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1.
J Thorac Cardiovasc Surg ; 157(4): 1444-1449, 2019 04.
Artigo em Inglês | MEDLINE | ID: mdl-30447965

RESUMO

OBJECTIVE: Papillary muscle (PM) displacement contributes to ischemic/functional mitral regurgitation (IMR/FMR). The displaced PMs pull the mitral leaflets into the left ventricle (ie, toward the apex) thus hampering leaflet coaptation. Intuitively apical leaflet tethering results from apical PM displacement. The 3-dimensional directions of PM displacement are, however, incompletely characterized. METHODS: Data from in vivo ovine models of IMR (6-8 weeks of posterolateral infarction, n = 12) and FMR (9-21 days of rapid left ventricular pacing, n = 11) were analyzed. All sheep had radiopaque markers implanted on the anterior and posterior PM (PPM) tips, around the mitral annulus, and on the left ventricular apex. To explore 3-dimensional PM displacement directions, differences in marker coordinates were calculated at end-systole before and during IMR/FMR using a right-handed coordinate system centered on the mitral annular "saddle horn" with the y-axis passing through the apical marker. RESULTS: No apical PM displacement was observed during either IMR or FMR. The anterior PM displaced laterally during FMR. Posterolateral PPM displacement was observed during IMR and FMR. CONCLUSIONS: Experimental in vivo ovine models suggest posterolateral PPM displacement as a predominant pathomechanism leading to apical leaflet tethering during IMR/FMR.


Assuntos
Imageamento Tridimensional , Insuficiência da Valva Mitral/diagnóstico por imagem , Valva Mitral/diagnóstico por imagem , Infarto do Miocárdio/complicações , Músculos Papilares/diagnóstico por imagem , Pontos de Referência Anatômicos , Animais , Modelos Animais de Doenças , Marcadores Fiduciais , Fluoroscopia , Imageamento Tridimensional/instrumentação , Valva Mitral/fisiopatologia , Insuficiência da Valva Mitral/etiologia , Insuficiência da Valva Mitral/fisiopatologia , Músculos Papilares/fisiopatologia , Valor Preditivo dos Testes , Carneiro Doméstico
2.
Cardiovasc Eng Technol ; 6(2): 141-50, 2015 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-26213589

RESUMO

To determine how extracellular matrix and contractile valvular cells contribute to the heterogeneous motion and strain across the mitral valve (MV) during the cardiac cycle, regional MV material properties, matrix composition, matrix turnover, and cell phenotype were related to regional leaflet strain. Radiopaque markers were implanted into 14 sheep to delineate the septal (SEPT), lateral (LAT), and anterior and posterior commissural leaflets (ANT-C, POST-C). Videofluoroscopy imaging was used to calculate radial and circumferential strains. Mechanical properties were assessed using uniaxial tensile testing and micropipette aspiration. Matrix composition and cell phenotypes were immunohistochemically evaluated within each leaflet region [basal leaflet (BL), mid-leaflet (ML), and free edge]. SEPT-BL segments were stiffer and stronger than other valve tissues, while LAT segments demonstrated more extensibility and strain. Collagens I and III in SEPT were greater than in LAT, although LAT showed greater collagen turnover [matrix metalloprotease (MMP)-13, lysyl oxidase] and cell activation [smooth muscle alpha-actin (SMaA), and non-muscle myosin (NMM)]. MMP13, NMM, and SMaA were strongly correlated with each other, as well as with radial and circumferential strains in both SEPT and LAT. SMaA and MMP13 in POST-C ML was greater than ANT-C, corresponding to greater radial strains in POST-C. This work directly relates leaflet strain, material properties, and matrix turnover, and suggests a role for myofibroblasts in the heterogeneity of leaflet composition and strain. New approaches to MV repair techniques and ring design should preserve this normal coupling between leaflet composition and motion.


Assuntos
Matriz Extracelular/fisiologia , Valva Mitral/citologia , Valva Mitral/fisiologia , Actinas/metabolismo , Animais , Colágeno/metabolismo , Meios de Contraste/metabolismo , Matriz Extracelular/metabolismo , Fluoroscopia/métodos , Metaloproteinases da Matriz/metabolismo , Valva Mitral/metabolismo , Insuficiência da Valva Mitral/metabolismo , Modelos Cardiovasculares , Miofibroblastos/metabolismo , Fenótipo , Ovinos , Software
3.
Cardiovasc Eng Technol ; 6(2): 151-9, 2015 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-26195991

RESUMO

PURPOSE: Regional heterogeneity in mitral annular contraction, which is generally ascribed to the fibrous vs. muscular annular composition, ensures proper leaflet motion and timing of coaptation. It is unknown whether the fibroblast-like cells in the annulus modulate this heterogeneity, even though valvular interstitial cells (VICs) can be mechanically "activated." METHODS: Fourteen sheep underwent implantation of radiopaque markers around the mitral annulus defining four segments: septal (SEPT), lateral (LAT), and anterior (ANT-C) and posterior (POST-C) commissures. Segmental annular contraction was calculated using biplane videofluoroscopy. Immunohistochemistry of annular cross sections assessed regional matrix content, matrix turnover, and cell phenotype. Micropipette aspiration measured the Young's modulus of the leaflets adjacent to the myocardial border. RESULTS: Whereas SEPT contained more collagen I and III, LAT demonstrated more collagen and elastin turnover as shown by greater decorin, lysyl oxidase, and matrix metalloprotease (MMP)-13 and smooth muscle alpha-actin (SMaA). This greater matrix turnover paralleled greater annular contraction in LAT vs. SEPT (22.5% vs. 4.1%). Similarly, POST-C had more SMaA and MMP13 than ANT-C, consistent with greater annular contraction in POST-C (18.8% vs. 11.1%). Interestingly, POST-C had the greatest effective modulus, significantly higher than LAT. CONCLUSIONS: These data suggest that matrix turnover by activated VICs relates to annular motion heterogeneity, maintains steady-state mechanical properties in the annulus, and could be a therapeutic target when annular motion is impaired. Conversely, alterations in this heterogeneous annular contraction, whether through disease or secondary to ring annuloplasty, could disrupt this normal pattern of cell-mediated matrix remodeling and further adversely impact mitral valve function.


