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PMID: 19122166 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Left ventricular regional wall curvedness and wall stress in patients with ischemic dilated cardiomyopathy.

American journal of physiology. Heart and circulatory physiology ·Vol. 296 ·No. 3 ·2009-03-00 ·Pages H573-84

Zhong L, Su Y, Yeo SY, Tan RS, Ghista DN, Kassab G

Abstract

Geometric remodeling of the left ventricle (LV) after myocardial infarction is associated with changes in myocardial wall stress. The objective of this study was to determine the regional curvatures and wall stress based on three-dimensional (3-D) reconstructions of the LV using MRI. Ten patients with ischemic dilated cardiomyopathy (IDCM) and 10 normal subjects underwent MRI scan. The IDCM patients also underwent delayed gadolinium-enhancement imaging to delineate the extent of myocardial infarct. Regional curvedness, local radii of curvature, and wall thickness were calculated. The percent curvedness change between end diastole and end systole was also calculated. In normal heart, a short- and long-axis two-dimensional analysis showed a 41 +/- 11% and 45 +/- 12% increase of the mean of peak systolic wall stress between basal and apical sections, respectively. However, 3-D analysis showed no significant difference in peak systolic wall stress from basal and apical sections (P = 0.298, ANOVA). LV shape differed between IDCM patients and normal subjects in several ways: LV shape was more spherical (sphericity index = 0.62 +/- 0.08 vs. 0.52 +/- 0.06, P < 0.05), curvedness at end diastole (mean for 16 segments = 0.034 +/- 0.0056 vs. 0.040 +/- 0.0071 mm(-1), P < 0.001) and end systole (mean for 16 segments = 0.037 +/- 0.0068 vs. 0.067 +/- 0.020 mm(-1), P < 0.001) was affected by infarction, and peak systolic wall stress was significantly increased at each segment in IDCM patients. The 3-D quantification of regional wall stress by cardiac MRI provides more precise evaluation of cardiac mechanics. Identification of regional curvedness and wall stresses helps delineate the mechanisms of LV remodeling in IDCM and may help guide therapeutic LV restoration.

