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At least 19 recordsLinked to original sources

Constrictive pericarditis in patients with tuberculous pericarditis.

Constrictive pericarditis is a complication of tuberculous pericarditis that necessitates surgical intervention. In this study, we sought to identify echocardiographic features that could predict the development of constrictive pericarditis from acute or subacute pericarditis. From January 1988 through May 1998, all patients with a discharge diagnosis of tuberculous pericarditis were enrolled in the study, and their clinical features, laboratory findings, sonographic images, treatments, and outcomes were analyzed. Tuberculous pericarditis was demonstrated on the basis of positive Mycobacterium tuberculosis cultures from pericardial fluid or tissue in 11 patients; pericardial biopsy specimens demonstrating caseating granulomas in seven; and bacteriologic or histologic evidence of active extra-pericardial tuberculosis in conjunction with major pericardial effusion in four. Seventeen patients had effusive tuberculous pericarditis and five had constrictive tuberculous pericarditis as the initial diagnosis. The echocardiographic findings of effusive pericarditis were classified as shaggy-type effusion (n = 8) and non-shaggy-type effusion (9). Shaggy effusion was defined as the presence of multiple fibrin strands or a mass-like exudate coating the pericardium and bridging the pericardial effusion. Non-shaggy effusion was characterized by an anechoic pericardial space with or without a thickened pericardium, but no shaggy exudative coating. The mean duration between the onset of symptoms and diagnosis was longer in patients with shaggy-type effusion (39.6 +/- 8.7 vs 21.0 +/- 13.9 days, p < 0.05). Prednisolone (20-30 mg/d) was used in addition to antituberculous chemotherapy in 11 of the 17 patients with effusive pericarditis. Two of 11 patients (18%) who received steroid therapy, and five of the six patients (83%) who did not, developed constrictive pericarditis in the following year. Therefore, we concluded that adjuvant therapy with steroids significantly decreased the risk of constrictive pericarditis in patients with non-shaggy, but not shaggy, effusion.

Adult↗

Predictors of constrictive pericarditis after tuberculous pericarditis.

OBJECTIVE: To identify features which predict the subsequent development of constrictive pericarditis from acute or subacute tuberculous (TB) pericarditis. SETTING: Tertiary referral centre, chest hospital. PATIENTS: The records of 16 consecutive patients in whom acute or subacute TB pericarditis was diagnosed between 1988 and 1990 at a chest hospital were reviewed. These records included a follow up of at least 12 months. RESULTS: During a follow up of 14.2 (12-30) months, 8 patients had constrictive pericarditis diagnosed by cardiac catheterisation or by inspection at the time of operation (group A). There was no evidence of constriction in the other eight patients (group B). There was no significant difference between the two groups in the type or duration of symptoms of TB pericarditis before admission or the volume and characteristics of pericardial fluid obtained at hospital admission. Clinical features of cardiac tamponade on admission correlated closely with the subsequent development of constrictive pericarditis requiring pericardectomy (7/8 v 2/8; P = 0.01), despite the fact that the signs of tamponade resolved completely after pericardiocentesis. CONCLUSION: The findings suggest that cardiac tamponade in the early clinical stage of TB pericarditis is the most predictive factor of subsequent constrictive pericarditis. The degree of fibrosis of pericardium when treatment starts may be the most important determinant of whether or not constriction develops.

Adult↗

Interventions for treating tuberculous pericarditis.