Assuntos
Matriz Extracelular/metabolismo , Valva Mitral/citologia , Valva Mitral/fisiologia , Actinas/metabolismo , Animais , Anuloplastia da Valva Cardíaca/instrumentação , Colágeno/metabolismo , Meios de Contraste/metabolismo , Fibroblastos/citologia , Fibroblastos/fisiologia , Fluoroscopia/métodos , Humanos , Metaloproteinases da Matriz/metabolismo , Valva Mitral/metabolismo , Insuficiência da Valva Mitral/metabolismo , Insuficiência da Valva Mitral/patologia , Fenótipo , Ovinos/cirurgia
4.
J Thorac Cardiovasc Surg ; 150(1): 232-7, 2015 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-25998465

RESUMO

BACKGROUND: Novel surgical approaches are focusing on the "ventricular disease" of ischemic mitral regurgitation (IMR), to correct altered papillary muscle (PM) tip positions (apical displacement) and ameliorate leaflet tethering. Due to the anatomic complexity of the subvalvular apparatus, however, the precise geometric perturbations of the multiheaded PM tips associated with IMR remain uncharacterized. METHODS: In 6 adult sheep, we implanted 3 markers on each PM. To specifically identify distinct PM tips, 1 marker was placed on the PM origin of the dominant chord to the anterior, posterior, and commissural leaflets. Nine markers were placed on the edge of the posterior mitral leaflet, and 5 on the edge of the anterior mitral leaflet. Eight markers were sewn around the mitral annulus. Animals were studied immediately postoperatively, with biplane videofluoroscopy and transesophageal echocardiography, before and during acute snare occlusion of the proximal left circumflex coronary artery, to induce IMR. Papillary muscle tip and leaflet edge geometry was expressed as the orthogonal distance of each respective marker to the least-squares mitral annulus plane at end-systole. In addition, the distance from each PM tip marker to the mitral annulus "saddle horn" was calculated. RESULTS: Acute left circumflex occlusion significantly increased mitral regurgitation from a baseline of 0.7 ± 0.3 to 2.5 ± 0.5 (P < .05). The IMR was associated with posterior leaflet restriction near the central leaflet edge, with simultaneous prolapse of both leaflets near the posterior commissure. No apical displacement of PM tips was observed during IMR, although the posterior PM moved farther away from the midseptal annulus. CONCLUSIONS: During acute ischemia, no apical displacement of any PM tip was observed. Posterior PM movement away from the annular saddle horn, and toward the annulus, was associated with IMR and leaflet prolapse near the posterior commissure, and with restriction near the valve center. These data may help guide development of surgical interventions aimed at PM repositioning.


Assuntos
Insuficiência da Valva Mitral/fisiopatologia , Isquemia Miocárdica/fisiopatologia , Músculos Papilares/fisiopatologia , Doença Aguda , Animais , Masculino , Conceitos Matemáticos , Insuficiência da Valva Mitral/complicações , Isquemia Miocárdica/complicações , Ovinos
5.
J Heart Valve Dis ; 19(4): 420-5; discussion 426, 2010 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-20845887

RESUMO

BACKGROUND AND AIM OF THE STUDY: The optimal treatment of moderate ischemic mitral regurgitation (IMR) remains contested. Thus, radiopaque markers were implanted on valvular structures to investigate the geometric and hemodynamic variables associated with the evolution and progression of acute ovine IMR. METHODS: Eight adult sheep underwent implantation of five radiopaque markers on the edge of the posterior mitral leaflet (PML), and five on the edge of the anterior mitral leaflet (AML). Eight additional markers were sewn around the mitral annulus (MA). The animals were studied immediately after surgery, using biplane videofluoroscopy and transesophageal echocardiography. Data were acquired at Baseline and at two time points (IMR1 and IMR2) during acute snare occlusion of the proximal left circumflex coronary artery and progressive IMR. The orthogonal distance of each leaflet edge marker to the least-squares annular plane, mitral annular area (MAA), and septal-lateral diameter (SL) were calculated at end-systole. The leaflet tenting area (TA) was calculated at valve center (CENT) and near the anterior (ACOM) and posterior (PCOM) commissures. RESULTS: The degree of MR was 0.6 +/- 0.4, 1.8 +/- 0.7, and 2.8 +/- 0.7 for Baseline, IMR1, and IMR2, respectively (p < 0.005). IMR1 was associated with annular dilatation and leaflet restriction near the valve center, and prolapse near the PCOM versus Baseline. Although both left ventricular pressure (LVP) and left ventricular dP/dt decreased significantly from IMR1 to IMR 2, there were no differences in leaflet or annular geometry. CONCLUSION: The initiation of moderate IMR was associated with significant alterations in annular and leaflet geometry, but only a small decrease in LV systolic function, was needed for IMR progression. These data suggest that the surgical repair and optimization of LV function may be important in combination to treat moderate IMR, as only small hemodynamic deterioration and perturbations in valvular geometry are necessary for significant IMR progression.


Assuntos
Insuficiência da Valva Mitral/etiologia , Valva Mitral/fisiopatologia , Isquemia Miocárdica/complicações , Animais , Modelos Animais de Doenças , Progressão da Doença , Ecocardiografia Transesofagiana , Fluoroscopia , Ventrículos do Coração/fisiopatologia , Hemodinâmica , Valva Mitral/diagnóstico por imagem , Insuficiência da Valva Mitral/diagnóstico , Insuficiência da Valva Mitral/fisiopatologia , Insuficiência da Valva Mitral/cirurgia , Isquemia Miocárdica/diagnóstico , Isquemia Miocárdica/fisiopatologia , Medição de Risco , Fatores de Risco , Ovinos , Fatores de Tempo , Função Ventricular Esquerda , Pressão Ventricular , Gravação em Vídeo
6.
Circulation ; 120(11 Suppl): S112-9, 2009 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-19752355

