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Biomedical subjects

A DeAnda

Publications and source records attributed to A DeAnda.

At least 19 recordsLinked to original sources

Elective transplant pneumonectomy.

The use of a single lung transplant, modified with removal of the middle lobe of the donor right lung, has been described for a term neonate with respiratory distress secondary to right-sided congenital diaphragmatic hernia. The successful transplant allowed the patient to be successfully weaned from extracorporeal membrane oxygenation. Because of the early age of the patient at transplantation (3 weeks), it was unclear how the patient's left lung would develop, and there was uncertainty regarding the risk of life-time immunosuppression. By the age of 4 years, 10 months, she was demonstrating some failure to thrive, hypertension, and hirsutism, obvious side effects of chronic immunosuppression. The question was raised as to the potential for transplant pneumonectomy. A ventilation-perfusion scan demonstrated a decrease of right lung ventilation compared with the immediate postoperative period (27% versus 43%); right heart catheterization with balloon occlusion of the right main pulmonary artery suggested that the patient would tolerate right pneumonectomy. After discussion with the family, the patient underwent transplant pneumonectomy via a right posterolateral approach. Findings at the time of operation included mild to moderate adhesions as well as recurrence of the diaphragmatic hernia. She tolerated the procedure well and was discharged home on the fifth postoperative day with cessation of her immunosuppression. The immediate and medium-term success of this procedure suggests the potential for temporizing transplantation as a palliation to promote survival until the remaining native lung can provide sufficient ventilation.

Child, Preschool

Estimation of regional left ventricular wall stresses in intact canine hearts.

Left ventricular (LV) wall stress is an important element in the assessment of LV systolic function; however, a reproducible technique to determine instantaneous local or regional wall stress has not been developed. Fourteen dogs underwent placement of twenty-six myocardial markers into the ventricle and septum. One week later, marker images were obtained using high-speed biplane videofluoroscopy under awake, sedated, atrially paced baseline conditions and after inotropic stimulation (calcium). With a model taking into account LV pressure, regional wall thickness, and meridional and circumferential regional radii of curvature, we computed average midwall stress for each of nine LV sites. Regional end-systolic and maximal LV wall stress were heterogeneous and dependent on latitude (increasing from apex to base, P < 0.001) and specific wall (anterior > lateral and posterior wall stresses; P = 0. 002). Multivariate ANOVA demonstrated only a trend (P = 0.056) toward increased LV stress after calcium infusion; subsequent univariate analysis isolated significant increases in end-systolic LV wall stress with increased inotropic state at all sites except the equatorial regions. The model used in this analysis incorporates local geometric factors and provides a reasonable estimate of regional LV wall stress compared with previous studies. LV wall stress is heterogeneous and dependent on the particular LV site of interest. Variation in wall stress may be caused by anatomic differences and/or extrinsic interactions between LV sites, i.e., influences of the papillary muscles and the interventricular septum.

Animals

Effects of partial left ventriculectomy on left ventricular geometry and wall stress in excised porcine hearts.

BACKGROUND AND AIMS OF THE STUDY: Partial left ventriculectomy (PLV, the "Batista procedure") has received recent attention as a surgical treatment for patients with dilated cardiomyopathy and end-stage congestive heart failure; however, the mechanisms responsible for the purported short-term improvement in left ventricular (LV) function are poorly characterized. This study examined the effects of PLV on three-dimensional (3-D) LV geometry, wall stress and passive LV mechanics in excised porcine hearts. METHODS: Thirty-three radio-opaque tantalum markers were placed into the LV wall of nine freshly excised, porcine hearts (arrested with cold crystalloid cardioplegia) to measure three dimensional LV geometry and volume. Simultaneous biplane video-fluoroscopic marker images and LV pressure (LVP) were obtained over a wide range of LV volumes generated with an intracavitary LV balloon. Measurements were repeated after excision of a diamond-shaped wedge of the lateral LV wall between the papillary muscles (mean: 8 x 3 x 2 cm; 10 +/- 2% of LV mass). RESULTS: Following PLV, the ventricle assumed a more elliptical shape (LV eccentricity rose from 0.71 +/- 0.15 to 0.81 +/- 0.09, p < 0.01). Circumferential radius of curvature fell in the anterior, lateral and posterior regions at the equatorial level (p < 0.01), while the posterior wall longitudinal radius of curvature increased at the basal, equatorial and apical levels (p < 0.01). No change in the longitudinal radius of curvature was observed in the other walls. These changes were associated with a fall in average equatorial LV wall stress from 176 +/- 34 to 159 +/- 30 kdyne/cm2 (p < 0.02). Myocardial stiffness (slope of the LV stress-strain relation) fell from 12.4 +/- 4.0 to 10.0 +/- 3.4 (p < 0.004), indicating lower global LV wall stress at any given LV size. CONCLUSIONS: In flaccid porcine hearts, the left ventricle became more elliptical and chamber size decreased after PLV, which resulted in lower regional LV wall stress and myocardial stiffness. LV ellipticalization may improve systolic LV performance by decreasing regional LV afterload (e.g., systolic wall stress), which would thereby lower myocardial oxygen consumption and improve LV pump efficiency.

