Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “MITRAL VALVE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 289 records · Page 16Linked to original sources

[Plastic and reconstructive surgery of the mitral valve].

The mitral valve replacement is a common and live-saving procedure, many complications may occur as therefore: endocarditis, thromboembolism, and bleedings because the lifelong coumarin medication. Therefore, reconstruction the patient's own mitral valve may cut many problems afrementioned. Mitral valve is composed by 6 anatomic elements. For each, mitral stenosis, incompetence or combination of both, typical patho-anatomical changes exist. Before surgical correction these lesions want be recognized during surgery and appropriate correction selected. The correction may preserve the physiologic entity and function of mitral valve for long time.

Humans↗

[Successful mitral valve plasty for mitral regurgitation combined with dilated cardiomyopathy in Noonan's syndrome].

We have experienced a mitral valve plasty for mitral regurgitation combined with dilated cardiomyopathy in a 21-year-old male patient with Noonan's syndrome, who had suffered from recurrent congestive heart failure. In echocardiography, severe mitral regurgitation and prolapse of the posterior mitral leaflet were noted. The left ventricle was dilated and the function was severely deteriorated. The plasty consisted of plication of the prolapsed posterior leaflet and annuloplasty with Carpentier ring. Intraoperative biopsy of the myocardium of the left ventricle showed an appearance consisting with dilated cardiomyopathy. Postoperatively the mitral regurgitation disappeared and the patient returned to his ordinary life.

Adult↗

Actuarial comparison of Hancock porcine and prosthetic disc valves for isolated mitral valve replacement.

From July 1970 through December 1974, 109 patients underwent isolated mitral valve replacement (MVR). A Harken prosthetic disc valve (DVR) was used in 53 patients and glutaraldehyde-preserved Hancock porcine xenograft (PVR) in 56 patients. The functional class, distribution of mitral valve pathology, and incidence of atrial fibrillation were similar in both groups. There were no operative and three (5.5%) late deaths in the PVR group and two (3.8%) operative and ten (19.5%) late deaths in the DVR group. Anticoagulants were not used in the PVR group; there were 3 nonfatal emboli (10%), all occurring in patients with atrial fibrillation and large left atria. Although anticoagulants were used there were 14 emboli (five in patients who died, nine nonfatal) in the DVR group (26.4%). In our experience, there is a significant reduction in morbidity and mortality, primarily from a reduced risk of thromboemboli, if a porcine valve is used for MVR. Anticoagulants should be used in patients with atrial fibrillation and enlarged left atria regardless of the type of valve used.

Adult↗

Mitral valve prolapse.

Mitral valve prolapse is a common mitral valve disorder manifested clinically as a midsystolic click and/or a late systolic murmur (the click-murmur syndrome) and pathologically as billowing or prolapsing mitral leaflets (the floppy valve syndrome). Not only is it one of the two most common congenital heart diseases and the most common valve disorder diagnosed in the United States, but it is also prevalent throughout the world. Mitral valve prolapse may be associated with a variety of other conditions or diseases. Diagnosis of mitral valve prolapse should be made on clinical grounds and, if necessary, supported by echocardiography. The majority of patients with mitral valve prolapse suffer no serious sequelae. However, major complications such as disabling angina-like chest pains, progressive mitral regurgitation, infective endocarditis, thromboembolism, serious arrhythmias, and sudden death may occur. Unless these serious complications occur, most of the patients with mitral valve prolapse need no treatment other than reassurance, including those with atypical chest pain or palpitation unconfirmed by objective data. Therapy with a beta-blocker for disabling chest pain and/or arrhythmias and antiplatelet therapy for cerebral embolic events may be indicated. In occasional patients with significant mitral regurgitation surgery may be necessary.

Echocardiography↗

Mitral valve dysfunction resulting from thickening and stiffening of artificial mitral valve chordae.