BACKGROUND: Tuberculous (TB) pericarditis is becoming more common. The infection can result in fluid around the heart, which can be fatal. OBJECTIVES: To evaluate evidence from trials about the effects of medical and surgical treatments for TB pericarditis on death and life-threatening conditions. SEARCH STRATEGY: The Cochrane Infectious Diseases Group trials register, the Cochrane controlled trials register, Medline, Embase and reference lists of articles; contact with experts in the field. SELECTION CRITERIA: Randomised and quasi-randomised trials of treatments for TB pericarditis. DATA COLLECTION AND ANALYSIS: Two reviewers independently assessed trial quality and extracted data. Meta-analysis using fixed effects models calculated summary statistics, provided there was no significant heterogeneity, and expressed results as relative risk. MAIN RESULTS: Three trials met the inclusion criteria, with a total of 411 participants. Treatments were adjuvant steroids and surgical drainage. Two small trials tested steroids. There were fewer deaths (all causes) in the intervention group, but the numbers were small and the result could have occurred by chance (relative risk [RR] 0.65, 95% confidence interval [CI] 0.36 to 1.16, n = 350). In one trial studying patients with effusion, "cure" was higher in the steroid group (alive and free of disability at 2 years (RR 0.69, 95% CI 0.29 to 0.80, n = 221). One trial examined open surgical drainage compared with conservative management, and showed no impact of surgery on death, but a protective effective against cadiac tamponade (RR 0.04, 95% CI 0.00 to 0.64). REVIEWER'S CONCLUSIONS: Steroids have potentially large impacts on survival, but trials are too small to test this. We believe further placebo controlled trials of steroids are warranted, exploring whether the presence of effusion or fibrosis modifies effects. Surgical options also require further evaluation.

Adrenal Cortex Hormones↗

Electrocardiographic studies in acute pericarditis with specific reference to ventricular involvement of non-specific pericarditis.

The authors investigated electrocardiographic changes minutely in five cases of acute pericarditis, and especially in two cases of non-specific pericarditis. The results indicated that the amplitudes of the R and S waves increased progressively immediately after the disease reached a peak, which was reached after abnormal heart shadow in the chest x-ray returned to normal. This increased curve of amplitude varied in association with changes in the ST segment and T wave, suggesting an inflammatory dilatation of the myocardium. On the other hand, however, the curve was indistinct and took a long time to reach a maximum in case of systemic lupus erythematosus pericarditis, and was found to decrease and remain stationary in cases of pericarditis secondary to lung cancer and/or tuberculosis. These facts should become a useful guideline for diagnosis of acute non-specific pericarditis (due to virus origin). Ischemic changes of the ST segment and T wave were manifested by an exercise test during recovery from acute pericarditis when ST segment and T wave abnormalities had already improved and high voltage was the only abnormal finding on the ECG. In the healing stage, regarding the finding of high voltage, it should be pointed out that the myocardium remains as yet with residual damage revealed by loading with exercise, and treatment may be necessary until the abnormal finding has improved.

Acute Disease↗

[Surgical treatment of constrictive pericarditis and life-threatening pericardic effusions (author's transl)].

Total excision of both pericardic sac and epicardium is the basic surgical procedure for chronic constrictive pericarditis. Approach being through a vertical sternotomy. In case of either cardiac injury or poor haemodynamic of either cardiac injury or poor haemodynamic conditions, it is sometimes indicated to get help from an extracorporal circulation with femoro-femoral shunt. Surgery for acute pericarditis may vary according to local and general conditions. As soon as a pericardic effusion, whether or not infected, has occurred, drainage by means of an infraxiphoid incision seems to be a safe method. Where pericardic effusions relapse or densify to a constrictive pericarditis, pericardectomy is to be considered. Total pericardectomy is therefore regarded as the best procedure to prevent further disease.

Cardiac Tamponade↗

[A case of tuberculous pericarditis developing constrictive pericarditis].

A case of constrictive pericarditis which developed after the onset of clinical manifestation of tuberculous pericarditis was reported. A 75-year-old male, complaining of anorexia, was admitted to our hospital. Adenosinedeaminase (ADA) level in pericardial effusion was found to be increased, and the culture of pericardial effusion was positive for tubercle bacilli. Diagnosed as having tuberculous pleuritis and pericarditis, he underwent chemotherapy for tuberculosis. However, massive pleural effusion developed later and pleural effusion drainage was carried out. Despite repeated drainage, pleural effusion continued to recur. Chest CT revealed apparent pericardial thickening, in addition, cardiac catheterization revealed elevation of mean right atrial pressure and marked deterioration of cardiac functions including decrease of cardiac output. These findings were compatible with constrictive pericarditis. After these investigations a diagnosis of constrictive pericarditis was established, and the patient underwent a pericardiectomy. Pathological examination of resected specimens revealed tuberculous inflammation.

Aged↗

[Echocardiography in a case of acute tuberculous pericarditis which progressed to constrictive pericarditis].