Animals

Septal function during left ventricular unloading.

BACKGROUND: Left ventricular (LV) unloading with mechanical support devices alters biventricular geometry and impairs right ventricular (RV) contractility, but its effect on septal systolic function remains unknown. METHODS AND RESULTS: To evaluate the effects of LV volume and pressure unloading on septal geometry and function, LV preload was abruptly reduced by clamping left atrial pressure between 0 and -2 mm Hg in seven open-chest, anesthetized dogs by use of a pressure-control servomechanism to withdraw blood from the left atrium. With left atrial pressure clamping, maximal LV pressure decreased 30 +/- 12% (mean +/- SD) (P < .0001) and LV end-diastolic cross-sectional area (determined by two-dimensional echocardiography) decreased by 53 +/- 16% (P < .0001). This caused the septum to shift toward the left (RV septal free-wall dimension increased; P < .004) and flatten (radius of curvature increased; P < .0002), while LV septal free-wall dimension fell (P < .0001). Septal end-diastolic thickness increased 23 +/- 15% (P < .0005), reflecting a decline in septal preload. Systolic septal thickening decreased (P < .002), while systolic septal output (Septal Output = Septal Thickening x Heart Rate) fell from 30 +/- 17 to 15 +/- 22 cm/min (P < .002). This was associated with movement along the septal Frank-Starling equivalent (septal output versus end-diastolic septal thickness [preload] relation) to a less productive portion of the curve. CONCLUSIONS: LV unloading not only altered interventricular septal geometry but also reduced septal systolic thickening and output, all of which may contribute to impaired RV contractility during mechanical LV support.

Animals

Complete unloading alone may not adequately protect the left ventricle.

BACKGROUND: The benefit of left ventricular (LV) unloading for preserving LV function is commonly accepted, but its efficacy remains incompletely defined. METHODS: We studied the influence of complete LV unloading on LV systolic and diastolic mechanics using an in situ isovolumic preparation with two different coronary perfusion pressures (CPPs) in 12 dogs during prolonged normothermic cardiopulmonary bypass. RESULTS: Multivariate analysis of covariance with time as a covariate revealed that a high CPP (143 +/- 36 mm Hg; n = 6) was associated with better preservation of systolic LV function over time as assessed by LV end-systolic elastance (p < 0.001) and the end-systolic pressure-volume relation physiologic intercept (p < 0.001) compared with a moderate CPP (107 +/- 18 mm Hg; p < 0.005 versus a high CPP by t-test; n = 6). Dobutamine (2 micrograms.kg-1.min-1) improved LV end-systolic elastance (p < 0.005) and LV physiologic intercept (p < 0.01) only in the high-CPP group. Conversely, impaired LV diastolic function (as measured by LV stiffness) was observed (p < 0.001) with a high CPP, but did not change with a moderate CPP. CONCLUSIONS: These observations in canine hearts suggest that complete LV unloading may not preserve LV systolic function adequately over time when CPP is maintained in the accepted clinical range. A higher CPP is required to prevent deterioration over prolonged cardiopulmonary bypass times, but diastolic dysfunction still occurs.

Animals

Effects of mechanical left ventricular support on right ventricular diastolic function.