BACKGROUND: There is little information about changes in mitral valve function caused by thickening and stiffening of artificial chordae during follow-up. Using serial echocardiographic examination, we evaluated thickening and stiffening of artificial chordae and the effect of those changes on mitral valve function. METHODS AND RESULTS: Between November 1986 and November 1993, 40 patients underwent mitral valve repair with artificial chordae using glutaraldehyde-tanned xenograft pericardium (GTXP) or polytetrafluoroethylene suture (PTFE). Seven GTXP patients and 20 PTFE patients underwent serial echocardiographic examination after surgery and were included in the final analysis. Thickening and stiffening of the artificial chonlae were classified according to echocardiographic changes after surgery: grade 1, no change; grade 2, thickening and/or stiffening without impairment of the motion of the mitral valve leaflet; and grade 3, thickening and stiffening that impaired motion of the mitral valve leaflet. The mean follow-ups in patients with GTXP and PTFE were 6.0 and 3.6 years, respectively. During follow-up, there were 2 GTXP patients with grade 2 thickening and stiffening and 4 patients with grade 3. There were 6 PTFE patients with grade 2 thickening and stiffening and 2 patients with grade 3. Grade 3 occurred earlier in GTXP than in PTFE patients (P < .05). Mitral valve area in GTXP patients decreased from 2.5 +/- 0.4 to 2.1 +/- 0.3 cm2 (P < .05); however, mitral valve area in PTFE patients showed no significant change during follow-up (2.1 +/- 0.4 to 2.0 +/- 0.4 cm2, P = NS). CONCLUSIONS: Although mitral valve repair with artificial chordae is useful, more attention should be paid to mitral valve function resulting from thickening and stiffening of artificial chordae.

Adult↗

The role of palmaris muscle tendon in mitral valve annulus reconstruction: a novel technique for mitral valve repair.

BACKGROUND: Autogenous tissue for heart valve repair is limited to pericardium and fascia lata. Prosthetic annuloplasty rings have limitations and are expensive. No previous cadaveric study has documented autotransplantation of forearm tendons for mitral valve repair. The purposes of this anatomical study were (1) to determine the feasibility of using tendons for annular reconstruction during mitral valve repair (band or ring shape) and (2) to compare the metric dimensions and gross morphology with those of prosthetic rings. METHODS: The palmaris tendon (PM) (n = 7) was harvested from forearms of human cadavers and prepared in the dissecting room. The tendon was incorporated along the valve annulus. Surgery consisted of mitral valve annuloplasty performed with an undersized and a complete tendon. RESULTS: On gross handling PM tissue was morphologically resilient. Preparation and use of PM for annuloplasty were feasible. Anatomical reconstruction of the annulus with autogenous tissue using this tendon also was feasible. The annulus behaved as a flexible ring that allowed for improved atrioventricular continuity. Complete (n = 7) and partial (n = 7) annuloplasty rings were constructed. Metric dimensions were similar to those of prosthetic rings. CONCLUSION: PM is a suitable novel autogenous tissue that can be harvested together with the radial artery and has direct relevance in ischemic mitral valve regurgitation. These tendons can be easily utilized to achieve results similar to those of pericardial reconstruction and prosthetic annuloplasty rings. The tissue is readily available from the patient, and no extra cost is incurred. Further chemical studies in the human subjects are warranted.

Cadaver↗

Tearing of the mitral valve during vent removal after a successful mitral valve repair: a beneficial role of transesophageal echocardiography.

In this case, a successful mitral valve repair was confirmed by transesophageal echocardiography (TEE) at the end of a cardiopulmonary bypass. The left ventricular vent was placed through the mitral valve to remove the air after the TEE examination, and on its way out, the left ventricular vent damaged the anterior mitral leaflet (AML). Re-examination of the valve with TEE detected the new mitral valve insufficiency. The CPB was reinstituted, and tearing of the lateral third part of the anterior mitral leaflet was found. This case emphasizes the importance of TEE in the operating room as a continuous monitor, not only to evaluate the result of the cardiac surgery, but also to detect any unpredictable events during the surgery.

Cardiopulmonary Bypass↗

Velocity of closure of Björk-Shiley Convexo-Concave mitral valves: effect of mitral annulus orientation and rate of left ventricular pressure rise.

The purpose of this study was to determine analytically the hemodynamic factors that affect the closing velocity of the disc of Björk-Shiley convexo-concave (BSCC) prosthetic mitral valves. The motion of the BSCC disk was modelled by Newton's second law written in the form of a second order differential equation which expressed the instantaneous angle of the disc with respect to the valve ring as a function of the instantaneous pressure drop across the mitral valve, delta P(t), and the angle of the pressure gradient vector acting upon the disc during closure. The disc closes in response to the negative pressure drop created by the crossover of left atrial and left ventricular (LV) pressures. The rate of closure depends on the rate of development of the pressure drop across the valve, d delta P/dt, which is largely dependent upon the rate of change of left ventricular pressure during isovolumic contraction, LV dP/dt. The closure rate is also strongly dependent on the initial angle of the pressure drop vector with respect to the disc. The disc was predicted to reach its highest velocity at the moment of impact, based on the Runge-Kutta solution. Modelling suggests that a high LV dP/dt during valve closure or distorted LV geometry, causing the angle between the fully open disc and the pressure drop vector to shift, will cause the valve to have a high velocity at the moment of impact and may produce high impact loads.