MeSH Terms
Adult Cardiomyopathy, Dilated/etiology,pathology,physiopathology Case-Control Studies Female Heart Ventricles/pathology,physiopathology Humans Imaging, Three-Dimensional Magnetic Resonance Imaging, Cine Male Middle Aged Models, Anatomic Models, Cardiovascular Myocardial Contraction Myocardial Infarction/complications,pathology,physiopathology Stress, Mechanical Ventricular Function, Left Ventricular Remodeling Young Adult
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Zhong Liang
Deparment of Cardiology, National Heart Centre, Singapore.
Su Yi
Yeo Si-Yong
Tan Ru-San
Ghista Dhanjoo N
Kassab Ghassan
References (44)
44 references, click to expand
  1. Regional nonuniformity of normal adult human left ventricle.
    Am J Physiol Heart Circ Physiol. 2001 Feb;280(2):H610-20 PMID: 11158958
  2. Fiber orientation in the canine left ventricle during diastole and systole.
    Circ Res. 1969 Mar;24(3):339-47 PMID: 5766515
  3. Left ventricular shape changes during the course of evolving heart failure.
    Am J Physiol. 1992 Jul;263(1 Pt 2):H266-70 PMID: 1636764
  4. Mechanisms of compensation and decompensation in dilated cardiomyopathy.
    Am J Cardiol. 1984 Nov 1;54(8):1033-8 PMID: 6496326
  5. Relation between left ventricular shape and exercise capacity in patients with left ventricular dysfunction.
    J Am Coll Cardiol. 1993 Sep;22(3):751-7 PMID: 8354809
  6. Regional three-dimensional geometry of the normal human left ventricle using cine computed tomography.
    Ann Biomed Eng. 1996 Sep-Oct;24(5):583-94 PMID: 8886239
  7. Quantitative regional curvature analysis: an application of shape determination for the assessment of segmental left ventricular function in man.
    Am Heart J. 1987 Feb;113(2 Pt 1):326-34 PMID: 3812186
  8. Establishment and performance of a magnetic resonance cardiac function clinic.
    J Cardiovasc Magn Reson. 2000;2(1):15-22 PMID: 11545103
  9. Functional and histopathologic correlation in patients with dilated cardiomyopathy: an integrated evaluation by multivariate analysis.
    J Am Coll Cardiol. 1987 Jul;10(1):186-92 PMID: 3597987
  10. Cardiac remodeling--concepts and clinical implications: a consensus paper from an international forum on cardiac remodeling. Behalf of an International Forum on Cardiac Remodeling.
    J Am Coll Cardiol. 2000 Mar 1;35(3):569-82 PMID: 10716457
  11. Characterization of regional left ventricular contraction by curvature difference analysis.
    Basic Res Cardiol. 1988 Sep-Oct;83(5):486-500 PMID: 3233092
  12. Comparison of left ventricular ejection fraction by magnetic resonance imaging and radionuclide ventriculography in idiopathic dilated cardiomyopathy.
    Am J Cardiol. 1991 Feb 15;67(5):411-5 PMID: 1994666
  13. Echocardiographic quantification of regional left ventricular wall motion with color kinesis.
    Am J Cardiol. 2000 Jan 15;85(2):245-50 PMID: 10955385
  14. Left ventricular shape-based contractility index.
    J Biomech. 2006;39(13):2397-409 PMID: 16168419
  15. Ventricular wall stress.
    Circ Res. 1981 Oct;49(4):829-42 PMID: 7023741
  16. Molecular mechanisms of myocardial remodeling.
    Physiol Rev. 1999 Jan;79(1):215-62 PMID: 9922372
  17. A comparison of traditional wall motion assessment and quantitative shape analysis: a new method for characterizing left ventricular function in humans.
    Am Heart J. 1987 Nov;114(5):1183-91 PMID: 3673885
  18. Contractile state of the left ventricle in man as evaluated from end-systolic pressure-volume relations.
    Circulation. 1977 Nov;56(5):845-52 PMID: 71960
  19. Piezoelectric polymer curvature sensor for measurement of regional curvature radius of LV wall.
    Am J Physiol. 1988 May;254(5 Pt 2):H1010-6 PMID: 3364584
  20. Normal left ventricular dimensions and function: interstudy reproducibility of measurements with cine MR imaging.
    Radiology. 1990 Mar;174(3 Pt 1):763-8 PMID: 2305059
  21. Contribution of laminar myofiber architecture to load-dependent changes in mechanics of LV myocardium.
    Am J Physiol Heart Circ Physiol. 2002 Apr;282(4):H1510-20 PMID: 11893589
  22. Surgical ventricular restoration improves mechanical intraventricular dyssynchrony in ischemic cardiomyopathy.
    Circulation. 2004 Jun 1;109(21):2536-43 PMID: 15159292