A case of acute tuberculous pericarditis with massive pericardial effusion progressed to constrictive pericarditis under echocardiographic observation during one year. This 59-year-old man was hospitalized because of dyspnea. On admission, his physical examination revealed a paradoxical pulse, engorged jugular veins, hepatomegaly, and pitting edema in the pretibial regions. Chest radiography revealed an enlarged cardiac silhouette and a marked left pleural effusion. His echocardiogram showed a massive pericardial effusion. A biatrial echogram recorded by esophageal echocardiography showed a massive pericardial effusion anterior to the right atrial free wall. Echocardiography performed four months after commencing therapy revealed a reduction in the pericardial effusion, and normal motion of the interventricular septum and posterior wall. However, the motion of the interatrial septum was already abnormal and the excursion of the right atrial free wall was markedly reduced. These finding were similar to those in constrictive pericarditis, as previously reported. Eleven months after admission, both conventional and esophageal echograms showed findings typical of constrictive pericarditis. Thus, in this case, the abnormal biatrial dynamics were recognized earlier than the abnormal left ventricular wall motion.

Echocardiography↗

The clinical distinction between regional postinfarction pericarditis and other causes of postinfarction chest pain: ancillary observations regarding the effect of lytic therapy upon the frequency of postinfarction pericarditis, postinfarction angina, and reinfarction.

Recently two types of atypical T-wave evolution were recognized as electrocardiographic (ECG) markers of regional postinfarction pericarditis. The sensitivity and specificity of these changes for this condition were 100 and 77%, respectively. The major purpose of this investigation is to show how these ECG changes can be used to differentiate among postinfarction pericarditis, postinfarction angina, and reinfarction. Even appropriately constructed serial monitor lead ECGs can be used to make this distinction. The ease of correctly distinguishing among the three causes of postinfarction chest pain utilizing a carefully elicited history and ECG criteria is discussed. In addition, a secondary objective was to assess the effect of lytic therapy on the incidence of postinfarction pericarditis. Among the 200 patients in this study, lytic therapy halved the incidence of postinfarction pericarditis, which is in accord with the larger Gruppo Italiano per lo Studio della Streptochinasi nell'Infarto Miocardico (GISSI) study.

Angina Pectoris↗

[A case of rapidly developed constrictive pericarditis following acute non-specific pericarditis].

A case of constrictive pericarditis which developed within one month after the onset of acute pericarditis was presented. A 3-year-old boy was admitted to our hospital suffering from dyspnea. Pericardectomy was performed 3 weeks after the pericardial drainage. His echocardiograms revealed the progressive thickening of the pericardium, severely restricted ventricular motion in both systole and diastole and paradoxical motion of the interventricular septum. Echocardiography at close intervals is useful for making the diagnosis and decision of the surgical intervention of rapidly developed constrictive pericarditis.

Acute Disease↗

Cholesterol pericarditis terminating as constrictive calcific pericarditis. Follow-up study of patient with 40 year history of disease.

This is a follow-up report of a patient with idiopathic cholesterol pericarditis (previously described in this Journal in 1961). The patient had had recurrent pericardial effusions since 1939, and died with calcific constrictive pericarditis some 40 years later. In the interim, the patient had an extended period (17 years) of symptomatic relief after pericardiotomy in 1958.

Cholesterol↗

Echocardiographic diagnosis of effusive-constrictive pericarditis due to staphylococcal pericarditis after cardiac surgery.

Two weeks after coronary artery bypass surgery, a 43-year-old man was readmitted with fever, pneumonia, left pleural effusion, and pericarditis. Echocardiography showed a localized posterior pericardial effusion, pericardial thickening, and bulging of the ventricular septum toward the left ventricle. Right-sided catheterization indicated pericardial constriction. Effusive-constrictive pericarditis was confirmed at surgery. Cardiac imaging played an important role in diagnosis of this unusual complication of cardiac surgery.

Adult↗

Staphylococcus aureus pericarditis masquerading as anterior mediastinal mass: mediastinal mass from pericarditis.

Pseudomediastinal mass as a result of bacterial pericarditis is a rare clinical presentation. We report one such case in a patient with end-stage renal disease receiving hemodialysis, who presented primarily with manifestations of right heart compression due to a large encapsulated pericardial abscess and, surprisingly, with no overt signs of sepsis. Surgical drainage, pericardiectomy, and antibiotic therapy led to a successful outcome.

Abscess↗