Korean J Thorac Cardiovasc Surg.  1998 Mar;31(3):233-241.

A Study on Risk Factors for Early Major Morbidity and Mortality in Multiple-valve Operations

Affiliations
  • 1Department of Thoracic & Cardiovascular Surgery, Pusan Paik Hospital, college of medicine, Inje University, Korea.

Abstract

To define the risk factors affecting the early major morbidity and mortality after multiple-valve operations, the preoperative, intraoperative and postoperative informations were retrospectively collected on 124 consecutive patients undergoing a multiple-valve operation between October 1985 and July 1996 at the department of Thoracic and Cardiovascular Surgery of Pusan Paik Hospital. The study population consists of 53 men and 71 women whose mean age was 37.9+/-11.5 (mean+/-SD) years. Using the New York Heart Association (NYHA) classification, 41 patients (33.1%) were in functional class II, 60 (48.4%) in class III, and 20 (16.1%) in class IV preoperatively. Seven patients (5.6%) had undergone previous cardiac operations. Atrial fibrillations were present in 76 patients (61.3%), a history of cerebral embolism in 5 (4.0%), and left atrial thrombus in 13 (10.5%). The overall early mortality rate and postoperative morbidity was 8.1% and 21.8% respectively. Among the 124 cases of multiple-valve operation, there were 57 (46.0%) of combined mitral valve replacement (MVR) and aortic valve replacement (AVR), 48 (38.7%) of combined MVR and tricuspid annuloplasty (TVA), 12 (9.7%) of combined MVR, AVR and TVA, 3 (2.4%) of combined MVR and aortic valvuloplasty, 2 (1.6%) of combined MVR and tricuspid valve replacement, and others. The patients were classified according to the postoperative outcomes; Group A (27 cases) included the patients who had early death or major morbidity such as low cardiac output syndrome, mediastinitis, cardiac rupture, ventricular arrhythmia, sepsis, and others; Group B (97 cases) included the patients who had the good postoperative outcomes. The patients were also classified into group of early death and survivor. In comparison of group A and group B, there were significant differences in aortic cross-clamping time (ACT, group A:153.4+/-42.4 minutes, group B:134.0+/-43.7 minutes, p=0.042), total bypass time (TBT, group A:187.4+/-65.5 minutes, group B:158.1+/-50.6 minutes, p=0.038), and NYHA functional class (I:33.3%, II:9.7%, III:20%, IV:50%, p=0.004). In comparison of early death (n=10) and survivor (n=114), there were significant differences in age (early death:45.2+/-8.7 years, survivor:37.2+/-11.6 years, p=0.036), sex (female:12.7%, male:1.9%, p=0.043), ACT (early death:167.1+/-38.4 minutes, survivor:135.7+/-43.7 minutes, p=0.030), and NYHA functional class (I:0%, II:4.9%, III:1.7%, IV:35%, p=0.001). In conclusion, the early major morbidity and mortality were influenced by the preoperative clinical status and therefore the earlier surgical intervention should be recommended whenever possible. Also, improved methods of myocardial protection and operative techniques may reduce the risk in patients with multiple-valve operation.

Keyword

Heart valve replacement; Mortality; Morbidity; Risk factor

MeSH Terms

Aortic Valve
Arrhythmias, Cardiac
Atrial Fibrillation
Busan
Cardiac Output, Low
Classification
Female
Heart
Heart Rupture
Humans
Intracranial Embolism
Male
Mediastinitis
Mitral Valve
Mortality*
Retrospective Studies
Risk Factors*
Sepsis
Survivors
Thrombosis
Tricuspid Valve
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