RESUMO

BACKGROUND: Dilated cardiomyopathy (DCM) involves significant remodeling of the left ventricular-mitral valve (MV) complex, but little is known regarding the remodeling of the mitral leaflets. The aim of this study was to assess changes in matrix composition and turnover in MV leaflets with DCM. METHODS AND RESULTS: Radiopaque markers were implanted in 24 sheep to delineate the MV; 10 sheep underwent tachycardia-induced cardiomyopathy (TIC), whereas 14 sheep remained as controls. Biplane videofluoroscopy was performed before and after TIC. Immunohistochemistry was performed on leaflet cross-sections taken from the septal, lateral, anterior, and posterior commissures attachment segments. Staining intensity was quantified within each attachment segment and leaflet region (basal, mid-leaflet, and free edge). Mitral regurgitation increased from 0.2+/-0.4 before TIC to 2.2+/-0.9 after TIC (P<0.0002). TIC leaflets demonstrated significant remodeling compared to controls, including greater cell density and loss of leaflet layered structure (all P<0.05). Collagen and elastic fiber turnover was greater in TIC, as was the myofibroblast phenotype (all P<0.05). Compositional differences between TIC and control leaflets were heterogeneous by annular segment and leaflet region, and related to regional changes in leaflet segment length with TIC. CONCLUSIONS: This study shows that the MV leaflets are significantly remodeled in DCM with changes in leaflet composition, structure, and valve cell phenotype. Understanding how alterations in leaflet mechanics, such as those induced by DCM, drive cell-mediated remodeling of the extracellular matrix will be important in developing future treatment strategies.


Assuntos
Cardiomiopatia Dilatada/metabolismo , Colágeno/metabolismo , Valva Mitral/metabolismo , Taquicardia/complicações , Animais , Cardiomiopatia Dilatada/patologia , Tecido Elástico/metabolismo , Fibroblastos/fisiologia , Glicosaminoglicanos/análise , Metaloproteinase 9 da Matriz/análise , Valva Mitral/química , Valva Mitral/patologia , Insuficiência da Valva Mitral/metabolismo , Insuficiência da Valva Mitral/patologia , Proteoglicanas/análise , Ovinos , Remodelação Ventricular
7.
J Thorac Cardiovasc Surg ; 136(3): 557-65, 2008 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-18805251

RESUMO

OBJECTIVE: Chronic ischemic mitral regurgitation is associated with mitral annular dilatation in the septal-lateral dimension and flattening of the annular 3-dimensional saddle shape. To examine whether these perturbations are caused by the ischemic insult, mitral regurgitation, or both, we investigated the effects of pure mitral regurgitation (low pressure volume overload) on annular geometry and shape. METHODS: Eight radiopaque markers were sutured evenly around the mitral annulus in sheep randomized to control (CTRL, n = 8) or experimental (HOLE, n = 12) groups. In HOLE, a 3.5- to 4.8-mm hole was punched in the posterior leaflet to generate pure mitral regurgitation. Four-dimensional marker coordinates were obtained radiographically 1 and 12 weeks postoperatively. Mitral annular area, annular septal-lateral and commissure-commissure dimensions, and annular height were calculated every 16.7 ms. RESULTS: Mitral regurgitation grade was 0.4 +/- 0.4 in CTRL and 3.0 +/- 0.8 in HOLE (P < .001) at 12 weeks. End-diastolic left ventricular volume index was greater in HOLE at both 1 and 12 weeks; end-systolic volume index was larger in HOLE at 12 weeks. Mitral annular area increased in HOLE predominantly in the commissure-commissure dimension, with no difference in annular height between HOLE versus CTRL at 1 or 12 weeks, respectively. CONCLUSION: In contrast with annular septal-lateral dilatation and flattening of the annular saddle shape observed with chronic ischemic mitral regurgitation, pure mitral regurgitation was associated with commissure-commissure dimension annular dilatation and no change in annular shape. Thus, infarction is a more important determinant of septal-lateral dilatation and annular shape than mitral regurgitation, which reinforces the need for disease-specific designs of annuloplasty rings.


Assuntos
Insuficiência da Valva Mitral/patologia , Valva Mitral/patologia , Animais , Doença Crônica , Dilatação Patológica , Fluoroscopia , Ovinos , Instrumentos Cirúrgicos , Gravação em Vídeo
8.
J Biomech ; 41(15): 3219-24, 2008 Nov 14.
Artigo em Inglês | MEDLINE | ID: mdl-18805536

RESUMO

Recent computational models of optimized left ventricular (LV) myofiber geometry that minimize the spatial variance in sarcomere length, stress, and ATP consumption have predicted that a midwall myofiber angle of 20 degrees and transmural myofiber angle gradient of 140 degrees from epicardium to endocardium is a functionally optimal LV myofiber geometry. In order to test the extent to which actual fiber angle distributions conform to this prediction, we measured local myofiber angles at an average of nine transmural depths in each of 32 sites (4 short-axis levels, 8 circumferentially distributed blocks in each level) in five normal ovine LVs. We found: (1) a mean midwall myofiber angle of -7 degrees (SD 9), but with spatial heterogeneity (averaging 0 degrees in the posterolateral and anterolateral wall near the papillary muscles, and -9 degrees in all other regions); and (2) an average transmural gradient of 93 degrees (SD 21), but with spatial heterogeneity (averaging a low of 51 degrees in the basal posterior sector and a high of 130 degrees in the mid-equatorial anterolateral sector). We conclude that midwall myofiber angles and transmural myofiber angle gradients in the ovine heart are regionally non-uniform and differ significantly from the predictions of present-day computationally optimized LV myofiber models. Myofiber geometry in the ovine heart may differ from other species, but model assumptions also underlie the discrepancy between experimental and computational results. To test the predictive capability of the current computational model would we propose using an ovine specific LV geometry and comparing the computed myofiber orientations to those we report herein.