  23. Finite-element method of stress analysis in the human left ventricular layered wall structure.
    Med Biol Eng Comput. 1977 Jan;15(1):67-71 PMID: 194126
  24. Left ventricular regional wall stress in dilated cardiomyopathy.
    Circulation. 1990 Dec;82(6):2075-83 PMID: 2242531
  25. Quantification and validation of left ventricular wall thickening by a three-dimensional volume element magnetic resonance imaging approach.
    Circulation. 1990 Jan;81(1):297-307 PMID: 2297833
  26. Surgical ventricular restoration in patients with ischemic dilated cardiomyopathy: evaluation of systolic and diastolic ventricular function, wall stress, dyssynchrony, and mechanical efficiency by pressure-volume loops.
    J Thorac Cardiovasc Surg. 2006 Sep;132(3):610-20 PMID: 16935117
  27. Localized shape variations for classifying wall motion in echocardiograms.
    Med Image Comput Comput Assist Interv. 2007;10(Pt 1):52-9 PMID: 18051043
  28. Left ventricular wall thickness and regional systolic function in patients with hypertrophic cardiomyopathy. A three-dimensional tagged magnetic resonance imaging study.
    Circulation. 1994 Sep;90(3):1200-9 PMID: 8087929
  29. Ventricular remodeling after myocardial infarction. Experimental observations and clinical implications.
    Circulation. 1990 Apr;81(4):1161-72 PMID: 2138525
  30. Computer evaluation of left ventricular wall motion by means of shape-based tracking and symbolic description.
    Med Eng Phys. 1999 Mar;21(2):73-85 PMID: 10426507
  31. Noninvasive determination of left ventricular end-systolic stress: validation of the method and initial application.
    Circulation. 1982 Jan;65(1):99-108 PMID: 7053293
  32. Borderzone geometry after acute myocardial infarction: a three-dimensional contrast enhanced echocardiographic study.
    Ann Thorac Surg. 2005 Dec;80(6):2250-5 PMID: 16305883
  33. Inter-study variability in left ventricular mass measurement. Comparison between M-mode echography and MRI.
    Eur Heart J. 1992 Aug;13(8):1011-9 PMID: 1387084
  34. Standardized myocardial segmentation and nomenclature for tomographic imaging of the heart. A statement for healthcare professionals from the Cardiac Imaging Committee of the Council on Clinical Cardiology of the American Heart Association.
    Circulation. 2002 Jan 29;105(4):539-42 PMID: 11815441
  35. Regional assessment of wall curvature and wall stress in left ventricle with magnetic resonance imaging.
    Am J Physiol. 1999 Sep;277(3):H901-10 PMID: 10484409
  36. Validation of a novel noninvasive cardiac index of left ventricular contractility in patients.
    Am J Physiol Heart Circ Physiol. 2007 Jun;292(6):H2764-72 PMID: 17237251
  37. Alterations in left ventricular curvature and principal strains in dilated cardiomyopathy with functional mitral regurgitation.
    J Heart Valve Dis. 2003 May;12(3):292-9 PMID: 12803327
  38. Evaluation of regional load in acute ischemia by three-dimensional curvatures analysis of the left ventricle.
    Ann Biomed Eng. 1993 Mar-Apr;21(2):147-61 PMID: 8484563
  39. Magnetic resonance imaging--cardiac ejection fraction measurements. Phantom study comparing four different methods.
    Invest Radiol. 1992 Mar;27(3):198-204 PMID: 1551769
  40. Quantitative regional curvature analysis: a prospective evaluation of ventricular shape and wall motion measurements.
    Am Heart J. 1988 Dec;116(6 Pt 1):1616-21 PMID: 3195441
  41. Regional assessment of left ventricular surface shape from magnetic resonance imaging.
    Annu Int Conf IEEE Eng Med Biol Soc. 2007;2007:884-7 PMID: 18002098
  42. Estimation of local myocardial stress.
    Am J Physiol. 1982 May;242(5):H875-81 PMID: 7081458
  43. Potential fields on the ventricular surface of the exposed dog heart during normal excitation.
    Circ Res. 1983 Jun;52(6):706-15 PMID: 6861288
  44. Influence of the orientation of myocardial fibers on echocardiographic images.
    Am J Cardiol. 1987 Jul 1;60(1):147-52 PMID: 3604928
Article Info
Journal
American journal of physiology. Heart and circulatory physiology
Abbr.
Am J Physiol Heart Circ Physiol
ISSN
0363-6135
Published
2009-03-00
Epub
2009-00-02
Pages
H573-84
Language
English
Region
United States
NLM ID
100901228
PMCID
PMC2660226
Subset
IM
Grants
NHLBI NIH HHS · HL-84529 · United States
Analysis Services
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