4.6 Article

Myosplint decreases wall stress without depressing function in the failing heart: A finite element model study

Journal

ANNALS OF THORACIC SURGERY
Volume 76, Issue 4, Pages 1171-1180

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/S0003-4975(03)00731-8

Keywords

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Funding

  1. NHLBI NIH HHS [R01-HL-58759, R01-HL-63348] Funding Source: Medline

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Background. The Myocor Myosplint is a transcavitary tensioning device designed to change left ventricular (LV) shape and reduce wall stress. Regional wall stress cannot be measured in the intact heart and LV function after surgical remodeling is often confounded by inotropic agents and mitral repair. We used a realistic mathematical (finite element) model of the dilated human LV to test the hypothesis that Myosplint decreased regional ventricular fiber stress and improved LV function. Methods. A finite element model was used to simulate the effects of Myosplint on the LV stroke volume/enddiastolic pressure (Starling) relationship and regional distributions of stress in the local muscle fiber direction (fiber stress) for a wide range of diastolic and endsystolic material properties. The nonlinear stress-strain relationship for the diastolic myocardium was anisotropic with respect to the local muscle fiber direction. An elastance model for active fiber stress was incorporated in an axisymmetric geometric model of the globally dilated LV wall. Results. Both diastolic compliance and end-systolic elastance shifted to the left on the pressure-volume diagram. LV end-diastolic volume and end-systolic volumes were reduced by 7.6% and 8.6%, respectively. Mean end-diastolic and end-systolic fiber stress was decreased by 24% and 16%, respectively. Although the effect of Myosplint on the Starling relationship was not significant, there were trends toward an improvement in this relationship at low diastolic stiffness, C, high peak intracellular calcium concentration, Ca-0, and high arterial elastance, E-A. Of note, the effect of C was twice that of Ca-0 and E-A. Diastolic function would, therefore, be expected to be the prime determinant of success with Myosplint. Conclusions. Myosplint reduces fiber stress without a decrement in the Starling relationship. Myosplint should be much more effective than partial ventriculectomy as a surgical therapy for patients with dilated cardiomyopathy and end-stage congestive heart failure.

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