Assuntos
Ventrículos do Coração/citologia , Modelos Anatômicos , Modelos Cardiovasculares , Miofibrilas/diagnóstico por imagem , Miofibrilas/fisiologia , Função Ventricular/fisiologia , Animais , Simulação por Computador , Masculino , Ovinos , Ultrassonografia
9.
Circulation ; 118(7): 713-21, 2008 Aug 12.
Artigo em Inglês | MEDLINE | ID: mdl-18663088

RESUMO

BACKGROUND: Myocardial fibers are grouped into lamina (or sheets) 3 to 4 cells thick. Fiber shortening produces systolic left ventricular (LV) wall thickening primarily by laminar extension, thickening, and shear, but the regional variability and transmural distribution of these 3 mechanisms are incompletely understood. METHODS AND RESULTS: Nine sheep had transmural radiopaque markers inserted into the anterior basal and lateral equatorial LV. Four-dimensional marker dynamics were studied with biplane videofluoroscopy to measure circumferential, longitudinal, and radial systolic strains in the epicardium, midwall, and endocardium. Fiber and sheet angles from quantitative histology allowed transformation of these strains into transmural contributions of sheet extension, thickening, and shear to systolic wall thickening. At all depths, systolic wall thickening in the anterior basal region was 1.6 to 1.9 times that in the lateral equatorial region. Interestingly, however, systolic fiber shortening was identical at each transmural depth in these regions. Endocardial anterior basal sheet thickening was >2 times greater than in the lateral equatorial region (epicardium, 0.16+/-0.15 versus 0.03+/-0.06; endocardium, 0.45+/-0.40 versus 0.17+/-0.09). Midwall sheet extension was >2 times that in the lateral wall (0.22+/-0.12 versus 0.09+/-0.06). Epicardial and midwall sheet shears in the anterior wall were approximately 2 times higher than in the lateral wall (epicardium, 0.14+/-0.07 versus 0.05+/-0.03; midwall, 0.21+/-0.12 versus 0.12+/-0.06). CONCLUSIONS: These data demonstrate fundamentally different regional contributions of laminar mechanisms for amplifying fiber shortening to systolic wall thickening. Systolic fiber shortening was identical at each transmural depth in both the anterior and lateral LV sites. However, systolic wall thickening of the anterior site was much greater than that of the lateral site. Fiber shortening drives systolic wall thickening, but sheet dynamics and orientations are of great importance to systolic wall thickening. LV wall thickening and its clinical implications pivot on different wall thickening mechanisms in various LV regions. Attempts to implant healthy contractile cells into diseased hearts or to surgically manipulate LV geometry need to take into account not only cardiomyocyte contraction but also transmural LV intercellular architecture and geometry.


Assuntos
Ventrículos do Coração/citologia , Contração Miocárdica/fisiologia , Miócitos Cardíacos/citologia , Função Ventricular , Animais , Fenômenos Biomecânicos , Cateterismo , Endocárdio/citologia , Endocárdio/fisiologia , Fluoroscopia , Manometria , Miócitos Cardíacos/fisiologia , Pericárdio/citologia , Pericárdio/fisiologia , Ovinos , Pressão Ventricular/fisiologia
10.
J Heart Valve Dis ; 17(2): 149-54, 2008 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-18512484

RESUMO

BACKGROUND AND AIM OF THE STUDY: A saddle-shaped mitral annulus may optimize anterior leaflet shape and, in theory, reduce leaflet and chordal stress. Although annuloplasty rings alter native annular height and immobilize the posterior mitral leaflet, their effects on anterior leaflet geometry are unknown. METHODS: Four radiopaque markers were placed on the central meridian of the anterior mitral leaflet (AML), and eight on the mitral annulus, of 20 sheep. Six animals were then implanted with a Carpentier-Edwards Physio ring, and six a Medtronic Duran flexible ring. Eight animals served as controls. All animals were then studied with biplane 60 Hz videofluoroscopy at 7-10 days after surgery. The angle Theta was calculated as the angle between each AML leaflet marker and the annular septal-lateral diameter, while AML marker excursion was expressed as the difference between maximum and minimum angle Theta during the cardiac cycle. The intrinsic AML shape was described by three angles, each between three consecutive leaflet markers from the mid-septal annular marker to the leaflet edge (Phi1-3, from annulus to leaflet edge). RESULTS: Hemodynamic parameters differed only in left ventricular pressure, which was higher in control animals. Anterior leaflet excursion during the cardiac cycle for all four leaflet markers did not change with ring annuloplasty. The intrinsic leaflet angles (Phi1-3) were also unaffected by annular fixation, and thus leaflet shape remained unaltered. CONCLUSION: Neither semi-rigid nor flexible annuloplasty rings affected anterior leaflet excursion or the intrinsic geometry of the AML at end-systole or end-diastole. These data suggest that, in normal sheep hearts, annuloplasty rings do not alter anterior leaflet shape and hence do not perturb leaflet stress distribution.


Assuntos
Próteses Valvulares Cardíacas , Valva Mitral/patologia , Animais , Implante de Prótese de Valva Cardíaca , Imageamento Tridimensional , Desenho de Prótese , Ovinos , Estresse Mecânico
11.
Eur J Cardiothorac Surg ; 33(6): 1049-54, 2008 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-18442919

RESUMO

OBJECTIVE: Etiology-specific annular interventions and annuloplasty rings are now commercially available for the treatment of different types of mitral regurgitation; however, knowledge concerning the effects of local annular alterations on annular and left ventricular (LV) geometry is limited. METHODS: Seven adult sheep underwent implantation of eight radiopaque markers around the mitral annulus (MA) and eight markers on the LV (four each on two levels: basal and apical), and one on each papillary muscle tip. Trans-annular septal-lateral (SL) sutures were placed between the corresponding markers on the septal and lateral annulus at valve center (CENT) and near anterior (ACOM) and posterior (PCOM) commissures and externalized. Hemodynamic parameters and 4D marker coordinates were measured before and during SL annular cinching ('SLAC'; suture tightening 3-5 mm for 20s) at each suture location. Mitral annular SL diameter, annular area (MAA), and distance from the mid-septal annulus to the LV markers and papillary muscle tips were determined from marker coordinates every 17ms. RESULTS: End-systolic MAA decreased from 5.93+/-1.27 to 5.23+/-1.29(*)cm(2), 5.98+/-1.16 to 5.33+/-1.31(*)cm(2), and 6.30+/-1.65 to 5.61+/-1.37(*)cm(2) for SLAC(ACOM), SLAC(CENT), and SLAC(PCOM), respectively ((*)p<0.05 vs pre-cinching). Each SLAC intervention reduced the SL diameter at all three locations, while both SLAC(ACOM) and SLAC(CENT) affected ventricular geometry, and SLAC(PCOM) only slightly altered valvular-subvalvular distance. Only SLAC(CENT) altered papillary muscle position. CONCLUSIONS: Local annular SL reduction influences remote annular SL dimensions and affects LV geometry. The effect of local annular interventions on global annular geometry and LV remodeling should be considered in surgical or interventional approaches to mitral regurgitation and the design of new annular prostheses as well as supra-annular and sub-annular catheter interventions.