BACKGROUND: Previous studies have shown that left ventricular (LV) unloading alters right ventricular (RV) systolic mechanics, but the effects of LV assist device (LVAD) support on RV diastolic function have not been examined in intact subjects. METHODS: Seven closed-chest, sedated dogs were studied after placement of a LVAD and 27 myocardial markers; in four animals, a right coronary artery occluder was placed to induce acute RV free wall ischemia. Data were recorded with the LVAD off and LVAD on before (control) and during RV ischemia. Assessment of RV diastolic function included RV myocardial relaxation (time constant of isovolumic pressure decay [tau]), RV chamber stiffness (slope of the end-diastolic pressure-volume relation), and RV filling dynamics (peak filling rate and mean filling rate during early diastole). RESULTS: During control, full LVAD support did not alter RV tau (104 +/- 67 msec LVAD off versus 109 +/- 49 msec LVAD on, p > 0.50), RV diastolic stiffness (0.56 +/- 0.31 versus 0.51 +/- 0.25 mm Hg/ml, p > 0.20), peak filling rate (107 +/- 51 versus 119 +/- 82 ml/sec, p > 0.35) or mean filling rate during early diastole (32 +/- 28 versus 27 +/- 18 ml/sec, p > 0.40). With right coronary artery occlusion, RV tau rose to 136 +/- 33 msec (p < 0.001), and RV diastolic stiffness fell to 0.29 +/- 0.13 mm Hg/ml (p < 0.005), but there was no change in RV filling rates (p > 0.20). With mechanical LV support during acute RV ischemia, there was no additional change in RV tau, diastolic stiffness, or filling dynamics (p > 0.20). CONCLUSIONS: In intact animals, RV ischemia impaired RV relaxation and decreased chamber stiffness, but there was no change in RV filling rates. Mechanical LV support, during the control state and with RV ischemia, did not affect RV diastolic performance.

Animals

Effects of chordal disruption on regional left ventricular torsional deformation.

BACKGROUND: Chordal excision during mitral valve replacement (MVR) impairs left ventricular (LV) systolic function, but the mechanisms responsible for this change remain unclear. This study was performed to determine the influence of annular papillary continuity on regional LV torsional deformation acutely following MVR with and without chordal preservation. METHODS AND RESULTS: Twenty-seven dogs underwent placement of LV subepicardial myocardial markers to measure regional LV systolic torsional deformation throughout the left ventricle. After 1 week, biplane fluoroscopic marker images were obtained pre-MVR in the baseline state and with inotropic stimulation (calcium, 15 mg/kg). Dogs were then randomized to undergo a sham procedure with cardiopulmonary bypass but no valve replacement (n = 6), conventional MVR with chordal excision (n = 7), or chordal-sparing MVR with preservation of the posterior leaflet and reattachment of the anterior leaflet chordae to either the anterior annulus (n = 7) or posterior annulus (n = 7). After chest closure and recovery from anesthesia, post-MVR data were acquired. At the LV apical level, maximal regional LV systolic torsional deformation (theta max) did not fall from pre-MVR values in the baseline state after the sham procedure or anterior or posterior chordal-sparing MVR procedure (P > or = .10). After conventional MVR, baseline theta max fell by 66% to 81% in the anteroseptal, anterior, anterolateral, and lateral regions (P < .05). With calcium, theta max fell in the anteroseptal through lateral regions and the septal wall (P < .05) but did not change in the posterior regions (P > or = .10). With calcium, theta max did not fall in any region after either the sham procedure or anterior MVR; however, after posterior chordal-sparing MVR, theta max fell in the lateral, posterior, and posteroseptal regions (P < .05). CONCLUSIONS: Sham operation and anterior chordal-sparing MVR did not affect regional LV torsion; however, loss of normal valvular-ventricular integrity with conventional MVR reduced regional LV systolic torsion in the anterior and lateral LV regions. Posterior chordal-sparing MVR impaired torsion only after calcium administration. The deleterious effects of chordal excision may be due in part to perturbation of regional systolic torsional deformation.

Animals

Left ventricular diastolic suction with zero left atrial pressure in open-chest dogs.

We investigated left ventricular (LV) diastolic volume changes (suction inflows) with left atrial pressure (LAP) clamped to ambient pressure in six open-chest, anesthetized dogs. The left atrium was cannulated and connected to a servo pump, and LAP was clamped to a set point near 0 mmHg for four beats by withdrawing blood. LAP averaged 5.88 +/- 1.44 mmHg before the clamp and fell to 0.74 +/- 0.61 mmHg (P < 0.0001) after the clamp. During the first clamped beat a transmitral pressure gradient of 1.0 +/- 0.6 mmHg was observed, resulting in LV filling of 2.6 +/- 1.8 ml. Subsequent beats developed suction-driven (mean negative LV pressure: -1.5 +/- 1.3 mmHg; P < 0.005 vs. zero) LV filling of 4.5 +/- 2.8 ml/beat with a peak transmitral pressure gradient of 1.7 +/- 0.6 mmHg. These data are consistent with the hypothesis that LV suction can be an important filling mechanism under condition in which LV end-systolic volume is reduced, e.g., reduced filling pressures, high heart rates, exercise, or increased inotropic drive.

