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Mitral valve replacement after closed mitral commissurotomy.

Closed mitral commissurotomy (CMC) was performed at the National Heart Institute in 303 patients (73% women, 27% men; mean age 40 years) with acquired isolated mitral stenosis between 1954 and 1980. The average mean mitral valve gradient decreased from 14.2 +/- 0.4 to 5.3 +/- 0.4 mm Hg (p less than 0.001), and mitral valve area index increased from 0.7 +/- 0.03 to 1.4 +/- 0.9 cm2/m2 (p less than 0.001). The perioperative mortality was 2%. Ninety-two percent of patients improved one or more functional classes after CMC. Actuarial survival was 95%, 82% and 70% at 5, 10 and 15 years after CMC, respectively. Fifty-four patients (18%) required mitral valve replacement (MVR) a mean of 9.6 years after commissurotomy (range 1-26 years). Before CMC, factors associated with later MVR included preoperative functional class, calcification of the mitral valve, and the absence of an opening snap. After CMC, poor functional improvement, congestive heart failure, atrial fibrillation, and the necessity for a repeat CMC were associated with late MVR. Catheterization after CMC showed that patients who later required MVR had a smaller decrease in left atrial pressure (p less than 0.001), more mitral regurgitation (p less than 0.001), and were more likely to have pulmonary hypertension (p less than 0.05). The indications for MVR were residual stenosis with or without mild mitral regurgitation in 33 patients (61%), restenosis in 15 (28%), and moderate-to-severe regurgitation in six (11%). Perioperative mortality for valve replacement was 13%. Among survivors, 88% improved at least one functional class after valve replacement. Actuarial survival was estimated to be 95% at 5 years and 74% at 10 years after MVR. This study confirms that CMC provides excellent long-term hemodynamic and clinical improvement in appropriately selected patients. When symptomatic deterioration occurs late after CMC, MVR restores clinical and hemodynamic improvement in many patients. CMC continues to be performed at the National Heart Institute in selected patients with acquired mitral stenosis.

Adult↗

Patient survival characteristics after routine mitral valve repair for ischemic mitral regurgitation.

BACKGROUND: Ischemic mitral regurgitation has been associated with diminished survival compared with nonischemic mitral regurgitation. Conversion from mitral valve replacement to valve repair has improved prognosis, but it is unclear whether ischemic mitral regurgitation remains an independent predictor of outcome after mitral valve repair. METHODS: Five hundred thirty-five patients undergoing mitral valve repair (primarily rigid ring annuloplasty) with or without coronary bypass from 1993 through 2002 were reviewed retrospectively (ischemic mitral regurgitation, n = 141; nonischemic mitral regurgitation, n = 394). A Cox proportional hazards model evaluated survival as a function of 9 simultaneous covariates: ischemic versus nonischemic mitral regurgitation, age, sex, number of medical comorbidities, ejection fraction, New York Heart Association class, coronary disease, reoperation, and year of operation. RESULTS: According to univariable analysis, patients with ischemic mitral regurgitation had greater age, higher comorbidity, lower ejection fraction, higher New York Heart Association, and higher reoperation rate (all P < .001) compared with those having nonischemic mitral regurgitation. Univariable 30-day mortality was as follows: 4.3% for patients with ischemic mitral regurgitation versus 1.3% for patients with nonischemic mitral regurgitation (P = .01). Unadjusted 5-year mortality was as follows: 44% +/- 5% for patients with ischemic mitral regurgitation versus 16% +/- 3% for patients with nonischemic mitral regurgitation (P < .001). In the multivariable model, however, only the number of preoperative comorbidities and advanced age were independent predictors of survival (P < .0001), whereas ischemic mitral regurgitation, sex, ejection fraction, New York Heart Association class, coronary disease, reoperation, and year of operation did not achieve significance (all P > .19). After being adjusted for differences in all preoperative risk factors, survival was not statistically different between ischemic mitral regurgitation and nonischemic mitral regurgitation (P = .33). CONCLUSIONS: With routine application of rigid ring annuloplasty, long-term patient survival is more influenced by baseline patient characteristics and comorbidity than by ischemic cause of mitral regurgitation per se. Future risk assessment and decision making should be based on patient condition and should not be biased by ischemic cause of mitral regurgitation.