Algorithms↗

[On the mechanisms of mitral regurgitation in rheumatic mitral valve disease: with special reference to the role of mitral valve prolapse].

To assess the role of mitral valve prolapse (MVP) in the pathogenesis of mitral regurgitation (MR) in rheumatic mitral valve disease (RMD), we performed phonocardiography (PCG), transthoracic and transesophageal two-dimensional and color Doppler (CD) echocardiography in 22 patients with RMD including three with pure mitral stenosis (MS), 11 with predominant MS, six with predominant MR and two with pure MR. Results were as follows: 1. Prolapse of the mitral valve (MV) was differentiated from systolic ballooning of the whole MV by the findings that the anterior leaflet's tip (rough zone) protruded into the left atrium with an acute angle between the body (clear zone) and rough zones of the anterior MV and that the posterior leaflet protruded markedly above the level of the mitral ring. 2. MR was detected in six patients (slight MR) by only the CD method and in 13 (mild, moderate or greater MR) by both the PCG and CD methods. 3. MR was absent or slight in five patients (three of pure MS and two of predominant MS) without valve thickening and with systolic ballooning of the whole valve due to commissural fusion. 4. Mitral valve abnormalities related to significant (mild, moderate or severe) MR were dependent on valve thickening (five patients), prolapse of the leaflet's tip toward the left atrium (four), or both (four). 5. An apical systolic click was found in only one of the nine patients with systolic ballooning, but in four of 11 with MVP. 6. The MR murmur in six of the nine patients with valve thickening showed the decrescendo or flat contour, but that in four of the eight patients with MVP showed a crescendo contour. From these results, we concluded that mitral valve prolapse should be considered as one of the important causes of mitral regurgitation in rheumatic mitral valve disease.

Adult↗

Doppler echocardiographic comparison of the Carpentier and Duran anuloplasty rings versus no ring after mitral valve repair for mitral regurgitation.

To compare the hemodynamic results of different anuloplasty techniques of primary valve repair for mitral regurgitation, 122 patients were prospectively studied with Doppler echocardiograms 5 to 10 days after operation. Seventy-seven patients had mitral valve prolapse, 27 had coronary artery disease, 13 patients had rheumatic mitral valve lesions and 5 patients had infective endocarditis. Forty-eight patients received the flexible Duran ring, 46 received the more rigid Carpentier ring and 28 patients received no ring. Doppler echocardiography demonstrated a significant decrease in mitral valve area estimated by the pressure half-time method in patients who received either a Carpentier (2.6 +/- 0.8 cm2) or Duran ring (2.8 +/- 0.8 cm2) when compared with patients who received no ring (3.2 +/- 0.7 cm2) (p = 0.01). No significant differences were observed for peak transmitral diastolic velocity, peak transmitral diastolic gradient, or the grade of mitral regurgitation by color flow Doppler mapping between patients with and without rings. The etiology of mitral disease and concomitant surgical procedures accompanying mitral valve repair did not significantly influence mitral valve area, peak velocity or peak gradient. These data suggest that Carpentier and Duran rings decrease the hemodynamic mitral valve area; however, the decrease in valve area is small and not associated with a clinically important increase in transvalvular gradient.

Echocardiography, Doppler↗

The effect of preservation of chordae tendineae on mitral valve replacement for postinfarction mitral regurgitation.

Fifty-one consecutive patients underwent mitral valve replacement for mitral regurgitation secondary to myocardial infarction. Fifteen patients were in cardiogenic shock when operated on, 22 were in NYHA functional class IV, and 14 were in class III. Mitral valve replacement with preservation of the chordae tendineae and papillary muscles was performed in 10 patients in cardiogenic shock and 22 patients who had elective surgery. Concomitant procedures included repair of left ventricular aneurysm in nine, tricuspid valve repair in three, aortic valve repair or replacement in four, and aortocoronary bypass in 44 patients. Twenty-six clinical, hemodynamic, angiographic, and operative variables were analyzed for statistical significance (univariate analysis) and then entered into a logistic regression analysis with operative and late mortality as end points. There were four operative deaths (8%). Only preoperative cardiogenic shock and mitral valve replacement with complete excision of the native valve were predictive of operative mortality. Actuarial survival at 4 years was 89 +/- 9% for patients with preserved chordae tendineae and 59 +/- 11% for patients with completely excised mitral valves. Only complete excision of the mitral valve and ejection fraction lower than 35% were predictive of late mortality. These data suggest that, although the papillary muscles are diseased in patients with mitral regurgitation secondary to myocardial infarction, it is important to preserve them and their chordae tendineae during mitral valve replacement.