Animals

Improving methods of chordal sparing mitral valve replacement. Part I: A new, non-distorting isovolumic balloon preparation for the left ventricle with intact mitral subvalvular apparatus.

BACKGROUND AND AIMS OF THE STUDY: The conventional isovolumic preparation with a single balloon, although employed for many years, distorts the chordae tendineae of the intact mitral apparatus. MATERIAL AND METHODS: Anterior balloon (one balloon inserted via a slit in the anterior leaflet) and double balloon (two balloons through slits in both leaflets) methods were developed and compared to the conventional method and natural conditions (LV filled with saline, or 'gold standard') in six ex-vivo, non-beating porcine hearts. RESULTS: LV volumes measured by the double balloon, anterior balloon, and conventional techniques all correlated highly with natural conditions, but the conventional method had a lower correlation coefficient (r = 0.99, 0.98, p < 0.0001 and < 0.001; and 0.92 p < 0.01, respectively at a left ventricular (LV) pressure of 50 mmHg, while r = 1.00, 1.00, both p < 0.0001; and 0.92, p < 0.01, respectively at 70 mmHg). Epicardial echocardiography revealed that the double balloon technique filled the space behind the chordae while maintaining normal chordal geometry, but the anterior balloon alone did not (p < 0.001). Similarly, the conventional method did not fill the LV outflow tract (p < 0.001) and had a mitral annular shift toward the left atrium (p < 0.001). Photography of both leaflets showed that only the double balloon method maintained normal geometry as assessed by leaflet length ratio; the other methods produced distorted geometry compared to natural filling conditions. CONCLUSIONS: With an intact mitral valve, the double balloon method provides more precise LV pressure-volume measurements while preserving the normal geometry of the chordae tendineae and mitral annulus.

Animals

Improving methods of chordal-sparing mitral valve replacement--Part II: Optimal tension for chordal resuspension.

BACKGROUND AND AIMS OF THE STUDY: Although chordal-sparing mitral valve replacement (MVR) is popular, the optimal tension for preserved or reattached chordae tendineae (CT) or for synthetic (ePTFE) CT is unknown. METHODS: Changes in left ventricular (LV) systolic and diastolic function in nine dogs with anterior CT preservation with different levels of end-diastolic chordal tension (0, 10, 20, 30, and 40 gm, measured by spring scale) were compared using an isovolumic double-balloon technique. RESULTS: LV function data at each level of tension were compared to control data using 0 gm of tension. Systolic function assessed as Emax (mmHg/ml) at 10, 20, 30, and 40 gm versus control was: 5.7 +/- 2.6/4.9 +/- 2.7, 4.7 +/- 2.2/4.7 +/- 2.7, 4.8 +/- 3.1/4.7 +/- 2.8, and 5.0 +/- 3.5/5.1 +/- 2.9; delta improvement from the control at 10 gm was larger than that at 20 gm (p < 0.05 by paired t-test). Diastolic function assessed as diastolic stiffness (Sd, mmHg/ml) at the same CT tensions versus control was: 0.56 +/- 0.23/0.56 +/- 0.34, 0.53 +/- 0.30/0.57 +/- 0.37, 0.56 +/- 0.39/0.52 +/- 0.38, and 0.60 +/- 0.36/0.58 +/- 0.39; delta Sd was smaller at 20 gm than at 30 gm (p = 0.05 by ANOVA). LV equilibrium volume (Veq, ml) was: 10.7 +/- 3.9/10.1 +/- 3.9, 9.6 +/- 3.4/9.9 +/- 3.8, 10.8 +/- 4.0/10.3 +/- 3.4, and 10.6 +/- 4.0/10.6 +/- 3.5; delta Veq was larger (i.e., more compliant chamber) at 10 gm than at 40 gm (p < 0.05 by rm-ANOVA). Arrhythmias precluding satisfactory measurements occurred in two dogs at 30 or 40 gm CT tension. CONCLUSIONS: With chordal tension exceeding 10 gm, which is barely palpable, there was no additional enhancement in LV systolic function compared to zero CT tension. Veq was largest at the lowest tension; LV diastolic function (assessed as Sd) deteriorated with tensions of 30 gm or higher. The optimal end-diastolic tension of preserved CT should enhance systolic LV performance without adversely affecting diastolic function; in this isovolumic model, minimal CT tension (10 gm) best met these goals. Excessive tension may negate the potential hemodynamic benefits of chordal preservation during mitral valve replacement.

