contraction and shortening during isovolumic relaxation may have been confounded by coexistent myocardial ischemia or stunning.
This article has been cited by other articles:
![]() |
W. Y. Szeto, R. C. Gorman, J. H. Gorman III, and M. A. Acker Ischemic Mitral Regurgitation Card. Surg. Adult, January 1, 2008; 3(2008): 785 - 802. [Full Text] |
||||
![]() |
J. I. Fann, N. B. Ingels Jr., and D. C. Miller Pathophysiology of Mitral Valve Disease Card. Surg. Adult, January 1, 2008; 3(2008): 973 - 1012. [Full Text] |
||||
![]() |
K. A. Guterl, C. R. Haggart, P. M. Janssen, and J. W. Holmes Isometric contraction induces rapid myocyte remodeling in cultured rat right ventricular papillary muscles Am J Physiol Heart Circ Physiol, December 1, 2007; 293(6): H3707 - H3712. [Abstract] [Full Text] [PDF] |
||||
![]() |
H. Alkadhi, D. Bettex, S. Wildermuth, B. Baumert, A. Plass, J. Grunenfelder, L. Desbiolles, B. Marincek, and T. Boehm Dynamic Cine Imaging of the Mitral Valve with 16-MDCT: A Feasibility Study Am. J. Roentgenol., September 1, 2005; 185(3): 636 - 646. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Uemura, Y. Otsuji, K. Nakashiki, S. Yoshifuku, Y. Maki, B. Yu, N. Mizukami, E. Kuwahara, S. Hamasaki, S. Biro, et al. Papillary Muscle Dysfunction Attenuates Ischemic Mitral Regurgitation in Patients With Localized Basal Inferior Left Ventricular Remodeling: Insights From Tissue Doppler Strain Imaging J. Am. Coll. Cardiol., July 5, 2005; 46(1): 113 - 119. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. C. Gorman, J. H. Gorman III, and L. H. Edmunds Jr. Ischemic Mitral Regurgitation Card. Surg. Adult, January 1, 2003; 2(2003): 751 - 769. [Full Text] |
||||
![]() |
J. I. Fann, N. B. Ingels Jr., and D. C. Miller Pathophysiology of Mitral Valve Disease Card. Surg. Adult, January 1, 2003; 2(2003): 901 - 931. [Full Text] |
||||
![]() |
T. Le Tourneau, D. Grandmougin, C. Foucher, E. P. McFadden, P. de Groote, A. Prat, H. Warembourg, and G. Deklunder Anterior Chordal Transection Impairs Not Only Regional Left Ventricular Function But Also Regional Right Ventricular Function in Mitral Regurgitation Circulation, September 18, 2001; 104 (2009): I-41 - I-46. [Abstract] [Full Text] [PDF] |
||||
![]() |
L. J. Mellors and C. J. Barclay The energetics of rat papillary muscles undergoing realistic strain patterns J. Exp. Biol., January 11, 2001; 204(21): 3765 - 3777. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. R. Moon, A. DeAnda Jr, G. T. Daughters II, N. B. Ingels Jr, and D. C. Miller Effects of mitral valve replacement on regional left ventricular systolic strain Ann. Thorac. Surg., September 1, 1999; 68(3): 894 - 902. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. H. Gorman III, R. C. Gorman, B. M. Jackson, Y. Hiramatsu, N. Gikakis, S. T. Kelley, M. G. St. J. Sutton, T. Plappert, and L. H. Edmunds Jr Distortions of the Mitral Valve in Acute Ischemic Mitral Regurgitation Ann. Thorac. Surg., October 1, 1997; 64(4): 1026 - 1031. [Abstract] [Full Text] |
||||
![]() |
J. H. Gorman III, K. B. Gupta, J. T. Streicher, R. C. Gorman, B. M. Jackson, M. B. Ratcliffe, D. K. Bogen, and L. H. Edmunds Jr. Dynamic Three-Dimensional Imaging of the Mitral Valve and Left Ventricle by Rapid Sonomicrometry Array Localization J. Thorac. Cardiovasc. Surg., September 1, 1996; 112(3): 712 - 726. [Abstract] [Full Text] |
||||
![]() |
R. C Gorman, J. S McCaughan, M. B Ratcliffe, K. B Gupta, J. T Streicher, V. A Ferrari, M. G St. John-Sutton, D. K Bogen, and L. H. Edmunds Jr. Pathogenesis of acute ischemic mitral regurgitation in three dimensions J. Thorac. Cardiovasc. Surg., April 1, 1995; 109(4): 684 - 693. [Abstract] [Full Text] |
||||
|
Circulation Research Home | Subscriptions | Archives | Feedback | Authors | Help | AHA Journals Home | Search Copyright © 1994 American Heart Association, Inc. All rights reserved. Unauthorized use prohibited. |