Adult↗

[Mitral valve insufficiency caused by tendinous cord rupture and mitral valve aneurysm. Significance of the echocardiographic study].

Mitral valve aneurysm is a rare complication that may occur in a myxomatous valve. We report the case of a 73 year old male patient with severe mitral regurgitation and heart failure-class IV NYHA. Echocardiography showed perforation of an aneurysm of the anterior leaflet of the mitral valve associated with rupture of tendinous cords of the posterior mitral leaflet. Diagnosis was made by transthoracic echocardiography and confirmed by transesophageal echocardiography. The patient was urgently operated with success and a mitral valve prosthesis was implanted.

Aged↗

Mitral valve repair for mitral insufficiency due to infective endocarditis in a patient with idiopathic thrombocytopenic purpura.

A 63-year-old woman with an 18-year history of idiopathic thrombocytopenic purpura (ITP) was admitted with a persistent fever of unknown cause. Blood culture was positive for alpha-Streptococcus and echocardiography revealed severe mitral regurgitation and vegetation on the mitral valve. After antimicrobial therapy for six weeks, she underwent mitral valve repair using a Cosgrove ring. The platelet count increased and remained stable by perioperative treatment with intravenous high-dose gamma-globulin and platelet transfusion without steroids therapy or splenectomy. The hospital course was uneventful. Perioperative high-dose gamma-globulin therapy and platelet transfusion for the cardiac operation were useful to increase and maintain the platelet count for an ITP patient complicated with infective endocarditis.

Endocarditis, Bacterial↗

[Hemolytic anemia due to aortic valve regurgitation after mitral valve replacement].

A 50-year-old woman was admitted to our hospital because of heart failure (NYHA III) due to mitral valve regurgitation (MR) with pulmonary hypertension (PH) and tricuspid valve regurgitation (TR). She had a history of chronic renal failure undergoing dialysis (peritoneal dialysis, homodialysis) since 1996. Cardiac catheterization and ultrasonic cardiography showed severe MR (Sellers III), severe TR and PH (mean pressure 33 mmHg). So we performed mitral valve replacement and tricuspid annuloplasty (DeVega). Frequent blood transfusion was needed because severe hemolytic anemia appeared after operation. Ultrasonic cardiography demonstrated moderate aortic valve regurgitation (AR) with no paravalvular prosthetic leakage. We diagnosed hemolytic anemia due to AR. We performed aortic valve replacement. Hemolytic anemia improved soon after second operation. We investigated the mechanical process of the AR. She had a very short subaortic curtain (5.9 mm) compared with the average (8.7 +/- 2.1 mm: mean +/- SD) of cardiac patients. We think that we must be very careful with suture to short subaortic curtain. In addition measurement of subaortic curtain before operation is very useful.

Anemia, Hemolytic↗

Mitral valve prolapse.

Mitral valve prolapse is a condition that is being recognized with increased frequency. It is not known whether its incidence is increasing, or whether we are better able to diagnose it today. In the idiopathic or familial variety, the mitral valve pathology is almost always that of myxomatous degeneration. Some authors have suggested the presence of a cardiomyopathy because of significant left ventricular dysfunction in many cases. Idiopathic prolapse occurs predominantly in females, often at a young age, and may be associated with chest pain, dyspnea, fatigue, presyncope, syncope, and/or sudden death. The clinical findings are variable and typically consist of a nonejection click and/or late systolic murmur, heard best at the cardiac apex. Diagnosis can be confirmed by echocardiography and/or ventricular cineangiography, the latter permitting accurate recognition of the anatomy of the prolapsed leaflets. The complications of infective endocarditis, severe mitral insufficiency, and life-threatening ventricular arrhythmias represent the major problems of management. It is important to distinguish the idiopathic form of mitral valve prolapse from that due to coronary artery disease and to realize that mitral valve prolapse may occur in Marfan's syndrome, Turner's syndrome, or in association with secundum atrial septal defect or ruptured chordae tendineae. Typical clicks and/or murmurs have also been described in patients with a history of rheumatic fever and in hypertrophic cardiomyopathy. Although much descriptive knowledge has accumulated over the past 15 years, many unanswered questions remain regarding the idiopathic type of prolapse. What is the nature and cause(s) of myxomatous degeneration? What is the relation of the valve pathology to the left ventricular dysfunction? What is the relation of both of these factors to disabling chest pain, electrocardiographic changes, and life-threatening arrhythmias? Hopefully, answers to these and other important questions regarding mitral valve prolapse will be forthcoming.

Electrocardiography↗