Animals

Improving methods of chordal-sparing mitral valve replacement--Part III: Optimal direction for artificial chordae.

BACKGROUND AND AIMS OF THE STUDY: The optimal direction to preserve artificial chordae tendineae (CT) during mitral valve replacement (MVR) is not known, especially in regard to the response to inotropic stimulation which simulates exercise conditions. METHODS: Using a non-distorting isovolumic balloon technique, we compared left ventricular (LV) systolic and diastolic mechanics in 11 dogs in a control state (no chordal sparing) and with four different methods of chordal preservation: posterior, anterior, oblique (anterior papillary muscle chordae directed anteriorly and others posteriorly, the direction which theoretically augments LV systolic twist), and counter-oblique (counter, chordae preserved in directions opposite to oblique). RESULTS: Before dobutamine, delta Emax from the control was: 0.32 +/- 0.82, 0.10 +/- 0.43, 0.64 +/- 1.07, and 0.51 +/- 0.78 (anterior, posterior, oblique, and counter method, respectively). With dobutamine (3 mg/kg/min), delta Emax (mmHg/ml) was: 0.41 +/- 1.21, -0.13 +/- 0.75, 0.59 +/- 0.82*, and -0.34 +/- 0.71. Before dobutamine, delta LV stiffness (Sd, mmHg/ml) was -0.01 +/- 0.09, -0.02 +/- 0.12, 0.02 +/- 0.10, and 0.01 +/- 0.12; with dobutamine it was 0.01 +/- 0.09, 0.00 +/- 0.15, 0.03 +/- 0.15, and -0.06 +/- 0.11. Similarly, before dobutamine delta LV equilibrium volume (Veq) was -1.2 +/- 3.8, -0.3 +/- 3.0, -0.7 +/- 2.7, and -0.2 +/- 3.5, whereas with dobutamine zeta eq was -0.1 +/- 1.1, -0.4 +/- 0.8, 0.6 +/- 1.7, and -0.4 +/- 1.1. (Mean +/- S.D.; *p = 0.005 posterior and counter by ANOVA; p = NS (< 0.06) versus counter and posterior by ANOVA). CONCLUSIONS: The oblique method enhanced systolic LV function both with and without dobutamine, while a tendency towards better diastolic LV function (Veq) was observed with dobutamine. The anterior method was next best in preserving systolic function, both with and without dobutamine. LV diastolic function tended to deteriorate with dobutamine in the posterior group. Systolic function with the counter method deteriorated with dobutamine. These results warrant further study in an ejecting model to investigate LV systolic and diastolic mechanics with the oblique method of CT preservation, including interactions with LV systolic twist and diastolic recoil.

Animals

Left ventricular function, twist, and recoil after mitral valve replacement.

BACKGROUND: Preservation of the mitral subvalvular apparatus during mitral valve replacement (MVR) has become more popular, in part because of the clinically and experimentally demonstrated more optimal left ventricular (LV) performance after surgery; the mechanisms responsible for this beneficial influence, however, have not been clearly elucidated. METHODS AND RESULTS: Fourteen dogs underwent placement of 26 myocardial markers into the LV and septum. One week later, the animals were studied while awake, sedated, and atrially paced (120 beats per minute) both under baseline conditions and after inotropic stimulation (calcium). The animals then underwent MVR and were randomized into either chord-sparing (MVR-Intact) or chord-severing (MVR-Cut) techniques. Two weeks later, the animals were studied under the same conditions. LV systolic function was assessed by the slope of the end-systolic pressure-volume relation (Ees); early LV diastolic filling was analyzed by the pressure-time constant of relaxation (tau). The instantaneous longitudinal gradient of torsional deformation for the LV (twist) was also calculated, as were the changes in twist with respect to time during systole and early diastole (LV recoil). Intergroup comparison showed a trend toward increased contractility (Ees, P = .061, before versus after MVR), as well as faster relaxation for the MVR-Intact group. Concurrent analysis of LV systolic function and the rate of systolic twist revealed a significant inverse relation, which disappeared after MVR when the chordae were severed. CONCLUSIONS: These observations suggest that the mitral subvalvular apparatus acts as a modulator of LV systolic torsional deformation into LV pump (or ejection) performance.