Assuntos
Insuficiência da Valva Mitral/cirurgia , Valva Mitral/cirurgia , Técnicas de Sutura , Remodelação Ventricular , Animais , Ponte Cardiopulmonar , Modelos Animais de Doenças , Ventrículos do Coração/patologia , Hemodinâmica , Insuficiência da Valva Mitral/patologia , Insuficiência da Valva Mitral/fisiopatologia , Ovinos
12.
Circulation ; 116(11 Suppl): I276-81, 2007 Sep 11.
Artigo em Inglês | MEDLINE | ID: mdl-17846317

RESUMO

BACKGROUND: Our prior studies suggest that mitral annular septal-lateral (SL) diameter is the chief determinant of "Alfieri stitch" tension, but hemodynamic parameters may also play a role. We approximated the central edge of the mitral leaflets with a miniature force transducer to measure tension (T) at the leaflet approximation point during inotropic and chronotropic stimulation. METHODS AND RESULTS: Eight sheep were studied under open-chest conditions immediately after surgical placement of a miniature force transducer to approximate the leaflets and implantation of radiopaque markers on the LV and mitral annulus (MA). Chronotropic stimulation was induced with atrial pacing at 130 minutes(-1) (n=5) whereas inotropic state was increased with i.v. CaCl2 bolus (n=8). Hemodynamic data, stitch tension, and 3-D marker coordinates were obtained throughout the cardiac cycle before and during each intervention. Peak stitch tension (T(MAX)) under all conditions was observed in diastole and temporally correlated with peak annular SL (SL(MAX)) size. Atrial pacing did not change peak transducer tension or annular size. Calcium infusion also did not alter peak transducer tension (0.29+/-0.11 versus 0.32+/-0.10 N; P=NS) and only slightly reduced SL dimension (29.9+/-3.3 versus 29.3+/-3.5 mm; P<0.05). CONCLUSION: Isolated increase in heart rate or inotropic state did not alter peak stitch tension whereas enhanced contractile state decreased SL diameter minimally. These data, combined with those from our previous study, suggest that geometric (SL diameter) rather than hemodynamic parameters are the main determinants of "Alfieri stitch" tension. This implies that any interventional or surgical edge-to-edge repair performed without concomitant annular reduction to limit the SL dimension could expose the leaflet junction to forces which could limit repair durability.


Assuntos
Frequência Cardíaca/fisiologia , Implante de Prótese de Valva Cardíaca/métodos , Valva Mitral/fisiologia , Valva Mitral/cirurgia , Contração Miocárdica/fisiologia , Técnicas de Sutura , Animais , Implante de Prótese de Valva Cardíaca/instrumentação , Insuficiência da Valva Mitral/fisiopatologia , Insuficiência da Valva Mitral/cirurgia , Ovinos , Tensão Superficial , Técnicas de Sutura/instrumentação , Suturas
13.
J Heart Valve Dis ; 16(4): 349-58, 2007 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-17702358

RESUMO

BACKGROUND AND AIM OF THE STUDY: Undersized mitral annuloplasty has been widely employed for patients with ischemic mitral regurgitation. Beyond correction of mitral regurgitation, ring annuloplasty is postulated to normalize global left ventricular (LV) shape, thereby decreasing LV wall stress and promoting reverse LV remodeling. The effect of undersized annuloplasty on regional transmural LV wall thickening and strain patterns, however, has not been examined. METHODS: In nine sheep, transmural radiopaque beadsets were inserted into the anterobasal and equatorial lateral LV walls, with additional markers silhouetting the left ventricle and mitral annulus. Four-dimensional marker dynamics were studied with biplane videofluoroscopy (open-chest) before and after tightening a Paneth-type mitral annuloplasty suture. LV volumes, mitral dimensions, transmural circumferential, longitudinal, and radial systolic strains, and end-diastolic (ED) and end-systolic (ES) remodeling strains in the two LV regions were computed. RESULTS: In the anterobasal LV wall close to the mitral annulus, annuloplasty increased ED wall thickness and surprisingly reduced systolic radial strain (wall thickening) at all transmural depths. Radial subepicardial, midwall, and subendocardial wall-thickening strains at ES in the anterobasal LV site were 0.25 +/- 0.15, 0.33 +/- 0.16, and 0.47 +/- 0.29, respectively, before tightening the suture annuloplasty, compared to 0.13 +/- 0.12, 0.15 +/- 0.18, and 0.20 +/- 0.26 after tightening. In the equatorial lateral LV wall further away from the annulus, most LV transmural systolic and remodeling strains did not change. CONCLUSION: Simulated undersized annuloplasty acutely decreased transmural systolic LV wall thickening in the anterobasal region, without substantially affecting transmural deformations in the lateral LV wall. These acute effects of undersized annuloplasty require a better understanding as they may potentially be deleterious, and a direct ventricular approach may be needed as an adjunct to promote reverse LV remodeling.