Age Factors↗

Application of the vena contracta method for the calculation of the mitral valve area in mitral stenosis.

OBJECTIVES: The vena contracta is the narrowest region of the regurgitant or stenotic jet just downstream the orifice and reflects the size of that orifice. This study was performed to assess the accuracy of the vena contracta width (VCW) in evaluating the severity of mitral stenosis (MS) and to compare the mitral valve area (MVA) determined by VCW with MVAs obtained by other more traditional echocardiographic methods. METHODS: We studied 59 patients (43 females, 42 +/- 14 years) with MS. VCW was measured in the apical four chamber view by Doppler color flow mapping. The largest diameter of the VCW during diastole was measured for at least three cardiac cycles and averaged. MVA was calculated from the following equation: pir(2), where r = VCW/2. MVA was also determined by planimetry, the pressure half-time method, and by the Gorlin formula. RESULTS: In this study, the width of the vena contracta ranged from 0.89 to 1.73 cm (mean 1.30 +/- 0.21). MVA, calculated based on the VCW, ranged from 0.63 to 2.35 cm(2) (mean 1.36 +/- 0.41). MVA by VCW (1.36 +/- 0.41 cm(2)) showed good correlations with three comparative techniques: (1) the cross-sectional area by planimetry (1.35 +/- 0.36 cm(2), mean difference = 0.21 +/- 0.16 cm(2), y = 0.91x + 0.14, r = 0.79, SEE = 0.26 cm(2), p < 0.001); (2) the area derived from the Doppler pressure half-time (1.27 +/- 0.32 cm(2), mean difference = 0.22 +/- 0.19 cm(2), y = 0.97x + 0.13, r = 0.76, SEE = 0.27 cm(2), p < 0.001), and (3) the area derived from the Gorlin equation in the 18 patients who underwent catheterization (1.27 +/- 0.35 cm(2), mean difference = 0.19 +/- 0.16, y = 0.98x + 0.05, r = 0.81, SEE = 0.26 cm(2), p < 0.001). CONCLUSIONS: These findings suggest that Doppler color flow imaging of the MS jet in the vena contracta can provide an accurate estimation of MVA and appears to be potentially applicable in the assessment of the severity of MS.

Adult↗

Mitral valve plasty for mitral regurgitation after blunt chest trauma.

A 21 year-old woman was admitted to our hospital because of chest and back pain after blunt chest trauma. On admission, consciousness was clear and a physical examination showed labored breathing. Her vital signs were stable, but her breathing gradually worsened, and artificial respiration was started. The chest roentgenogram and a subsequent chest computed tomographic scans revealed contusions, hemothorax of the left lung and multiple rib fractures. A transthoracic echocardiography (TTE) revealed normal left ventricular wall motion and mild mitral regurgitation (MR). TTE was carried out repeatedly, and revealed gradually progressive MR and prolapse of the posterior medial leaflet, although there was no congestive heart failure. After her general condition had recovered, surgery was performed. Intraoperative transesophageal echocardiography (TEE) revealed torn chordae at the posterior medial leaflet. The leaflet where the chorda was torn was cut and plicated, and posterior mitral annuloplasty was performed using a prosthetic ring. One month later following discharge, the MR had disappeared on TTE.

Accidents, Traffic↗

Importance of the "atrial kick" in determining the effective mitral valve orifice area in mitral stenosis.