Animals

Exploring better methods to preserve the chordae tendineae during mitral valve replacement.

BACKGROUND: It is not known how best to resuspend the mitral chordae tendineae during mitral valve replacement to optimize postoperative left ventricular (LV) systolic and diastolic function. METHODS: Six different techniques to preserve the chordae during mitral valve replacement were compared in 12 dogs using a nondistorting isovolumic technique: conventional, all chordae severed; anterior, all chordae preserved anteriorly; partial, anterior papillary muscle chordae preserved anteriorly; posterior, all chordae preserved posteriorly; oblique, anterior papillary muscle chordae directed anteriorly and posterior papillary muscle chordae posteriorly; and counter, opposite of oblique chordal direction. Control measurements (no chordal tension) were recorded between each experimental condition. RESULTS: The oblique method tended to have the best LV systolic function versus the conventional method (Emax = 4.0 +/- 1.8 versus 3.3 +/- 1.2 mm Hg/mL [mean +/- standard deviation]; p = 0.08 by repeated-measures analysis of variance; physiologic intercept Ees100 = 20.3 +/- 8.6 mL [p < 0.05 versus control]), with no major change in LV diastolic stiffness. The posterior method had a lower Emax (3.3 +/- 1.2 mm Hg/mL) than the oblique method, but a similar Ees100 (20.8 +/-8.1 mL; p < 0.05 versus control) and the best diastolic LV performance (LV diastolic stiffness = 0.46 +/- 0.23 mm Hg/mL). The counter method also had good systolic function (Emax = 3.8 +/- 1.2 mm Hg/mL; Ees100 = 19.7 +/- 7.5 mL; p < 0.05 versus control), but had less favorable diastolic properties (0.65 +/- 0.37 mm Hg/mL; p < 0.05 by repeated-measures analysis of variance versus posterior). CONCLUSIONS: In this isovolumic preparation in normal canine hearts, the oblique method of chordal resuspension was associated with the best LV systolic function, whereas the counter technique impaired LV diastolic function. These preliminary results warrant further study in ejecting and failing hearts to determine conclusively which chordal orientation best preserves LV performance after mitral valve replacement.

Animals

A method to assess endocardial regional longitudinal curvature of the left ventricle.

Knowledge of the instantaneous geometry of the left ventricular (LV) chamber is necessary to calculate LV function and wall stresses. We describe a method utilizing myocardial markers that does not rely on any a priori assumptions of global LV geometry. Five dogs underwent placement of 25 endocardial and 3 epicardial miniature LV markers. Six weeks later, the animals were studied during conscious closed-chest conditions. The three-dimensional coordinates of the LV markers were used to compute longitudinal fitted curves for LV walls and septum during steady-state conditions; endocardial radii of curvature (rcurv) were then computed for each region at the midequatorial (rcurv-eq) and apical levels. There was a uniform decrease in rcurv in each LV wall during systole (compared with diastole, P < 0.01); at end systole, rcurv was regionally heterogeneous between opposing walls, e.g., anterior and posterior rcurv-eq values were 17.2 +/- 2.0 and 17.7 +/- 1.8 (SD) cm, respectively (P < 0.05). At end diastole, only septal-lateral rcurv-eq was different (16.9 +/- 2.1 vs. 18.7 +/- 1.3 cm: P < 0.05). Normalization of rcurv (to instantaneous LV volume) removed the systolic-diastolic differences, but a similar pattern of regional heterogeneity persisted. The data presented pertain to the LV endocardial surface, but the method described can be applied to the epicardial surface as well; this new method offers promise in assessing dynamic changes in longitudinal LV endocardial curvature.

Analysis of Variance

Experimental evaluation of different chordal preservation methods during mitral valve replacement.