Assuntos
Ventrículos do Coração/patologia , Ventrículos do Coração/fisiopatologia , Valva Mitral/cirurgia , Remodelação Ventricular/fisiologia , Animais , Fenômenos Biomecânicos , Meios de Contraste , Diástole/fisiologia , Fluoroscopia , Ventrículos do Coração/diagnóstico por imagem , Masculino , Valva Mitral/diagnóstico por imagem , Valva Mitral/fisiopatologia , Ovinos , Sístole/fisiologia , Pressão Ventricular/fisiologia
14.
Ann Thorac Surg ; 84(1): 51-60, 2007 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-17588382

RESUMO

BACKGROUND: Increased circumferential-radial shear in the midlateral left ventricle adjacent to ischemic myocardium has been observed during acute midcircumflex ischemia in open-chest animals. Extending this work, we studied transmural strains in closed-chest animals during acute proximal-circumflex (pCX) and proximal-left anterior descending (pLAD) occlusions. METHODS: Six sheep had radiopaque markers implanted to silhouette the left ventricle and measure regional systolic fractional area shortening; three transmural bead columns were inserted into the midlateral wall for transmural myocardial strain analysis. After 8 weeks, three-dimensional marker coordinates were obtained using biplane videofluoroscopy, both before and during separate 1-minute pLAD and pCX balloon occlusions. Systolic strains were assessed along circumferential, longitudinal, and radial axes, and then transformed into fiber strains using quantitative microstructural measurements. RESULTS: Acute pLAD occlusion and pCX occlusion caused similar hemodynamic insults. Systolic fractional area shortening revealed that the beads were in the ischemic territory during pCX occlusion, but adjacent to the ischemic myocardium during pLAD occlusion. Transmural circumferential strain and fiber shortening fell in the ischemic region during pCX occlusion, but remained normal when adjacent to the ischemic myocardium during pLAD occlusion. Circumferential-radial shear strain increased in the lateral left ventricle during pCX occlusion, but reversed in this same region during pLAD occlusion. Longitudinal-radial shear also decreased during pLAD occlusion. CONCLUSIONS: Reversal of lateral wall circumferential-radial shear and decreased longitudinal-radial shear during acute pLAD occlusion reflects altered mechanical interaction between ischemic and nonischemic myocardium. Increased circumferential-radial shear during pCX occlusion also reflects mechanical interaction. The direction of circumferential-radial shear deformation depends on the location of the adjacent ischemic territory.


Assuntos
Isquemia Miocárdica/fisiopatologia , Animais , Diástole , Modelos Animais de Doenças , Isquemia Miocárdica/patologia , Resistência ao Cisalhamento , Ovinos , Estresse Mecânico , Sístole , Função Ventricular Esquerda
15.
J Heart Valve Dis ; 16(1): 1-7, 2007 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-17315376

RESUMO

BACKGROUND AND AIM OF THE STUDY: Functional mitral regurgitation (FMR) often complicates dilated cardiomyopathy (DCM), and portends a poor prognosis. Debate over the optimal treatment continues, underscoring the present incomplete understanding of the patho-anatomic mechanisms of this disease. Studies of mitral tenting volume and tenting area, and echocardiographic measures of abnormal apical systolic leaflet geometry have linked mitral leaflet deformation with subvalvular left ventricular (LV) remodeling in chronic ischemic MR. The relative contributions of annular versus subvalvular remodeling in FMR due to DCM are less clear. Here, the validity of 3-D measurement of mitral deformation, tenting volume, as a correlate of MR in DCM, was tested. The ability of annular and subvalvular remodeling to predict mitral deformation was then determined. METHODS: Eight sheep underwent placement of radiopaque markers on the mitral annulus and leaflets. Global LV, annular and subvalvular geometry, as well as mitral tenting height, area and volume were calculated before (Control) and after the development of pacing-induced cardiomyopathy and MR (DCM). Multivariable regression determined which measure of mitral deformation was the best predictor of MR. Regression analysis was also used to find geometric predictors of mitral tenting volume. RESULTS: In a multivariable analysis, mitral tenting volume was the only independent predictor of severity of MR (r(2) = 0.79, standard error of estimate (SEE) = 0.58). Increased tenting volume correlated best with increased mitral annular septal-lateral diameter (r(2) = 0.67, SEE = 0.72). CONCLUSION: The 3-D tenting volume correlates best with severity of FMR. Mitral deformation (increased tenting volume) observed in DCM is predicted by annular dilation, but not by subvalvular LV remodeling. These data support the use of an undersized annuloplasty in DCM complicated by FMR, and may guide the rational design of new therapies for this vexing disease.


Assuntos
Cardiomiopatia Dilatada/complicações , Fluoroscopia , Coração/diagnóstico por imagem , Insuficiência da Valva Mitral/diagnóstico por imagem , Valva Mitral/diagnóstico por imagem , Animais , Estimulação Cardíaca Artificial , Modelos Animais de Doenças , Ecocardiografia , Eletrodos Implantados , Coração/fisiopatologia , Imageamento Tridimensional , Valva Mitral/fisiopatologia , Insuficiência da Valva Mitral/etiologia , Modelos Cardiovasculares , Ovinos , Gravação em Vídeo
16.
Eur J Cardiothorac Surg ; 31(3): 423-9, 2007 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-17223567

RESUMO

OBJECTIVE: Septal-lateral annular cinching ('SLAC') corrects both acute and chronic ischemic mitral regurgitation in animal experiments, which has led to the development of therapeutic surgical and interventional strategies incorporating this concept (e.g., Edwards GeoForm ring, Myocor Coapsys, Ample Medical PS3). Changes in left ventricular (LV) transmural cardiac and fiber-sheet strains after SLAC, however, remain unknown. METHODS: Eight normal sheep hearts had two triads of transmural radiopaque bead columns inserted adjacent to (anterobasal) and remote from (midlateral equatorial) the mitral annulus. Under acute, open chest conditions, 4D bead coordinates were obtained using videofluoroscopy before and after SLAC. Transmural systolic strains were calculated from bead displacements relative to local circumferential, longitudinal, and radial cardiac axes. Transmural cardiac strains were transformed into fiber-sheet coordinates (X(f), X(s), X(n)) oriented along the fiber (f), sheet (s), and sheet-normal (n) axes using fiber (alpha) and sheet (beta) angle measurements. RESULTS: SLAC markedly reduced (approximately 60%) septal-lateral annular diameter at both end-diastole (ED) (2.5+/-0.3 to 1.0+/-0.3 cm, p=0.001) and end-systole (ES) (2.4+/-0.4 to 1.0+/-0.3 cm, p=0.001). In the LV wall remote from the mitral annulus, transmural systolic strains did not change. In the anterobasal region adjacent to the mitral annulus, ED wall thickness increased (p=0.01) and systolic wall thickening was less in the epicardial (0.28+/-0.12 vs 0.20+/-0.06, p=0.05) and midwall (0.36+/-0.24 vs 0.19+/-0.11, p=0.04) LV layers. This impaired wall thickening was due to decreased systolic sheet thickening (0.20+/-0.8 to 0.12+/-0.07, p=0.01) and sheet shear (-0.15+/-0.07 to -0.11+/-0.04, p=0.02) in the epicardium and sheet extension (0.21+/-0.11 to 0.10+/-0.04, p=0.03) in the midwall. Transmural systolic and remodeling strains in the lateral midwall (remote from the annulus) were unaffected. CONCLUSIONS: Although SLAC is an alluring concept to correct ischemic mitral regurgitation, these data suggest that extreme SLAC adversely effects systolic wall thickening adjacent to the mitral annulus by inhibiting systolic sheet thickening, sheet shear, and sheet extension. Such alterations in LV strains could result in unanticipated deleterious remodeling and warrant further investigation.