Atrial fibrillation with a rapid ventricular response in patients with mitral stenosis (MS) is often accompanied by pulmonary congestion and reduced cardiac output owing to a diminished diastolic filling period and the loss of the end-diastolic left ventricular (LV) pressure increment. To test the hypothesis that loss of atrial contraction (atrial kick) also results in a decrease in effective mitral valve orifice area, 6 patients with pure, isolated MS were studied in sinus rhythm during atrial pacing and simultaneous atrioventricular pacing. Atrial pacing at 140 beats/min caused no significant change from baseline in cardiac output or mitral valve area, but there was a decrease in LV end-diastolic volume and ejection fraction as well as an increase in left atrial pressure and mean diastolic gradient. Simultaneous atrioventricular pacing (to eliminate atrial kick) induced a decrease in cardiac output (4.4 +/- 0.9 vs 5.2 +/- 0.8 liters/min at 110 beats/min, 4.2 +/- 0.9 vs 5.1 +/- 0.9 liters/min at 140 beats/min; p less than 0.05) and LV end-diastolic volume (77 +/- 27 vs 93 +/- 29 ml at 110 beats/min, 54 +/- 17 vs 65 +/- 19 ml at 140 beats/min; p less than 0.05), an increase in left atrial pressure (28 +/- 3 vs 20 +/- 5 mm Hg at 110 beats/min, 30 +/- 4 vs 25 +/- 5 mm Hg at 140 beats/min; p less than 0.05), and a decrease in mitral valve area (1.2 +/- 0.4 vs 1.4 +/- 0.5 cm2 at 110 beats/min, 1.2 +/- 0.4 vs 1.4 +/- 0.4 cm2 at 140 beats/min; p less than 0.05). Thus, loss of atrial kick may cause pulmonary congestion and reduced cardiac output in patients with MS, partly because of a decrease in effective mitral valve area.

Adult↗

[Mitral valve aneurysm associated with mitral insufficiency in absence of aortic insufficiency].

Two 31 year old patients were interned with cardiac insufficiency (functional class III). Case number one infective endocarditis with mitral valve 8 months before. Case number two had previous rheumatic disease. Both had severe mitral insufficiency and were submitted to replacement of mitral valve. Surgical findings included the presence of aneurysm mitral leaflet (posterior in case one and both in case two). The pathologic study showed mitral valve prolapse and signs of previous endocarditis in case one and rheumatic lesion in the other case.

Adult↗

Mitral valve repair for ischemic mitral insufficiency.

Over a 5-year period, 1,292 patients had operation on their native mitral valves. Ischemia was the cause of mitral insufficiency in 84 patients (6.5%). Sixty-five patients (77.4%) had mitral valve repair. Mean age was 66 +/- 10 years; 35 patients (53.8%) were women. Mean degree of preoperative insufficiency was 3.2 +/- 0.7; mean preoperative New York Heart Association functional class was 3.3 +/- 0.7. Eleven patients (16.9%) had acute and 54 (83.1%) had chronic mitral insufficiency. Valve prolapse was present in 26 patients (40%). Restrictive leaflet motion secondary to regional or global left ventricular dilatation occurred in 39 patients (60%). All patients had associated myocardial revascularization followed by transatrial valvuloplasty. Multiple techniques were employed to achieve valve competence: leaflet resection (3), chordal shortening (15), papillary muscle reimplantation (10), papillary muscle shortening (3), and annuloplasty (63). There were six (9.2%) hospital deaths (acute, 9.1%; chronic, 9.3% [not significant]; prolapse, 11.5%; restrictive, 7.7% [not significant]). The mean degree of postoperative mitral insufficiency was 0.6 +/- 0.8 in 51 patients. At a mean follow-up of 3.1 +/- 1.6 years, patient survival was 96% for patients with valve prolapse and 48% for those with restrictive leaflet motion (p = 0.02). New York Heart Association functional class was improved in all groups. Ischemic mitral insufficiency is an uncommon cause of mitral valve disease that is amenable to repair in the majority of cases of both acute and chronic onset. The operative mortality is low, and operation is associated with superior survival in patients with valve prolapse.

Aged↗