During chordal-sparing mitral valve replacement (MVR), some recommend anatomic reattachment of the anterior leaflet chordae to the anterior annulus; others advocate shifting the chordae to the posterior annulus. To compare the results of these techniques with those of conventional MVR (total chordal excision), 21 dogs were studied 5 to 12 days after implantation of tantalum markers to measure left ventricular volume and geometry. One to 3 weeks later, animals underwent conventional MVR (n = 7) or chordal-sparing MVR with either anterior chordal reattachment (n = 7) or posterior transposition (n = 7). Contractility was assessed using physiologic volume intercepts for end-systolic elastance, preload recruitable stroke work, and the relationship of the maximum rate of change of left ventricular pressure to the end-diastolic volume. The physiologic intercept for end-systolic elastance did not change after anterior or posterior MVR, but increased from 60 +/- 14 mL before MVR to 72 +/- 17 mL with conventional MVR (p < 0.002), indicating impaired left ventricular contractility. Similarly, the physiologic intercept for preload recruitable stroke work and the relationship of the maximum rate of change of left ventricular pressure to the end-diastolic volume increased 22% +/- 13% and 28% +/- 13%, respectively, after conventional MVR, but neither changed after anterior or posterior MVR. Although the end-diastolic pressure-volume relationship did not change with either chordal-sparing technique, its slope increased 98% +/- 73% after conventional MVR (p < 0.008). Thus, although chordal preservation maintained better systolic and diastolic function, there was no substantial difference between the results of the anterior and posterior chordal-sparing techniques in this model.

Animals

Pilot study of the efficacy of a thrombin inhibitor for use during cardiopulmonary bypass.

Heparin is normally used for anticoagulation during cardiopulmonary bypass (CPB), but its use is contraindicated in patients with a history of heparin-induced thrombocytopenia, heparin-provoked thrombosis, or both. Heparin therapy can also be ineffective due to heparin resistance. A short-acting, oligonucleotide-based thrombin inhibitor (thrombin aptamer) may potentially serve as a substitute for heparin in these and other clinical situations. We tested a novel thrombin aptamer in a canine CPB pilot study to determine its anticoagulant efficacy, the resultant changes in coagulation variables, and the aptamer's clearance mechanisms and pharmacokinetics. Seven dogs were studied initially: Four received varied doses of the aptamer (to establish the pharmacokinetic profile) and 3 received heparin. Subsequently, 4 other dogs underwent CPB, receiving a constant infusion of the aptamer before CPB (to characterize the baseline coagulation status), with partial CPB and hemodilution, during 60 minutes of total CPB, and, finally, after a 2-hour recovery period. At a 0.5 mg.kg-1.min-1 dose, the activated clotting time rose with aptamer infusion from 106 +/- 12 seconds to 187 +/- 8 seconds (+/- 1 standard deviation) (p = 0.014), increased further with hemodilution (to 259 +/- 41 seconds; p = 0.017), and was even more prolonged during total CPB (> 1,500 seconds; p < 0.001). This later increase in the activated clotting time paralleled a rise in the plasma concentration of the thrombin aptamer during total CPB, as determined by high-performance liquid chromatography.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Left atrial pressure-clamp servomechanism demonstrates LV suction in canine hearts with normal mitral valves.

A novel technique is presented to study suction of the in situ left ventricle in open-chest experimental animals without requiring cardiopulmonary bypass or disturbing the native mitral valvular apparatus. In 17 dogs, left ventricular pressure (LVP) and left atrial pressure (LAP) were measured, the left atrium was cannulated and connected to a servo pump, and LAP was controlled to a setpoint near 0 mmHg by withdrawing blood from the left atrium. Heart rate [103 +/- 17 (SD) min-1], peak pressure (100 +/- 13 mmHg), minimum pressure (1.4 +/- 0.8 mmHg), and maximum rate of change of pressure with respect to time during isovolumic contraction and relaxation (2,506 +/- 775 and -1,761 +/- 855 mmHg/s, respectively) were normal. Servo control of LAP was possible to +/- 1 mmHg. LV suction was demonstrated in each heart (mean negative LVP -2.3 +/- 1.1 mmHg; P < 0.0001). This new technique demonstrates that the left ventricle can generate negative diastolic suction pressures when examined in vivo and in situ with an undisturbed mitral valve and physiologically normal preload and afterload. This adds to a growing body of evidence that, under appropriate circumstances, the heart can suck blood into itself and thereby aid in its own filling.

Animals