Assuntos
Insuficiência da Valva Mitral/cirurgia , Complicações Pós-Operatórias/fisiopatologia , Disfunção Ventricular Esquerda/etiologia , Animais , Fenômenos Biomecânicos , Fluoroscopia , Frequência Cardíaca/fisiologia , Insuficiência da Valva Mitral/fisiopatologia , Isquemia Miocárdica/fisiopatologia , Ovinos , Estresse Mecânico , Volume Sistólico/fisiologia , Técnicas de Sutura , Disfunção Ventricular Esquerda/fisiopatologia , Remodelação Ventricular
17.
Ann Thorac Surg ; 83(1): 47-54, 2007 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-17184629

RESUMO

BACKGROUND: Ischemic mitral regurgitation (IMR) limits life expectancy and can lead to postinfarction global left ventricular (LV) dilatation and remodeling, the pathogenesis of which is not completely known. We tested the hypothesis that IMR perturbs adjacent myocardial LV systolic strains. METHODS: Thirteen sheep had three columns of miniature beads inserted across the lateral LV wall, with additional epicardial markers silhouetting the ventricle. One week later posterolateral infarction was created. Seven weeks thereafter, the animals were divided into two groups according to severity of IMR (< or = 1+, n = 7, IMR[-] vs > or = 2+, n = 6, IMR[+]). Four dimensional marker coordinates and quantitative histology were used to calculate ventricular volumes, transmural myocardial systolic strains, and systolic fiber shortening. RESULTS: Seven weeks after infarction, end-diastolic (ED) volume increased similarly in both groups, end-systolic (ES) E13 (circumferential-radial) shear increased in both groups, but more so in IMR(+) than IMR(-) (+0.12 vs 0.04, p < 0.005), and E12 (circumferential-longitudinal) shear increased in IMR(-) but not IMR(+) (+0.04 vs -0.01, p < 0.005). There were no significant differences in ED or ES remodeling strains or systolic fiber shortening between IMR(-) and IMR(+). CONCLUSIONS: An equivalent increase in LV end-diastolic (ED) volume in both groups, coupled with unchanged ED and end-systolic remodeling strains as well as systolic circumferential, longitudinal, and radial strains, argue against a global LV or regional myocardial geometric basis for the cardiomyopathy associated with IMR. Further, similar systolic fiber shortening in both groups militates against an intracellular (cardiomyocyte) mechanism. The differences in subepicardial E12 and E13 shears, however, suggest a causal role of altered interfiber (cytoskeleton and extracellular-matrix) interactions.


Assuntos
Insuficiência da Valva Mitral/fisiopatologia , Isquemia Miocárdica/complicações , Sístole , Função Ventricular Esquerda , Animais , Doença Crônica , Matriz Extracelular/metabolismo , Ovinos , Estresse Mecânico , Remodelação Ventricular
18.
J Heart Valve Dis ; 15(4): 465-73, 2006 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-16901037

RESUMO

BACKGROUND AND AIM OF THE STUDY: Aortic valve opening involves conformational changes of the aortic root, including the ventricular-aortic junction (VAJ), sinotubular junction (STJ), and cusps. Moreover, the aortic root is contiguous with the left ventricular outflow tract (LVOT), which changes diameter throughout the cardiac cycle. Aortic root expansion prior to valve opening facilitates outward displacement of aortic cusp attachments, which helps flatten the cusps, thereby reducing cusp stress and fatigue, ultimately enhancing functional valve durability. The mechanisms underlying aortic root expansion prior to valve opening, however, remain incompletely characterized. The study aim was to establish a link between such aortic root expansion and intraventricular volume shifts into the LVOT during isovolumic contraction (IVC). METHODS: Miniature radiopaque markers were implanted on the left ventricle, VAJ, STJ, and aortic cusps of six sheep. After one week, 3-D marker coordinates were obtained using biplane videofluoroscopy (60 Hz). Triangular areas at the VAJ and STJ were calculated; LV main chamber (non-LVOT) and LVOT volumes were calculated using multiple tetrahedra. End-diastole was defined as the peak of the electrocardiogram R-wave, and end-IVC when aortic cusp separation began. RESULTS: During IVC, blood within the left ventricle was redistributed to the LVOT: mean LVOT volume was increased (+0.2 +/- 0.1 ml, p = 0.009) as non-LVOT volume fell (-0.8 +/- 0.4 ml, p = 0.006). Concomitantly, the aortic root expanded as both VAJ and STJ areas increased (+0.23 +/- 0.12 cm2 (p = 0.005) and +0.25 +/- 0.14 cm2 (p = 0.007), respectively) prior to aortic cusp separation. CONCLUSION: Aortic root expansion prior to valve opening is closely related to intraventricular volume shifts into the LVOT during IVC. Such volume shifts may 'prime' the aortic valve for ejection. These findings expand our understanding of cardiac dynamics by showing that blood acts as a coupling link between various cardiac units. Preservation of these normal aortic root dynamics may enhance the efficacy and durability of aortic surgical interventions.


Assuntos
Aorta/fisiologia , Contração Miocárdica/fisiologia , Função Ventricular Esquerda/fisiologia , Animais , Eletrocardiografia , Fluoroscopia , Hemodinâmica , Cinética , Masculino , Modelos Cardiovasculares , Carneiro Doméstico , Gravação em Vídeo
19.
Circulation ; 114(1 Suppl): I518-23, 2006 Jul 04.
Artigo em Inglês | MEDLINE | ID: mdl-16820630

RESUMO

BACKGROUND: Normal mammalian mitral leaflets have regional heterogeneity of biochemical composition, collagen fiber orientation, and geometric deformation. How leaflet shape and regional geometry are affected in dilated cardiomyopathy is unknown. METHODS AND RESULTS: Nine sheep had 8 radio-opaque markers affixed to the mitral annulus (MA), 4 markers sewn on the central meridian of the anterior mitral leaflet (AML) forming 4 distinct segments S1 to S4 and 2 on the posterior leaflet (PML) forming 2 distinct segments S5 and S6. Biplane videofluoroscopy and echocardiography were performed before and after rapid pacing (180 to 230 bpm for 15+/-6 days) sufficient to develop tachycardia-induced cardiomyopathy (TIC) and functional mitral regurgitation (FMR). Leaflet tethering was defined as change of displacement of AML and PML edge markers from the MA plane from baseline values while leaflet length was obtained by summing the segments between respective leaflet markers. With TIC, total AML and PML length increased significantly (2.11+/-0.16 versus 2.43+/-0.23 cm and 1.14+/-0.27 versus 1.33+/-0.25 cm before and after pacing for AML and PML, respectively; P<0.05 for both), but only segments near the edge of each leaflet (S4 lengthened by 23+/-17% and S5 by 24+/-18%; P<0.05 for both) had significant regional remodeling. AML shape did not change and no leaflet tethering was observed. CONCLUSIONS: TIC was not associated with leaflet tethering or shape change, but both anterior and posterior leaflets lengthened because of significant remodeling localized near the leaflet edge. Leaflet remodeling accompanies mitral regurgitation in cardiomyopathy and casts doubt on FMR being purely "functional" in etiology.


Assuntos
Cardiomiopatia Dilatada/fisiopatologia , Insuficiência da Valva Mitral/fisiopatologia , Valva Mitral/fisiopatologia , Animais , Cateterismo Cardíaco , Estimulação Cardíaca Artificial , Cardiomiopatia Dilatada/complicações , Cardiomiopatia Dilatada/diagnóstico por imagem , Cardiomiopatia Dilatada/patologia , Fluoroscopia/métodos , Hemodinâmica , Valva Mitral/diagnóstico por imagem , Valva Mitral/ultraestrutura , Insuficiência da Valva Mitral/diagnóstico por imagem , Insuficiência da Valva Mitral/etiologia , Modelos Cardiovasculares , Ovinos , Taquicardia/complicações , Ultrassonografia , Gravação em Vídeo
20.
Circulation ; 114(1 Suppl): I600-9, 2006 Jul 04.
Artigo em Inglês | MEDLINE | ID: mdl-16820645

RESUMO

BACKGROUND: Undersized mitral annuloplasty, widely used for ischemic and functional mitral regurgitation (MR), has been proposed as an "annular solution to a ventricular problem." Beyond relief of MR, it is thought to improve global left ventricular (LV) shape, hence potentially reducing myocardial stress and promoting beneficial reverse LV remodeling. We previously observed that undersized annuloplasty inhibited systolic wall thickening at the LV base near the mitral annulus. In this study, we measured the effects of undersized annuloplasty on regional transmural LV wall fiber and sheet strains and wall thickening mechanisms. METHODS AND RESULTS: Nine sheep had transmural radiopaque beadsets surgically inserted into anterobasal and lateral equatorial LV regions, with additional markers silhouetting the LV and mitral annulus. 4-Dimensional marker dynamics were studied with biplane videofluoroscopy before and after tightening an adjustable Paneth-type mitral annuloplasty suture. Transmural circumferential, longitudinal, and radial systolic and remodeling strains in the subepicardium (20% depth), midwall (50%), and subendocardium (80%) in both regions were computed. Fiber and sheet angles from quantitative regional histology allowed transformation of these strains into local fiber (f), sheet (s), and sheet-normal (n) coordinates. Further analysis calculated the transmural contributions of sheet extension (E(ssc)), sheet thickening (E(nnc)), and sheet shear (E(snc)) to systolic wall thickening (E(33)). In the anterobasal region, undersized annuloplasty reduced systolic wall thickening (E33) by &50% at all transmural depths by inhibiting: (1) subendocardial systolic fiber shortening (-0.10+/-0.05 versus -0.04+/-0.05; P<0.05); (2) subepicardial (0.16+/-0.15 versus 0.09+/-0.08; P<0.05) and subendocardial (0.45+/-0.40 versus 0.19+/-0.18; P<0.05) systolic sheet thickening; (3) midwall sheet extension (0.22+/-0.12 versus 0.11+/-0.06; P<0.05); and (4) transmural sheet shear (subepicardium, -0.14+/-0.07 versus -0.08+/-0.07; midwall, 0.21+/-0.12 versus 0.10+/-0.11; subendocardium, -0.19+/-0.23 versus -0.11+/-0.16; P<0.05). In the remote lateral equatorial region, fiber-sheet strains and E33 were unchanged. CONCLUSIONS: In this acute animal study, undersized annuloplasty inhibited systolic wall thickening in the anterobasal region by reducing subendocardial systolic fiber shortening and laminar sheet wall thickening, but had no effects in a more distant LV region. This suggests that undersized mitral annuloplasty may have potentially deleterious effects on local myocardial mechanics.


Assuntos
Ventrículos do Coração/patologia , Valva Mitral/cirurgia , Técnicas de Sutura/efeitos adversos , Remodelação Ventricular/fisiologia , Animais , Fenômenos Biomecânicos , Complacência (Medida de Distensibilidade) , Hemodinâmica , Hipertrofia Ventricular Esquerda/etiologia , Hipertrofia Ventricular Esquerda/patologia , Hipertrofia Ventricular Esquerda/prevenção & controle , Fibras Musculares Esqueléticas/ultraestrutura , Período Pós-Operatório , Ovinos , Estresse Mecânico , Sístole , Função Ventricular Esquerda
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